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Phytoliths (from Greek, "plant stone") are rigid, microscopic mineral deposits found in some plant tissues, often persisting after the decay of the plant. Although some use "phytolith" to refer to all mineral secretions by plants, it more commonly refers to siliceous plant remains. Phytoliths come in varying shapes and sizes. The plants which exhibit them take up dissolved silica from the groundwater, whereupon it is deposited within different intracellular and extracellular structures of the plant.Piperno, Dolores R. (2006). Phytoliths: A Comprehensive Guide for Archaeologists and Paleoecologists. AltaMira Press . The silica is absorbed in the form of monosilicic acid (Si(OH)4), and is carried by the plant's vascular system to the cell walls, cell lumen, and intercellular spaces. Depending on the plant
taxa In biology, a taxon (back-formation from ''taxonomy''; : taxa) is a group of one or more populations of an organism or organisms seen by taxonomists to form a unit. Although neither is required, a taxon is usually known by a particular name and ...
and soil condition, absorbed silica can range from 0.1% to 10% of the plant's total dry weight. When deposited, the silica replicates the structure of the cells, providing structural support to the plant. Phytoliths strengthen the plant against abiotic stressors such as salt runoff, metal toxicity, and extreme temperatures. Phytoliths can also protect the plant against biotic threats such as insects and fungal diseases.Rajendiran et al., (2012).Role of phytolith occluded carbon of crop plants for enhancing soil carbon sequestration in agro-ecosystems. ''Current Science'', 103(8), 911-920.


Functions

There is still debate in the scientific community as to why plants form phytoliths, and whether silica should be considered an essential nutrient for plants. Studies that have grown plants in silica-free environments have typically found that plants lacking silica in the environment do not grow well. For example, the stems of certain plants will collapse when grown in soil lacking silica. In many cases, phytoliths appear to lend structure and support to the plant, much like the spicules in sponges and leather corals. Phytoliths may also provide plants with protection. These rigid silica structures help to make plants more difficult to consume and digest, lending the plant's tissues a grainy or prickly texture. Phytoliths also appear to provide physiologic benefits. Experimental studies have shown that the
silicon dioxide Silicon dioxide, also known as silica, is an oxide of silicon with the chemical formula , commonly found in nature as quartz. In many parts of the world, silica is the major constituent of sand. Silica is one of the most complex and abundan ...
in phytoliths may help to alleviate the damaging effects of toxic heavy metals, such as
aluminum Aluminium (or aluminum in North American English) is a chemical element; it has chemical symbol, symbol Al and atomic number 13. It has a density lower than that of other common metals, about one-third that of steel. Aluminium has ...
. Finally, calcium oxalates serve as a reserve of
carbon dioxide Carbon dioxide is a chemical compound with the chemical formula . It is made up of molecules that each have one carbon atom covalent bond, covalently double bonded to two oxygen atoms. It is found in a gas state at room temperature and at norma ...
in Alarm photosynthesis. Cacti use these as a reserve for
photosynthesis Photosynthesis ( ) is a system of biological processes by which photosynthetic organisms, such as most plants, algae, and cyanobacteria, convert light energy, typically from sunlight, into the chemical energy necessary to fuel their metabo ...
during the day when they close their pores to avoid water loss; baobabs use this property to make their trunks more flame-resistant.


History of phytolith research

According to Dolores Piperno, an expert in the field of phytolith analysis, there have been four important stages of phytolith research throughout history. #Discovery and exploratory stage (1835–1895): The first report on phytoliths was published by a German botanist named in 1835. During this time another German scientist named Christian Gottfried Ehrenberg was one of the leaders in the field of phytolith analysis. He developed the first classification system for phytoliths, and analyzed soil samples that were sent to him from all around the world. Most notably, Ehrenberg recorded phytoliths in samples he received from the famous naturalist,
Charles Darwin Charles Robert Darwin ( ; 12 February 1809 – 19 April 1882) was an English Natural history#Before 1900, naturalist, geologist, and biologist, widely known for his contributions to evolutionary biology. His proposition that all speci ...
, who had collected the dust from the sails of his ship, HMS ''Beagle'', off the coast of the Cape Verde Islands. #Botanical phase of research (1895–1936): Phytolith structures in plants gained wide recognition and attention throughout Europe. Research on production, taxonomy and morphology exploded. Detailed notes and drawings on plant families that produce silica structures and morphology within families were published. #Period of ecological research (1955–1975): First applications of phytolith analysis to paleoecological work, mostly in Australia, the United States, the United Kingdom, and Russia. Classification systems for differentiation within plant families became popular. #Modern period of archaeological and paleoenvironmental research (1978–present): Archaeobotanists working in the Americas first consider and analyze phytolith assemblages in order to track prehistoric plant use and domestication. Also for the first time, phytolith data from pottery are used to track history of clay procurement and pottery manufacture. Around the same time, phytolith data are also used as a means of vegetation reconstruction among paleoecologists. A much larger reference collection on phytolith morphology within varying plant families is assembled.


Development in plants

Soluble silica, also called monosilicic or orthosilicic acid with a chemical formula of (Si(OH)4), is taken up from the soil when plant roots absorb groundwater. From there, it is carried to other plant organs by the
xylem Xylem is one of the two types of transport tissue (biology), tissue in vascular plants, the other being phloem; both of these are part of the vascular bundle. The basic function of the xylem is to transport water upward from the roots to parts o ...
. By an unknown mechanism, which appears to be linked to genetics and metabolism, some of the silica is then laid down in the plant as silicon dioxide. This biological mechanism does not appear to be limited to specific plant structures, as some plants have been found with silica in their reproductive and sub-surface organs.


Chemical and physical characteristics

Phytoliths are composed mainly of noncrystalline silicon dioxide, and about 4% to 9% of their mass is water. Carbon, nitrogen, and other major nutrient elements comprise less than 5%, and commonly less than 1%, of phytolith material by mass. These elements are present in the living cells in which the silica concretions form, so traces are retained in the phytoliths. Such immobilised elements, in particular carbon, are valuable in that they permit
radiometric dating Radiometric dating, radioactive dating or radioisotope dating is a technique which is used to Chronological dating, date materials such as Rock (geology), rocks or carbon, in which trace radioactive impurity, impurities were selectively incorporat ...
in reconstructing past vegetation patterns. The silica in phytoliths has a
refractive index In optics, the refractive index (or refraction index) of an optical medium is the ratio of the apparent speed of light in the air or vacuum to the speed in the medium. The refractive index determines how much the path of light is bent, or refrac ...
ranging from 1.41 to 1.47, and a specific gravity from 1.5 to 2.3. Phytoliths may be colorless, light brown, or opaque; most are transparent. Phytoliths exist in various three-dimensional shapes, some of which are specific to plant families,
genera Genus (; : genera ) is a taxonomic rank above species and below family as used in the biological classification of living and fossil organisms as well as viruses. In binomial nomenclature, the genus name forms the first part of the binomial s ...
or
species A species () is often defined as the largest group of organisms in which any two individuals of the appropriate sexes or mating types can produce fertile offspring, typically by sexual reproduction. It is the basic unit of Taxonomy (biology), ...
.


Single cell and conjoined phytoliths

Phytoliths may form within single cells, or multiple cells within a plant to form 'conjoined' or multi-cell phytoliths, which are three-dimensional replicas of sections of plant tissue. Conjoined phytoliths occur when conditions are particularly favourable for phytolith formation, such as on a silica rich substrate with high water availability


Pathogenic stress on phytolith formation

Silica Silicon dioxide, also known as silica, is an oxide of silicon with the chemical formula , commonly found in nature as quartz. In many parts of the world, silica is the major constituent of sand. Silica is one of the most complex and abundant f ...
is not considered an essential nutrient for plants such as
nitrogen Nitrogen is a chemical element; it has Symbol (chemistry), symbol N and atomic number 7. Nitrogen is a Nonmetal (chemistry), nonmetal and the lightest member of pnictogen, group 15 of the periodic table, often called the Pnictogen, pnictogens. ...
or
phosphorus Phosphorus is a chemical element; it has Chemical symbol, symbol P and atomic number 15. All elemental forms of phosphorus are highly Reactivity (chemistry), reactive and are therefore never found in nature. They can nevertheless be prepared ar ...
. However, silica-aided phytoliths can help a plant be more resilient against biotic and abiotic stressors. Silica is bioactive, meaning it is able to change the expression of certain plant genes to jumpstart a defensive response against these stressors. In terms of fungal infections, the deposition of silica has been shown to create a physical barrier between invading fungi and the plant. Some factors however can have very damaging effects on the plant and limit or alter phytolith production. Kistler et al., (2013). Experimental investigation of pathogenic stress on phytolith formation in ''Cucurbita pepo'' var. ''texana'' (wild gourd). ''Vegetation History and Archaeobotany'', 22(3), 165-170. In 2009, researchers at the Rock Springs Agricultural Experiment Station at The
Pennsylvania State University The Pennsylvania State University (Penn State or PSU) is a Public university, public Commonwealth System of Higher Education, state-related Land-grant university, land-grant research university with campuses and facilities throughout Pennsyl ...
investigated the effects of pathogenic viruses on phytolith production in '' Cucurbita pepo'' var. Texana. The plants that were affected by either mosaic virus (carried by
aphids Aphids are small sap-sucking insects in the Taxonomic rank, family Aphididae. Common names include greenfly and blackfly, although individuals within a species can vary widely in color. The group includes the fluffy white Eriosomatinae, woolly ...
) or bacterial wilt disease (carried by cucumber beetles) were infected on their own to replicate natural conditions and all plants were grouped into three categories: healthy plants sprayed to prevent insect herbivory, plants infected with mosaic disease, and plants infected with bacterial wilt disease. Analysis after harvest yielded 1,072 phytoliths from forty-five plants. Plants affected by mosaic disease experienced a decrease in phytolith size. This is because the virus constricts overall plant growth and therefore phytolith growth as well. Contrastingly, plants affected with bacterial wilt disease resulted in much larger phytoliths but they were abnormally shaped. This could be due to the bacteria causing constriction of the hypodermal cells, causing an influx of silica deposits.


Patterns of phytolith production

Because identification of phytoliths is based on morphology, it is important to note taxonomical differences in phytolith production. Families with high phytolith production;
family Family (from ) is a Social group, group of people related either by consanguinity (by recognized birth) or Affinity (law), affinity (by marriage or other relationship). It forms the basis for social order. Ideally, families offer predictabili ...
and
genus Genus (; : genera ) is a taxonomic rank above species and below family (taxonomy), family as used in the biological classification of extant taxon, living and fossil organisms as well as Virus classification#ICTV classification, viruses. In bino ...
-specific phytolith morphology is common: *
Acanthaceae Acanthaceae () is a Family (biology), family (the acanthus family) of dicotyledonous flowering plants containing almost 250 genera and about 2500 species. Most are Tropics, tropical Herbaceous plant, herbs, shrubs, or twining vines; some are epip ...
, Aceraceae, Annonaceae,
Arecaceae The Arecaceae () is a family (biology), family of perennial plant, perennial, flowering plants in the Monocotyledon, monocot order Arecales. Their growth form can be climbing palm, climbers, shrubs, tree-like and stemless plants, all commonly k ...
,
Asteraceae Asteraceae () is a large family (biology), family of flowering plants that consists of over 32,000 known species in over 1,900 genera within the Order (biology), order Asterales. The number of species in Asteraceae is rivaled only by the Orchi ...
,
Boraginaceae Boraginaceae, the Borago, borage or forget-me-not family, includes about 2,000 species of shrubs, trees, and herbs in 146 to 154 genus, genera with a worldwide distribution. The APG IV system from 2016 classifies the Boraginaceae as single famil ...
, Bromeliaceae, Burseraceae, Chrysobalanaceae, Commelinaceae, Costaceae,
Cucurbitaceae The Cucurbitaceae (), also called cucurbits or the gourd family, are a plant family (biology), family consisting of about 965 species in 101 genera.
, Cyatheaceae,
Cyperaceae The Cyperaceae () are a family of graminoid (grass-like), monocotyledonous flowering plants known as wikt:sedge, sedges. The family (biology), family is large; botanists have species description, described some 5,500 known species in about 90 ...
, Dilleniaceae, Equisetaceae, Heliconiaceae, Hymenophyllaceae, Magnoliaceae, Marantaceae, Moraceae, Musaceae,
Orchidaceae Orchids are plants that belong to the family (biology), family Orchidaceae (), a diverse and widespread group of flowering plants with blooms that are often colourful and fragrant. Orchids are cosmopolitan distribution, cosmopolitan plants that ...
,
Poaceae Poaceae ( ), also called Gramineae ( ), is a large and nearly ubiquitous family of monocotyledonous flowering plants commonly known as grasses. It includes the cereal grasses, bamboos, the grasses of natural grassland and species cultivate ...
,
Podostemaceae Podostemaceae (riverweed family), a family in the order Malpighiales, comprise about 50 genera and species of more or less thalloid aquatic herbs. Distribution and habitat They are found mostly in tropical and subtropical areas worldwide ...
, Selaginellaceae,
Ulmaceae The Ulmaceae () are a family (biology), family of flowering plants that includes the elms (genus ''Ulmus''), and the zelkovas (genus ''Zelkova''). Members of the family are widely distributed throughout the Temperate, north temperate zone, and ha ...
, Urticaceae,
Zingiberaceae Zingiberaceae () or the ginger family is a family of flowering plants made up of about 50 genera with a total of about 1600 known species of aromatic perennial herbs with creeping horizontal or tuberous rhizomes distributed throughout tropical ...
Families where phytolith production may not be high;
family Family (from ) is a Social group, group of people related either by consanguinity (by recognized birth) or Affinity (law), affinity (by marriage or other relationship). It forms the basis for social order. Ideally, families offer predictabili ...
and
genus Genus (; : genera ) is a taxonomic rank above species and below family (taxonomy), family as used in the biological classification of extant taxon, living and fossil organisms as well as Virus classification#ICTV classification, viruses. In bino ...
-specific phytolith morphology is common: * Capparaceae, Cupressaceae,
Dipterocarpaceae Dipterocarpaceae is a family (biology), family of flowering plants with 22 genera and about 695 known species of mainly lowland tropical forest trees. Their distribution is pantropical, from northern South America to Africa, the Seychelles, India ...
,
Euphorbiaceae Euphorbiaceae (), the spurge family, is a large family of flowering plants. In English, they are also commonly called euphorbias, which is also the name of Euphorbia, the type genus of the family. Most spurges, such as ''Euphorbia paralias'', ar ...
,
Fagaceae The Fagaceae (; ) are a family of flowering plants that includes beeches, chestnuts and oaks, and comprises eight genera with around 1,000 or more species. Fagaceae in temperate regions are mostly deciduous, whereas in the tropics, many species ...
, Flacourtiaceae, Flagellariaceae, Joinvilleaceae,
Pinaceae The Pinaceae (), or pine family, are conifer trees or shrubs, including many of the well-known conifers of commercial importance such as Cedrus, cedars, firs, Tsuga, hemlocks, Pinyon_pine, piñons, larches, pines and spruces. The family is incl ...
,
Polypodiaceae Polypodiaceae is a Family (biology), family of ferns. In the Pteridophyte Phylogeny Group classification of 2016 (PPG I), the family includes around 65 genus, genera and an estimated 1,650 species and is placed in the order Polypodiales, suborder ...
, Restionaceae,
Taxaceae Taxaceae (), commonly called the yew family, is a coniferous family (biology), family which includes six Extant taxon, extant and two extinct genera, and about 30 species of plants, or in older interpretations three genera and 7 to 12 species. ...
, Taxodiaceae Families where phytolith production is common;
family Family (from ) is a Social group, group of people related either by consanguinity (by recognized birth) or Affinity (law), affinity (by marriage or other relationship). It forms the basis for social order. Ideally, families offer predictabili ...
and
genus Genus (; : genera ) is a taxonomic rank above species and below family (taxonomy), family as used in the biological classification of extant taxon, living and fossil organisms as well as Virus classification#ICTV classification, viruses. In bino ...
-specific phytolith morphology is uncommon: * Aristolochiaceae, Chloranthaceae,
Combretaceae The Combretaceae, often called the white mangrove family, are a family of flowering plant Flowering plants are plants that bear flowers and fruits, and form the clade Angiospermae (). The term angiosperm is derived from the Ancient Greek, G ...
, Hernandiaceae, Loranthaceae,
Menispermaceae Menispermaceae (botanical Latin: 'moonseed family' from Greek ''mene'' 'crescent moon' and ''sperma'' 'seed') is a family (biology), family of flowering plants. The alkaloid tubocurarine, a neuromuscular blocker and the active ingredient in the ...
,
Piperaceae The Piperaceae (), also known as the pepper family, are a large family (biology), family of flowering plants. The group contains roughly 3,600 currently accepted species in five genera. The vast majority of species can be found within the two mai ...
,
Sapotaceae 240px, '' Madhuca longifolia'' var. ''latifolia'' in Narsapur, Medak district, India The Sapotaceae are a family of flowering plants belonging to the order (biology)">order Ericales">family (biology)">family of flowering plants belonging to th ...
, Verbenaceae Families where phytolith productions varies;
family Family (from ) is a Social group, group of people related either by consanguinity (by recognized birth) or Affinity (law), affinity (by marriage or other relationship). It forms the basis for social order. Ideally, families offer predictabili ...
and
genus Genus (; : genera ) is a taxonomic rank above species and below family (taxonomy), family as used in the biological classification of extant taxon, living and fossil organisms as well as Virus classification#ICTV classification, viruses. In bino ...
-specific phytolith morphology is uncommon: * Clusiaceae,
Fabaceae Fabaceae () or Leguminosae,International Code of Nomen ...
,
Malvaceae Malvaceae (), or the mallows, is a family of flowering plants estimated to contain 244 genera with 4225 known species. Well-known members of economic importance include Theobroma cacao, cacao, Cola (plant), cola, cotton, okra, Hibiscus sabdariffa, ...
, Sterculiaceae Families where phytolith production is rare or not observed: * Agavaceae, Alismataceae, Amaranthaceae, Amaryllidaceae, Apiaceae,
Apocynaceae Apocynaceae (, from '' Apocynum'', Greek for "dog-away") is a family of flowering plants that includes trees, shrubs, herbs, stem succulents, and vines, commonly known as the dogbane family, because some taxa were used as dog poison. Notable mem ...
, Araceae,
Araliaceae The Araliaceae are a family of flowering plants composed of about 43 genera and around 1500 species consisting of primarily woody plants and some herbaceous plants commonly called the ginseng family. The morphology of Araliaceae varies widely ...
, Araucariaceae, Asclepiadaceae, Bignoniaceae, Bixaceae, Bombacaceae, Burmanniaceae,
Cactaceae A cactus (: cacti, cactuses, or less commonly, cactus) is a member of the plant family Cactaceae (), a family of the order Caryophyllales comprising about 127 genera with some 1,750 known species. The word ''cactus'' derives, through Latin, ...
,
Campanulaceae The family Campanulaceae (also bellflower family), of the order Asterales, contains nearly 2400 species in 84 genera of herbaceous plants, shrubs, and rarely small trees, often with milky sap. Among them are several familiar garden plants bel ...
, Caricaceae, Cartonemataceae, Chenopodiaceae, Convolvulaceae, Cycadaceae, Cyclanthaceae, Dioscoreaceae,
Ericaceae The Ericaceae () are a Family (biology), family of flowering plants, commonly known as the heath or heather family, found most commonly in acidic and infertile growing conditions. The family is large, with about 4,250 known species spread acros ...
, Eriocaulaceae, Gnetaceae, Guttiferae, Hydrocharitaceae, Iridaceae,
Juglandaceae The Juglandaceae are a plant family known as the walnut family. They are trees, or sometimes shrubs, in the order Fagales. Members of this family are native to the Americas, Eurasia, and Southeast Asia. The nine or ten genera in the family have ...
, Juncaceae, Labiatae, Lacistemnaceae, Lauraceae, Lecythidaceae, Lentibulariaceae, Liliaceae, Loganiaceae, Malpighiaceae, Mayacaceae,
Melastomataceae Melastomataceae () is a family of dicotyledonous flowering plants found mostly in the tropics (two-thirds of the genera are from the New World tropics) comprising c. 175 genera and c. 5115 known species. Melastomes are annual or perennial herbs ...
, Meliaceae, Myristicaceae,
Myrtaceae Myrtaceae (), the myrtle family, is a family of dicotyledonous plants placed within the order Myrtales. Myrtle, pōhutukawa, bay rum tree, clove, guava, acca (feijoa), allspice, and eucalyptus are some notable members of this group. All ...
, Myrsinaceae,
Nymphaeaceae Nymphaeaceae () is a family of flowering plants, commonly called water lilies. They live as rhizomatous aquatic herbs in temperate climate, temperate and tropical climates around the world. The family contains five genera with about 70 know ...
, Olacaceae, Oxalidaceae,
Pedaliaceae Pedaliaceae, the pedalium family or sesame family, is a flowering plant family classified in the order (biology), order Lamiales. The family includes sesame (''Sesamum indicum''), the source of sesame seeds. It comprises 13 genera and approx ...
, Podocarpaceae,
Polygonaceae The Polygonaceae are a Family (biology), family of flowering plants known Common name, informally as the knotweed family or smartweed—buckwheat family in the United States. The Botanical name, name is Basionym, based on the genus ''Polygonum'', ...
, Pontederiaceae, Potamogetonaceae, Primulaceae, Proteaceae,
Ranunculaceae Ranunculaceae (, buttercup or crowfoot family; Latin "little frog", from "frog") is a family (biology), family of over 2,000 known species of flowering plants in 43 genera, distributed worldwide. The largest genera are ''Ranunculus'' (600 spec ...
,
Rhamnaceae The Rhamnaceae are a large Family (biology), family of flowering plants, mostly trees, shrubs, and some vines, commonly called the buckthorn family. Rhamnaceae is included in the order Rosales. The family contains about 55 genera and 950 specie ...
,
Rosaceae Rosaceae (), the rose family, is a family of flowering plants that includes 4,828 known species in 91 genera. The name is derived from the type genus '' Rosa''. The family includes herbs, shrubs, and trees. Most species are deciduous, but som ...
,
Rubiaceae Rubiaceae () is a family (biology), family of flowering plants, commonly known as the coffee, madder, or bedstraw family. It consists of terrestrial trees, shrubs, lianas, or herbs that are recognizable by simple, opposite leaves with Petiole ( ...
,
Rutaceae The Rutaceae () is a family (biology), family, commonly known as the rueRUTACEAE
in Bo ...
,
Salicaceae The Salicaceae are the willow family of flowering plants. The traditional family (Salicaceae ''sensu stricto'') includes the willows, poplars. Genetic studies summarized by the Angiosperm Phylogeny Group (APG) have greatly expanded the circumsc ...
,
Sapindaceae The Sapindaceae are a family (biology), family of flowering plants in the order Sapindales known as the soapberry family. It contains 138 genera and 1,858 accepted species. Examples include Aesculus, horse chestnut, maples, ackee and lychee. The ...
, Saxifragaceae, Smilacaceae, Solanaceae, Theaceae, Tiliaceae, Trioridaceae, Typhaceae,
Vitaceae The Vitaceae are a family of flowering plants, with 14 genera and around 910 known species, including common plants such as Vitis, grapevines (''Vitis'' spp.) and Parthenocissus quinquefolia, Virginia creeper (''Parthenocissus quinquefolia''). Th ...
,
Violaceae Violaceae is a family of flowering plants established in 1802, consisting of about 1000 species in about 25 genera. It takes its name from the genus '' Viola'', the violets and pansies. Older classifications such as the Cronquist system plac ...
, Winteraceae, Xyridaceae, Zygophyllaceae


Archaeology

Phytoliths are very robust, and are useful in
archaeology Archaeology or archeology is the study of human activity through the recovery and analysis of material culture. The archaeological record consists of Artifact (archaeology), artifacts, architecture, biofact (archaeology), biofacts or ecofacts, ...
because they can help to reconstruct the plants present at a site when the rest of the plant parts have been burned up or dissolved. Because they are made of the inorganic substances silica or calcium oxalate, phytoliths don't decay with the rest of the plant and can survive in conditions that would destroy organic residues. Phytoliths can provide evidence of both economically important plants and those that are indicative of the environment at a particular time period. Phytoliths may be extracted from residue on many sources: dental calculus (buildup on teeth); food preparation tools like rocks, grinders, and scrapers; cooking or storage containers; ritual offerings; and garden areas.


Sampling strategies

#Cultural contexts: The most important consideration when designing a sampling strategy for a cultural context is to fit the sampling design to the research objectives. For example, if the objective of the study is to identify activity areas, it may be ideal to sample using a grid system. If the objective is to identify foodstuffs, it may be more beneficial to focus on areas where food processing and consumption took place. It is always beneficial to sample ubiquitously throughout the site, because it is always possible to select a smaller portion of the samples for analysis from a larger collection. Samples should be collected and labeled in individual plastic bags. It is not necessary to freeze the samples, or treat them in any special way because silica is not subject to decay by microorganisms. #Natural contexts: Sampling a natural context, typically for the purpose of environmental reconstruction, should be done in a context that is free of disturbances. Human activity can alter the makeup of samples of local vegetation, so sites with evidence of human occupation should be avoided. Bottom deposits of lakes are usually a good context for phytolith samples, because wind often will carry phytoliths from the topsoil and deposit them on water, where they will sink to the bottom, very similar to pollen. It is also possible and desirable to take vertical samples of phytolith data, as it can be a good indicator of changing frequencies of taxa over time. #Modern surfaces: Sampling modern surfaces for use with archeobotanical data may be used to create a reference collection, if the taxa being sampled are known. It may also serve to "detect downward movement of phytoliths into archaeological strata". Taking point samples for modern contexts is ideal.


Laboratory analysis

The first step in extracting phytoliths from the
soil Soil, also commonly referred to as earth, is a mixture of organic matter, minerals, gases, water, and organisms that together support the life of plants and soil organisms. Some scientific definitions distinguish dirt from ''soil'' by re ...
matrix involves removing all non-soil and non-sediment material. This can include stone or bone tools, teeth, or other various
prehistoric Prehistory, also called pre-literary history, is the period of human history between the first known use of stone tools by hominins  million years ago and the beginning of recorded history with the invention of writing systems. The use o ...
artifacts.
Clay Clay is a type of fine-grained natural soil material containing clay minerals (hydrous aluminium phyllosilicates, e.g. kaolinite, ). Most pure clay minerals are white or light-coloured, but natural clays show a variety of colours from impuriti ...
has a strong ability for holding onto phytoliths and also must be removed using a centrifuge technique. Once the sample is left to only house soil and sediment components, phytoliths can be separated through a variety of techniques. Pressurized microwave extraction is a fast method but does not produce as pure of results as other methods. Dry ashing tends to break up phytoliths better than wet ashing.
Ethanol Ethanol (also called ethyl alcohol, grain alcohol, drinking alcohol, or simply alcohol) is an organic compound with the chemical formula . It is an Alcohol (chemistry), alcohol, with its formula also written as , or EtOH, where Et is the ps ...
can also be added to the sample and lit on fire, leaving only the phytoliths behindSudbury, J.B. (2010). Quantitative phytolith analysis: The key to understanding buried soils and to reconstructing paleoenvironments. Oklahoma State University. One of the most effective methods of phytolith isolation is heavy liquid flotation. Over time, different liquids have been utilized as technology changes, each still carrying different advantages and disadvantages to the separation process. Current liquids used include zinc bromide, hydrochloric acid, or sodium polytungstate which are added to the sample. After flotation occurs, the separated phytoliths and liquid are moved to another container where
water Water is an inorganic compound with the chemical formula . It is a transparent, tasteless, odorless, and Color of water, nearly colorless chemical substance. It is the main constituent of Earth's hydrosphere and the fluids of all known liv ...
is added. This lowers the solution's density, causing the phytoliths to sink to the bottom of the container. The phytoliths are removed and rinsed several times to ensure all of the flotation
solvent A solvent (from the Latin language, Latin ''wikt:solvo#Latin, solvō'', "loosen, untie, solve") is a substance that dissolves a solute, resulting in a Solution (chemistry), solution. A solvent is usually a liquid but can also be a solid, a gas ...
has been removed and they are placed in storage. Phytoliths can either be stored in a dry setting or in
ethanol Ethanol (also called ethyl alcohol, grain alcohol, drinking alcohol, or simply alcohol) is an organic compound with the chemical formula . It is an Alcohol (chemistry), alcohol, with its formula also written as , or EtOH, where Et is the ps ...
to prevent abrasion. When examining the sample, polarized light microscopy, simple light microscopy, phase contrast microscopy, or
scanning electron microscopy A scanning electron microscope (SEM) is a type of electron microscope that produces images of a sample by scanning the surface with a focused beam of electrons. The electrons interact with atoms in the sample, producing various signals that ...
can be used. The sample should be placed in a mounting media on the slide which can be Canada Balsam, Benzyl Benzoate, silicon oil, glycerin, or water. The target phytolith count is dependent on the objectives, research design, and conditions of the
archaeological site An archaeological site is a place (or group of physical sites) in which evidence of past activity is preserved (either prehistoric or recorded history, historic or contemporary), and which has been, or may be, investigated using the discipline ...
from which they were obtained. However, a count of two hundred phytoliths are recommended as a good starting point. If the conditions warrant, more should be counted. It is still not possible to isolate plant DNA from extracted phytoliths.


Burned phytoliths

When looking at a phytolith through a
microscope A microscope () is a laboratory equipment, laboratory instrument used to examine objects that are too small to be seen by the naked eye. Microscopy is the science of investigating small objects and structures using a microscope. Microscopic ...
lens, it will usually appear clear against the microscope's light. However phytoliths dark in color are found in the archeological record; these phytoliths display evidence of fire exposure. Gradation of darkness can be used to calculate past environmental fires. Darker phytoliths are correlated with higher
carbon Carbon () is a chemical element; it has chemical symbol, symbol C and atomic number 6. It is nonmetallic and tetravalence, tetravalent—meaning that its atoms are able to form up to four covalent bonds due to its valence shell exhibiting 4 ...
residue and fires with higher temperatures which can be measured on the Burnt Phytolith Index (BPI). Burned phytoliths can also appear melted in addition to darkened color. Fires which cause burned phytoliths can be ignited by
anthropogenic Anthropogenic ("human" + "generating") is an adjective that may refer to: * Anthropogeny, the study of the origins of humanity Anthropogenic may also refer to things that have been generated by humans, as follows: * Human impact on the enviro ...
or non-anthropogenic sources and can be determined through charcoal and burned phytolith analysis. It is believed that during prehistoric times, an increase in intensive land use such as through agriculture, caused an increase in anthropogenic fires while non-anthropogenic fires could have resulted from lightning strikes. Fire intensity depends on available
biomass Biomass is a term used in several contexts: in the context of ecology it means living organisms, and in the context of bioenergy it means matter from recently living (but now dead) organisms. In the latter context, there are variations in how ...
which usually peaks in the dry, fall season.


Contribution to archaeobotanical knowledge

*Phytolith analysis is particularly useful in tropical regions, where other types of plant remains are typically not well preserved. *Phytolith analysis has been used to retrace the domestication and ancestral lineage of various plants. For example, research tracing modern lineages of maize in South America and the American Southwest using phytolith remains on ceramics and pottery has proven to be enlightening. Recent genetic data suggests that the oldest ancestor of
Zea mays Maize (; ''Zea mays''), also known as corn in North American English, is a tall stout Poaceae, grass that produces cereal grain. It was domesticated by indigenous peoples of Mexico, indigenous peoples in southern Mexico about 9,000 years ago ...
is teosinte, a wild grass found in southwest Mexico. The
Zea mays Maize (; ''Zea mays''), also known as corn in North American English, is a tall stout Poaceae, grass that produces cereal grain. It was domesticated by indigenous peoples of Mexico, indigenous peoples in southern Mexico about 9,000 years ago ...
lineage split off from this grass about six to seven thousand years ago. Phytolith analyses from Bolivia suggest that several varieties of
maize Maize (; ''Zea mays''), also known as corn in North American English, is a tall stout grass that produces cereal grain. It was domesticated by indigenous peoples in southern Mexico about 9,000 years ago from wild teosinte. Native American ...
were present in the
Lake Titicaca Lake Titicaca (; ; ) is a large freshwater lake in the Andes mountains on the border of Bolivia and Peru. It is often called the highest navigable lake in the world. Titicaca is the largest lake in South America, both in terms of the volume of ...
region of Bolivia almost 1000 years before the Tiwanaku expansion, when it was previously thought to have been introduced in the region. This case is not isolated. Around the same time, certain varieties of maize could be found with ubiquity across part of South America, suggesting a highly frequented and established trade route existed. Phytolith data from the southeastern United States suggest that two different lineages of maize were introduced from two different sources. Research that hopes to discover more specific information about the spread of maize throughout the southeastern United States is currently under way.Lustek, Robert Karl. (2008). Setting the Archaeology of Maize on Its Ear: The Use of Phytolith Assemblages to Identify Lineages of Maize. University of Minnesota . *To date, phytolith analyses have also been popular for studies of
rice Rice is a cereal grain and in its Domestication, domesticated form is the staple food of over half of the world's population, particularly in Asia and Africa. Rice is the seed of the grass species ''Oryza sativa'' (Asian rice)—or, much l ...
. Because the morphology of rice phytoliths has been significantly documented, studies concerning the domestication of rice, as well as crop processing models using phytolith analyses, are insightful. In one study, phytolith analysis was used to complement macro-remains sampling in order to infer concentrations of plant parts and predict crop processing stages. *Phytolith analysis has been useful in identifying early agriculture in South East Asia during the Early Holocene.


Tracing the history of plant-human interactions

*Jigsaw puzzle-shaped phytoliths observed from sites in Greece but not from Israel may relate to climatic difference, possibly relating to irrigation performed for legume plant management. * ''Cucurbita'' (squash and gourd) phytolith data from early Holocene sites in Ecuador indicate that the plant food production occurred across lowland South America independent from Mesoamerica.


Problems with phytolith analysis of remains

#Multiplicity: different parts of a single plant may produce different phytoliths. #Redundancy: different plants can produce the same kind of phytolith. #Some plants produce large numbers of phytoliths while others produce only few. Taxonomic resolution issues deriving from the multiplicity and redundancy problems can be dealt with by integrating phytolith analysis with other areas, such as micromorphology and morphometric approaches used in soil analysis. It is suggested that using phytolith data from food residues (on ceramics, usually) can decrease the bias from both of these problems, because phytolith analysis is more likely to represent crop products and identification of phytoliths can be made with more confidence. Also, food residues do not usually accumulate extraneous deposits. In other words, the samples are more likely to represent a primary context.


Palaeontology and paleoenvironmental reconstructions

Phytoliths occur abundantly in the fossil record, and have been reported from the Late
Devonian The Devonian ( ) is a period (geology), geologic period and system (stratigraphy), system of the Paleozoic era (geology), era during the Phanerozoic eon (geology), eon, spanning 60.3 million years from the end of the preceding Silurian per ...
onwards. Robustness of phytoliths make them available to be found in various remains including sedimentary deposits, coprolites, and dental calculus from diverse environmental conditions. In addition to reconstructing human-plant interactions since the
Pleistocene The Pleistocene ( ; referred to colloquially as the ''ice age, Ice Age'') is the geological epoch (geology), epoch that lasted from to 11,700 years ago, spanning the Earth's most recent period of repeated glaciations. Before a change was fin ...
, phytoliths can be used to identify palaeoenvironments and to track vegetational change. More and more studies are acknowledging phytolith records as a valuable tool for reconstructing pre-
Quaternary The Quaternary ( ) is the current and most recent of the three periods of the Cenozoic Era in the geologic time scale of the International Commission on Stratigraphy (ICS), as well as the current and most recent of the twelve periods of the ...
vegetation changes (e.g.,). Occasionally, paleontologists find and identify phytoliths associated with extinct plant-eating animals (i.e.
herbivore A herbivore is an animal anatomically and physiologically evolved to feed on plants, especially upon vascular tissues such as foliage, fruits or seeds, as the main component of its diet. These more broadly also encompass animals that eat ...
s). Findings such as these reveal useful information about the diet of these extinct animals, and also shed light on the evolutionary history of many different types of plants. Paleontologists in India have recently identified grass phytoliths in
dinosaur Dinosaurs are a diverse group of reptiles of the clade Dinosauria. They first appeared during the Triassic Geological period, period, between 243 and 233.23 million years ago (mya), although the exact origin and timing of the #Evolutio ...
dung ( coprolites), strongly suggesting that the evolution of grasses began earlier than previously thought. Phytolith records in the context of the global silica cycle, along with CO2 concentrations and other paleoclimatological records, can help constrain estimates of certain long-term terrestrial,
biogeochemical cycle A biogeochemical cycle, or more generally a cycle of matter, is the movement and transformation of chemical elements and compounds between living organisms, the atmosphere, and the Earth's crust. Major biogeochemical cycles include the carbon cyc ...
s and interrelated climate changes. Light intensity (e.g., open versus closed canopies) can affect cell morphology, especially cell length and area, which can be measured from phytolith fossils. These can be useful for tracing fluctuations in the ancient light regime and canopy cover. Freshwater oases and related landscape changes that could have affected plant-human interactions were reconstructed through synthesizing phytolith, pollen, and paleoenvironmental data in the well-known early hominin site of Olduvai Gorge in Tanzania. Comparisons between paleorecords of phytolith remains and modern reference remains in the same region can aid reconstructing how plant composition and related environments changed over time. Though further testing is required, evolution and development of phytoliths in vascular plants seem to be related to certain types of plant-animal interactions in which phytoliths function as a defensive mechanism for herbivores or related to adaptive changes to habitats. Japanese and Korean archaeologists refer to grass and crop plant phytoliths as "plant opal" in archaeological literature.


Gallery

Phytolithes observés au Microscope Electronique à Balayage 06.jpg Phytolithes observés au Microscope Electronique à Balayage 04.jpg Phytolithes observés au Microscope Electronique à Balayage 03.jpg Phytolithes observés au Microscope Electronique à Balayage 02.jpg Phytolithes observés au Microscope Electronique à Balayage 01.jpg For extended examples of phytolith taxonomy, see the University of Sheffield's comprehensiv
Phytolith Interpretation page


Carbon sequestration

Research, particularly since 2005 has shown that carbon in phytoliths can be resistant to decomposition for millennia and can accumulate in soils. While researchers had previously known that phytoliths could persist in some soils for thousands of years and that there was carbon occluded within phytoliths that could be used for radiocarbon dating, research into the capacity of phytoliths as a method of storing carbon in soils was pioneered by Parr and Sullivan who suggested that there was a real opportunity to sequester carbon securely in soils for the long term, in the form of carbon inclusions in durable silica phytoliths. During the mineralization process which creates the phytolith, many different
nutrients A nutrient is a substance used by an organism to survive, grow and reproduce. The requirement for dietary nutrient intake applies to animals, plants, fungi and protists. Nutrients can be incorporated into cells for metabolic purposes or excret ...
are absorbed from the
soil Soil, also commonly referred to as earth, is a mixture of organic matter, minerals, gases, water, and organisms that together support the life of plants and soil organisms. Some scientific definitions distinguish dirt from ''soil'' by re ...
including
carbon Carbon () is a chemical element; it has chemical symbol, symbol C and atomic number 6. It is nonmetallic and tetravalence, tetravalent—meaning that its atoms are able to form up to four covalent bonds due to its valence shell exhibiting 4 ...
which forms ''Phytolith Occluded Carbon'' (PhytOC). Phytoliths are able to hold PhytOC in the soil for thousands of years, much longer than other organic methods. While this yields phytoliths as an important area of study regarding carbon sequestration, not all plant species produce analogous results. For example, phytoliths derived from oats can hold 5.0% to 5.8%
carbon Carbon () is a chemical element; it has chemical symbol, symbol C and atomic number 6. It is nonmetallic and tetravalence, tetravalent—meaning that its atoms are able to form up to four covalent bonds due to its valence shell exhibiting 4 ...
while
sugarcane Sugarcane or sugar cane is a species of tall, Perennial plant, perennial grass (in the genus ''Saccharum'', tribe Andropogoneae) that is used for sugar Sugar industry, production. The plants are 2–6 m (6–20 ft) tall with stout, jointed, fib ...
phytoliths can yield 3.88% to 19.26%
carbon Carbon () is a chemical element; it has chemical symbol, symbol C and atomic number 6. It is nonmetallic and tetravalence, tetravalent—meaning that its atoms are able to form up to four covalent bonds due to its valence shell exhibiting 4 ...
. Different
species A species () is often defined as the largest group of organisms in which any two individuals of the appropriate sexes or mating types can produce fertile offspring, typically by sexual reproduction. It is the basic unit of Taxonomy (biology), ...
and
subspecies In Taxonomy (biology), biological classification, subspecies (: subspecies) is a rank below species, used for populations that live in different areas and vary in size, shape, or other physical characteristics (Morphology (biology), morpholog ...
hold different carbon storage potential within the silica rather than within the plant itself. Therefore, total PhytOC sequester largely depends on the condition of the
biome A biome () is a distinct geographical region with specific climate, vegetation, and animal life. It consists of a biological community that has formed in response to its physical environment and regional climate. In 1935, Tansley added the ...
such as
grassland A grassland is an area where the vegetation is dominance (ecology), dominated by grasses (Poaceae). However, sedge (Cyperaceae) and rush (Juncaceae) can also be found along with variable proportions of legumes such as clover, and other Herbaceo ...
,
forest A forest is an ecosystem characterized by a dense ecological community, community of trees. Hundreds of definitions of forest are used throughout the world, incorporating factors such as tree density, tree height, land use, legal standing, ...
, or cropland, and is influenced by
climate Climate is the long-term weather pattern in a region, typically averaged over 30 years. More rigorously, it is the mean and variability of meteorological variables over a time spanning from months to millions of years. Some of the meteoro ...
and soil conditions. Proper upkeep of these
ecosystems An ecosystem (or ecological system) is a system formed by Organism, organisms in interaction with their Biophysical environment, environment. The Biotic material, biotic and abiotic components are linked together through nutrient cycles and en ...
can boost
biomass Biomass is a term used in several contexts: in the context of ecology it means living organisms, and in the context of bioenergy it means matter from recently living (but now dead) organisms. In the latter context, there are variations in how ...
production and therefore more silica and carbon uptake. Proper conservation methods could include controlled
grazing In agriculture, grazing is a method of animal husbandry whereby domestic livestock are allowed outdoors to free range (roam around) and consume wild vegetations in order to feed conversion ratio, convert the otherwise indigestible (by human diges ...
or fires. While carbon sequestration is a potentially important way to limit atmospheric greenhouse gas concentrations in the long term, the use of phytoliths to achieve this must be balanced against other uses that might be made of the same biomass carbon (or land for producing biomass) to reduce
Greenhouse gas emissions Greenhouse gas (GHG) emissions from human activities intensify the greenhouse effect. This contributes to climate change. Carbon dioxide (), from burning fossil fuels such as coal, petroleum, oil, and natural gas, is the main cause of climate chan ...
(GHG) by other means including, for example, the production of bioenergy to offset fossil fuel emissions. If enhanced phytolith production results in a reduced availability of biomass for other GHG mitigation strategies, its effectiveness for lowering net GHG emissions may be reduced or negated.


See also

* Biomineralization * Druse (botany) crystals of calcium oxalate, silicates, or carbonates present in plants * Raphide elongate calcium oxalate crystals in plants


References


Bibliography

* Thorn, V. C. 2004.
An annotated bibliography of phytolith analysis and atlas of selected New Zealand subantarctic and subalphine phytoliths
'. * * Kealhofer, L. 1998.
Opal phytoliths in Southeast Asian flora
'. * * * * * * * * * {{refend


External links






Association of Environmental Archaeology

Russian Scientific Association for Phytolith Research
*Steve Archer, "About Phytoliths": https://web.archive.org/web/20070506230653/http://research.history.org/Archaeological_Research/Collections/CollArchaeoBot/PhytoFAQs.cfm . *Terry B. Ball, "Phytolith Literature Review": http://www.ou.edu/cas/botany-micro/ben/ben282.html . *Dr. Sanjay Eksambekar's 'Phytolith Research Institute': http://www.phytolithresearch.com *Deborah Pearsall's MU Phytolith Database, https://web.archive.org/web/20070422163808/http://web.missouri.edu/~umcasphyto/index.shtml *"What are Phytoliths?" Sandstone Archaeology Paleoethnobotany Laboratory https://web.archive.org/web/20080820003629/http://www.sandstonearchaeology.com/paleoethnobotany.html *Neumann, Chevalier, and Vrydaghs, "Phytoliths in archaeology: recent advances": https://link.springer.com/article/10.1007/s00334-016-0598-3 *"Grass-opal phytoliths as climatic indicators of the Great Plains Pleistocene": http://www.kgs.ku.edu/Publications/Bulletins/GB5/Twiss/index.html *Huang et al., "Intensive Management Increases Phytolith-Occluded Carbon Sequestration in Moso Bamboo Plantations in Subtropical China"https://www.mdpi.com/1999-4907/10/10/883/htm Plant morphology Plant anatomy Plant physiology