6533b874fe1ef96bd12d62ea

RESEARCH PRODUCT

Does silica concentration and phytolith ultrastructure relate to phytolith hardness?

Thomas M. KaiserEllen Schulz-kornasDaniela E. WinklerDaniela E. WinklerCaroline Braune

subject

0106 biological sciences0301 basic medicinelcsh:BiotechnologyBiomedical EngineeringBiophysicsPhytolithMaterial propertyForage010603 evolutionary biology01 natural sciencesBiomaterialslcsh:Biochemistry03 medical and health scienceschemistry.chemical_compoundlcsh:TP248.13-248.65Botanymedicinelcsh:QD415-436biologyMechanical EngineeringTooth wearThemeda triandrabiology.organism_classificationTooth enamelSilicateSurfaces Coatings and Films030104 developmental biologymedicine.anatomical_structurechemistryPhytolithUltrastructureUltrastructureSilicate availabilityHordeum vulgareIndentation

description

Abstract Grasses are an important part of the forage of many herbivorous mammals and their phytoliths have long been regarded as the most important agent of tooth wear. Recent work has challenged this “paradigm” in finding evidence 1. of native phytoliths to be much softer then tooth enamel and 2. indicating, that phytolith hardness is highly variable, 3. prone to methodology and 4. not easy to be related to habitat conditions. We conduct controlled silica-cultivations measuring SiO2 content in the common forage grass Themeda triandra. Phytoliths are extracted natively, and nano-indentation values are measured. Phytolith hardness in Themeda triandra is found to be independent of silicate availability in the substrate. We further investigate the phytolith ultrastructure of Hordeum vulgare phytoliths. Phytoliths are shown to be an anisotropic composite of at least 3 components, silica bodies, inter-body matrix (both mineralised) and globular inclusions (likely non-mineralised). It can be argued, that indentation will be largely influenced by the heterogeneity of the structure and thus nano-indentation measurements will largely reflect the matrix and its mechanical properties but not necessarily the silicate bodies, which make up the vast majority of a phytolith.

10.1016/j.bsbt.2017.12.004http://www.sciencedirect.com/science/article/pii/S2405451817300296