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A novel mechanism by which silica defends grasses against herbivory
J W Hunt1, A P Dean, R E Webster
1Faculty of Life Sciences, University of Manchester, Jackson's Mill, PO Box 88, Manchester M60 1QD, UK.
Background And Aims:
Previous studies have shown that silica in grass leaves defends them against small herbivores, which avoid high-silica grasses and digest them less efficiently. This study tested the idea that silica can reduce digestibility by preventing the mechanical breakdown of chlorenchyma cells.
Methods:
Both the percentage of total chlorophyll liberated from high- and low-silica grass leaves by mechanical grinding and the chlorophyll content of locust faeces were measured.
Key Results:
High-silica grasses released less chlorophyll after grinding and retained more after passing through the gut of locusts, showing that silica levels correlated with increased mechanical protection.
Conclusions:
These results suggest that silica may defend grasses at least in part by reducing mechanical breakdown of the leaf, and that mechanical protection of resources in chlorenchyma cells is a novel and potentially important mechanism by which silica protects grasses.
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