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Short-term exposure to silicon rapidly enhances plant resistance to herbivory

Western Sydney University
Waterman, Jamie ; Cibils Stewart, Ximena ; Cazzonelli, Chris ; Hartley, Susan ; Johnson, Scott
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ctx_ver=Z39.88-2004&rft_val_fmt=info%3Aofi%2Ffmt%3Akev%3Amtx%3Adc&rfr_id=info%3Asid%2FANDS&rft_id=info:doi10.1002/ECY.3438&rft.title=Short-term exposure to silicon rapidly enhances plant resistance to herbivory&rft.identifier=10.1002/ECY.3438&rft.publisher=DRYAD &rft.description=Silicon (Si) can adversely affect insect herbivores, particularly in plants that evolved the ability to accumulate large quantities of Si. Very rapid herbivore-induced accumulation of Si has recently been demonstrated, but the level of protection against herbivory this affords plants remains unknown. Brachypodium distachyon, a model Si hyperaccumulating grass, was exposed to the chewing herbivore, Helicoverpa armigera, and grown under three conditions: supplied Si over 34 days (+Si), not supplied Si (-Si), or supplied Si once herbivory began (-Si→+Si). We evaluated the effectiveness of each Si treatment at reducing herbivore performance and measured Si-based defenses and phenolics (another form of defense often reduced by Si). Although Si concentrations remained lower, within 72 hr of exposure to Si, -Si→+Si plants were as resistant to herbivory as +Si plants. Both +Si and -Si→+Si treatments reduced herbivore damage and growth, and increased mandible wear compared to -Si. After 6 hr, herbivory increased filled Si cell density in -Si→+Si plants, and within 24 hr, -Si→+Si plants reached similar filled Si cell densities to +Si plants, although decreased phenolics only occurred in +Si plants. We demonstrate that plants with short-term Si exposure can rapidly accumulate Si-based anti-herbivore defenses as effectively as plants with long-term exposure.&rft.creator=Waterman, Jamie &rft.creator=Cibils Stewart, Ximena &rft.creator=Cazzonelli, Chris &rft.creator=Hartley, Susan &rft.creator=Johnson, Scott &rft.date=2021&rft.relation=https://doi.org/10.1002/ECY.3438&rft.coverage=&rft_rights=Copyright Western Sydney University&rft_rights=PDDL - Public Domain Dedication and License 1.0 http://opendatacommons.org/licenses/pddl/1.0/&rft_subject=Herbivory&rft.type=dataset&rft.language=English Access the data

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Silicon (Si) can adversely affect insect herbivores, particularly in plants that evolved the ability to accumulate large quantities of Si. Very rapid herbivore-induced accumulation of Si has recently been demonstrated, but the level of protection against herbivory this affords plants remains unknown. Brachypodium distachyon, a model Si hyperaccumulating grass, was exposed to the chewing herbivore, Helicoverpa armigera, and grown under three conditions: supplied Si over 34 days (+Si), not supplied Si (-Si), or supplied Si once herbivory began (-Si→+Si). We evaluated the effectiveness of each Si treatment at reducing herbivore performance and measured Si-based defenses and phenolics (another form of defense often reduced by Si). Although Si concentrations remained lower, within 72 hr of exposure to Si, -Si→+Si plants were as resistant to herbivory as +Si plants. Both +Si and -Si→+Si treatments reduced herbivore damage and growth, and increased mandible wear compared to -Si. After 6 hr, herbivory increased filled Si cell density in -Si→+Si plants, and within 24 hr, -Si→+Si plants reached similar filled Si cell densities to +Si plants, although decreased phenolics only occurred in +Si plants. We demonstrate that plants with short-term Si exposure can rapidly accumulate Si-based anti-herbivore defenses as effectively as plants with long-term exposure.

Created: 2021-06-07

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  • DOI : 10.1002/ECY.3438
  • Local : research-data.westernsydney.edu.au/published/58ca9260a08511ef973faf7a77013cfe
ACN 633 798 857