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植物硅防御抑制食草动物的表现,但取食方式是关键。

Plant Silicon Defences Suppress Herbivore Performance, but Mode of Feeding Is Key.

机构信息

Hawkesbury Institute for the Environment, Western Sydney University, Penrith, New South Wales, Australia.

Institute for Plant Sciences, University of Bern, Bern, Switzerland.

出版信息

Ecol Lett. 2024 Oct;27(10):e14519. doi: 10.1111/ele.14519.

Abstract

The performance of herbivorous animals depends on the nutritional and defensive traits of the plants they consume. The uptake and deposition of biogenic silicon in plant tissues is arguably the most basic and ubiquitous anti-herbivore defence used by plants, especially grasses. We conducted meta-analyses of 150 studies reporting how vertebrate and invertebrate herbivores performed when feeding on silicon-rich plants relative to those feeding on low-silicon plants. Silicon levels were 52% higher and 32% more variable in silicon-rich plants compared to plants with low silicon, which resulted in an overall 33% decline in herbivore performance. Fluid-feeding herbivore performance was less adversely impacted (-14%) than tissue-chewing herbivores, including mammals (-45%), chewing arthropods (-33%) and plant-boring arthropods (-39%). Fluid-feeding arthropods with a wide diet breadth or those feeding on perennial plant species were mostly unaffected by silicon defences. Unlike many other plant defences, where diet specialisation often helps herbivores overcome their effects, silicon negatively impacts chewing herbivores regardless of diet breadth. We conclude that silicon defences primarily target chewing herbivores and impact vertebrate and invertebrate herbivores to a similar degree.

摘要

食草动物的表现取决于它们所消耗的植物的营养和防御特性。植物吸收和沉积生物硅被认为是植物最基本和最普遍的抗食草动物防御机制,尤其是草类。我们对 150 项研究进行了荟萃分析,这些研究报告了脊椎动物和无脊椎动物食草动物在食用富含硅的植物与食用低硅植物时的表现。与低硅植物相比,硅含量高的植物中的硅含量高 52%,且硅含量的变异性高 32%,这导致食草动物的表现总体下降了 33%。与组织咀嚼食草动物相比,流体采食食草动物的表现受影响较小(-14%),包括哺乳动物(-45%)、咀嚼节肢动物(-33%)和植物蛀虫(-39%)。具有广泛饮食范围的流体采食节肢动物或以多年生植物为食的节肢动物大多不受硅防御的影响。与许多其他植物防御机制不同,食草动物的饮食专业化通常有助于它们克服这些防御机制的影响,而硅对咀嚼食草动物的负面影响无论其饮食范围如何都存在。我们的结论是,硅防御主要针对咀嚼食草动物,并对脊椎动物和无脊椎动物食草动物产生相似程度的影响。

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