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植物卵沉积对拟南芥抗食草性的启动取决于植物的发育阶段。

Priming of Arabidopsis resistance to herbivory by insect egg deposition depends on the plant's developmental stage.

机构信息

Applied Zoology/ Animal Ecology, Institute of Biology, Freie Universität Berlin, Haderslebener Str. 9, 12163 Berlin, Germany.

Applied Genetics, Institute of Biology, Freie Universität Berlin, Albrecht-Thaer-Weg 6, 14195 Berlin, Germany.

出版信息

J Exp Bot. 2022 Aug 11;73(14):4996-5015. doi: 10.1093/jxb/erac199.

Abstract

While traits of plant resistance to herbivory often change during ontogeny, it is unknown whether the primability of this resistance depends on the plant's developmental stage. Resistance in non-flowering Arabidopsis thaliana against Pieris brassicae larvae is known to be primable by prior egg deposition on leaves. We investigated whether this priming effect is maintained in plants at the flowering stage. Larval performance assays revealed that flowering plants' resistance to herbivory was not primable by egg deposition. Accordingly, transcriptomes of flowering plants showed almost no response to eggs. In contrast, egg deposition on non-flowering plants enhanced the expression of genes induced by subsequent larval feeding. Strikingly, flowering plants showed constitutively high expression levels of these genes. Larvae performed generally worse on flowering than on non-flowering plants, indicating that flowering plants constitutively resist herbivory. Furthermore, we determined the seed weight in regrown plants that had been exposed to eggs and larvae during the non-flowering or flowering stage. Non-flowering plants benefitted from egg priming with a smaller loss in seed yield. The seed yield of flowering plants was unaffected by the treatments, indicating tolerance towards the larvae. Our results show that the primability of anti-herbivore defences in Arabidopsis depends on the plant's developmental stage.

摘要

虽然植物对草食性的抗性特征通常在个体发育过程中发生变化,但尚不清楚这种抗性的启动是否取决于植物的发育阶段。已知非开花拟南芥对粉蝶幼虫的抗性可以通过先前在叶片上产卵来启动。我们研究了这种启动效应是否在开花期的植物中得以维持。幼虫性能测定表明,开花植物对草食性的抗性不能通过产卵来启动。因此,开花植物的转录组对卵几乎没有反应。相比之下,在非开花植物上产卵会增强随后幼虫取食诱导的基因表达。引人注目的是,开花植物这些基因的表达水平一直很高。幼虫在开花植物上的表现通常比在非开花植物上差,这表明开花植物对草食性具有组成型抗性。此外,我们测定了在非开花或开花阶段暴露于卵和幼虫后的再生植物的种子重量。非开花植物通过卵启动获益,种子产量损失较小。开花植物的种子产量不受处理的影响,表明其对幼虫具有耐受性。我们的结果表明,拟南芥抗草食性防御的启动能力取决于植物的发育阶段。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8e0a/9366327/c74f127b288a/erac199f0001.jpg

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