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番茄黄化曲叶病毒对植物针对传毒媒介和非传毒媒介食草动物的防御反应有不同影响。

Tomato yellow leaf curl virus differentially influences plant defence responses to a vector and a non-vector herbivore.

作者信息

Su Qi, Mescher Mark C, Wang Shaoli, Chen Gong, Xie Wen, Wu Qingjun, Wang Wenkai, Zhang Youjun

机构信息

College of Agriculture, Yangtze University, Jingzhou, Hubei, 434025, China.

Institute of Vegetables and Flowers, Chinese Academy of Agricultural Sciences, Beijing, 100081, China.

出版信息

Plant Cell Environ. 2016 Mar;39(3):597-607. doi: 10.1111/pce.12650. Epub 2016 Jan 5.

Abstract

Plants frequently engage in simultaneous interactions with diverse classes of biotic antagonists. Differential induction of plant defence pathways by these antagonists, and interactions between pathways, can have important ecological implications; however, these effects are currently not well understood. We explored how Tomato yellow leaf curl virus (TYLCV) influenced the performance of its vector (Bemisia tabaci) and a non-vector herbivore (Tetranychus urticae) occurring separately or together on tomato plants (Solanum lycopersicum). TYLCV enhanced the performance of B. tabaci, although this effect was statistically significant only in the absence of T. urticae, which adversely affected B. tabaci performance regardless of infection status. In contrast, the performance of T. urticae was enhanced (only) by the combined presence of TYLCV and B. tabaci. Analyses of phytohormone levels and defence gene expression in wild-type tomatoes and various plant-defence mutants indicate that the enhancement of herbivore performance (for each species) entails the disruption of downstream defences in the jasmonic acid (JA) pathway. For T. urticae, this disruption appears to involve antagonistic effects of salicylic acid (SA), which is cumulatively induced to high levels by B. tabaci and TYLCV. In contrast, TYLCV was found to suppress JA-mediated responses to B. tabaci via mechanisms independent of SA.

摘要

植物经常同时与多种生物拮抗物相互作用。这些拮抗物对植物防御途径的差异诱导以及途径之间的相互作用可能具有重要的生态意义;然而,目前对这些影响还了解不足。我们探究了番茄黄化曲叶病毒(TYLCV)如何影响其传毒介体(烟粉虱)和一种非传毒植食性昆虫(二斑叶螨)在番茄植株(番茄)上单独或共同存在时的表现。TYLCV提高了烟粉虱的表现,尽管这种影响仅在没有二斑叶螨时具有统计学意义,而二斑叶螨无论感染状态如何都会对烟粉虱的表现产生不利影响。相反,二斑叶螨的表现仅在TYLCV和烟粉虱共同存在时得到提高。对野生型番茄和各种植物防御突变体中植物激素水平和防御基因表达的分析表明,(对于每个物种而言)植食性昆虫表现的提高需要破坏茉莉酸(JA)途径中的下游防御。对于二斑叶螨来说,这种破坏似乎涉及水杨酸(SA)的拮抗作用,烟粉虱和TYLCV会累积诱导SA达到高水平。相反,发现TYLCV通过独立于SA的机制抑制JA介导的对烟粉虱的反应。

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