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黄瓜花叶病毒影响宿主植物性状从而介导蚜虫传播的生化和生理机制。

Biochemical and physiological mechanisms underlying effects of Cucumber mosaic virus on host-plant traits that mediate transmission by aphid vectors.

作者信息

Mauck Kerry E, De Moraes Consuelo M, Mescher Mark C

机构信息

Department of Entomology, Penn State University, University Park, PA, 16802, USA; Department of Environmental Systems Science, ETH Zürich, 8092, Zürich, Switzerland.

出版信息

Plant Cell Environ. 2014 Jun;37(6):1427-39. doi: 10.1111/pce.12249. Epub 2014 Jan 13.

Abstract

The transmission of insect-vectored diseases entails complex interactions among pathogens, hosts and vectors. Chemistry plays a key role in these interactions; yet, little work has addressed the chemical ecology of insect-vectored diseases, especially in plant pathosystems. Recently, we documented effects of Cucumber mosaic virus (CMV) on the phenotype of its host (Cucurbita pepo) that influence plant-aphid interactions and appear conducive to the non-persistent transmission of this virus. CMV reduces host-plant quality for aphids, causing rapid vector dispersal. Nevertheless, aphids are attracted to the elevated volatile emissions of CMV-infected plants. Here, we show that CMV infection (1) disrupts levels of carbohydrates and amino acids in leaf tissue (where aphids initially probe plants and acquire virions) and in the phloem (where long-term feeding occurs) in ways that reduce plant quality for aphids; (2) causes constitutive up-regulation of salicylic acid; (3) alters herbivore-induced jasmonic acid biosynthesis as well as the sensitivity of downstream defences to jasmonic acid; and (4) elevates ethylene emissions and free fatty acid precursors of volatiles. These findings are consistent with previously documented patterns of aphid performance and behaviour and provide a foundation for further exploration of the genetic mechanisms responsible for these effects and the evolutionary processes that shape them.

摘要

昆虫传播疾病的过程涉及病原体、宿主和媒介之间复杂的相互作用。化学在这些相互作用中起着关键作用;然而,针对昆虫传播疾病的化学生态学研究甚少,尤其是在植物病理系统中。最近,我们记录了黄瓜花叶病毒(CMV)对其宿主(西葫芦)表型的影响,这种影响会影响植物与蚜虫的相互作用,并且似乎有利于该病毒的非持久性传播。CMV降低了蚜虫的宿主植物质量,导致媒介迅速扩散。尽管如此,蚜虫会被感染CMV的植物释放出的增加的挥发性物质所吸引。在此,我们表明CMV感染(1)以降低植物对蚜虫质量的方式破坏了叶片组织(蚜虫最初探测植物并获取病毒粒子的部位)和韧皮部(蚜虫长期取食的部位)中的碳水化合物和氨基酸水平;(2)导致水杨酸的组成型上调;(3)改变食草动物诱导的茉莉酸生物合成以及下游防御对茉莉酸的敏感性;(4)提高乙烯排放和挥发性物质的游离脂肪酸前体。这些发现与先前记录的蚜虫表现和行为模式一致,并为进一步探索造成这些影响的遗传机制以及塑造它们的进化过程奠定了基础。

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