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三种病毒蛋白调节拟南芥中蚜虫与植物的相互作用。

A trio of viral proteins tunes aphid-plant interactions in Arabidopsis thaliana.

作者信息

Westwood Jack H, Groen Simon C, Du Zhiyou, Murphy Alex M, Anggoro Damar Tri, Tungadi Trisna, Luang-In Vijitra, Lewsey Mathew G, Rossiter John T, Powell Glen, Smith Alison G, Carr John P

机构信息

Department of Plant Sciences, University of Cambridge, Cambridge, United Kingdom.

Imperial College, London, United Kingdom.

出版信息

PLoS One. 2013 Dec 11;8(12):e83066. doi: 10.1371/journal.pone.0083066. eCollection 2013.

Abstract

BACKGROUND

Virus-induced deterrence to aphid feeding is believed to promote plant virus transmission by encouraging migration of virus-bearing insects away from infected plants. We investigated the effects of infection by an aphid-transmitted virus, cucumber mosaic virus (CMV), on the interaction of Arabidopsis thaliana, one of the natural hosts for CMV, with Myzus persicae (common names: 'peach-potato aphid', 'green peach aphid').

METHODOLOGY/PRINCIPAL FINDINGS: Infection of Arabidopsis (ecotype Col-0) with CMV strain Fny (Fny-CMV) induced biosynthesis of the aphid feeding-deterrent 4-methoxy-indol-3-yl-methylglucosinolate (4MI3M). 4MI3M inhibited phloem ingestion by aphids and consequently discouraged aphid settling. The CMV 2b protein is a suppressor of antiviral RNA silencing, which has previously been implicated in altering plant-aphid interactions. Its presence in infected hosts enhances the accumulation of CMV and the other four viral proteins. Another viral gene product, the 2a protein (an RNA-dependent RNA polymerase), triggers defensive signaling, leading to increased 4MI3M accumulation. The 2b protein can inhibit ARGONAUTE1 (AGO1), a host factor that both positively-regulates 4MI3M biosynthesis and negatively-regulates accumulation of substance(s) toxic to aphids. However, the 1a replicase protein moderated 2b-mediated inhibition of AGO1, ensuring that aphids were deterred from feeding but not poisoned. The LS strain of CMV did not induce feeding deterrence in Arabidopsis ecotype Col-0.

CONCLUSIONS/SIGNIFICANCE: Inhibition of AGO1 by the 2b protein could act as a booby trap since this will trigger antibiosis against aphids. However, for Fny-CMV the interplay of three viral proteins (1a, 2a and 2b) appears to balance the need of the virus to inhibit antiviral silencing, while inducing a mild resistance (antixenosis) that is thought to promote transmission. The strain-specific effects of CMV on Arabidopsis-aphid interactions, and differences between the effects of Fny-CMV on this plant and those seen previously in tobacco (inhibition of resistance to aphids) may have important epidemiological consequences.

摘要

背景

病毒诱导的对蚜虫取食的威慑作用被认为通过促使携带病毒的昆虫从受感染植物上迁移,从而促进植物病毒传播。我们研究了由蚜虫传播的黄瓜花叶病毒(CMV)感染对CMV的天然寄主之一拟南芥与桃蚜(俗名:“桃蚜”“烟蚜”)相互作用的影响。

方法/主要发现:用CMV Fny株系(Fny-CMV)感染拟南芥(生态型Col-0)诱导了蚜虫取食威慑物4-甲氧基吲哚-3-基甲基芥子油苷(4MI3M)的生物合成。4MI3M抑制蚜虫对韧皮部的摄取,从而阻碍蚜虫定殖。CMV 2b蛋白是抗病毒RNA沉默的抑制子,此前已发现它与改变植物-蚜虫相互作用有关。它在受感染寄主中的存在增强了CMV和其他四种病毒蛋白的积累。另一种病毒基因产物2a蛋白(一种依赖RNA的RNA聚合酶)触发防御信号,导致4MI3M积累增加。2b蛋白可以抑制AGO1(一种宿主因子),AGO1既正向调节4MI3M生物合成,又负向调节对蚜虫有毒物质的积累。然而,1a复制酶蛋白减轻了2b介导的对AGO1的抑制,确保蚜虫被阻止取食但不会中毒。CMV的LS株系在拟南芥生态型Col-0中未诱导取食威慑作用。

结论/意义:2b蛋白对AGO1的抑制可能起到一个陷阱的作用,因为这会引发对蚜虫的抗生作用。然而,对于Fny-CMV来说,三种病毒蛋白(1a、2a和2b)的相互作用似乎在平衡病毒抑制抗病毒沉默的需求,同时诱导一种被认为能促进传播的轻度抗性(排趋性)。CMV对拟南芥-蚜虫相互作用的株系特异性影响,以及Fny-CMV对这种植物的影响与之前在烟草中观察到的影响(抑制对蚜虫的抗性)之间的差异可能具有重要的流行病学意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e7b4/3859657/3bcd85cbaac2/pone.0083066.g001.jpg

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