首页> 美国卫生研究院文献>Springer Open Choice >Proteomic analysis shows that stress response proteins are significantly up-regulated in resistant diploid wheat (Triticum monococcum) in response to attack by the grain aphid (Sitobion avenae)
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Proteomic analysis shows that stress response proteins are significantly up-regulated in resistant diploid wheat (Triticum monococcum) in response to attack by the grain aphid (Sitobion avenae)

机译:蛋白质组学分析表明抗性二倍体小麦(Triticum monococcum)中的应激反应蛋白显着上调以应对谷物蚜虫(Sitobion avenae)的侵袭。

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摘要

The grain aphid Sitobion avenae (F.) is a major pest of wheat, acting as a virus vector as well as causing direct plant damage. Commonly grown wheat varieties in the UK have only limited resistance to this pest. The present study was carried out to investigate the potential of a diploid wheat line (ACC20 PGR1755), reported as exhibiting resistance to S. avenae, to serve as a source of resistance genes. The diploid wheat line was confirmed as partially resistant, substantially reducing the fecundity, longevity and growth rate of the aphid. Proteomic analysis showed that approximately 200 protein spots were reproducibly detected in leaf extracts from both the resistant line and a comparable susceptible line (ACC5 PGR1735) using two-dimensional gel electrophoresis and image comparison software. Twenty-four spots were significantly up-regulated (>2-fold) in the resistant line after 24 h of aphid feeding (13 and 11 involved in local and systemic responses, respectively). Approximately 50 % of all differentially expressed protein spots were identified by a combination of database searching with MS and MS/MS data, revealing that the majority of proteins up-regulated by aphid infestation were involved in metabolic processes (including photosynthesis) and transcriptional regulation. However, in the resistant line only, several stress response proteins (including NBS–LRR-like proteins) and oxidative stress response proteins were identified as up-regulated in response to aphid feeding, as well as proteins involved in DNA synthesis/replication/repair. This study indicates that the resistant diploid line ACC20 PGR1755 may provide a valuable resource in breeding wheat for resistance to aphids.Electronic supplementary materialThe online version of this article (doi:10.1007/s11032-015-0220-x) contains supplementary material, which is available to authorized users.
机译:谷物蚜虫Sitobion avenae(F.)是小麦的主要害虫,既是病毒的载体,又对植物造成直接损害。英国通常种植的小麦品种对这种害虫的抵抗力有限。进行本研究以调查据报道显示对燕麦葡萄球菌具有抗性的二倍体小麦品系(ACC20 PGR1755)作为抗性基因的来源的潜力。确认二倍体小麦品系具有部分抗性,大大降低了蚜虫的繁殖力,寿命和生长速率。蛋白质组学分析表明,使用二维凝胶电泳和图像比较软件可从抗性品系和相当的易感品系(ACC5 PGR1735)的叶提取物中可重复检测到约200个蛋白斑点。蚜虫进食24小时后,抗​​性品系中有24个斑点显着上调(> 2倍)(分别有13和11个参与局部和全身反应)。通过数据库搜索与MS和MS / MS数据相结合,鉴定出所有差异表达蛋白质斑点中约50%,这表明蚜虫侵染上调的大多数蛋白质都参与了代谢过程(包括光合作用)和转录调控。但是,仅在抗性品系中,鉴定到了响应蚜虫进食而上调了几种应激反应蛋白(包括NBS-LRR样蛋白)和氧化应激应答蛋白,以及与DNA合成/复制/修复有关的蛋白。这项研究表明抗性二倍体系ACC20 PGR1755可能为小麦的抗蚜虫育种提供有价值的资源。电子补充材料本文的在线版本(doi:10.1007 / s11032-015-0220-x)包含补充材料,该材料为可供授权用户使用。

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