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首页> 外文期刊>Journal of Experimental Botany >Proteome analysis of the Albugo candida-Brassica juncea pathosystem reveals that the timing of the expression of defence-related genes is a crucial determinant of pathogenesis
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Proteome analysis of the Albugo candida-Brassica juncea pathosystem reveals that the timing of the expression of defence-related genes is a crucial determinant of pathogenesis

机译:对白色念珠菌-芥菜油菜病理系统的蛋白质组学分析表明,与防御相关的基因表达的时机是致病机理的关键决定因素

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White rust, caused by Albugo candida, is a serious pathogen of Brassica juncea (Indian mustard) and poses a potential hazard to the presently developing canola-quality B. juncea industry worldwide. A comparative proteomic study was undertaken to explore the molecular mechanisms that underlie the defence responses of Brassica juncea to white rust disease caused by the biotrophic oomycete Albugo candida. Nineteen proteins showed reproducible differences in abundance between a susceptible (RH 819) and a resistant variety (CBJ 001) of B. juncea following inoculation with A. candida. The identities of all 19 proteins were successfully established through Q-TOF MS/MS. Five of these proteins were only detected in the resistant variety and showed significant differences in their abundance at various times following pathogen inoculation in comparison to mock-inoculated plants. Among these was a thaumatin-like protein (PR-5), a protein not previously associated with the resistance of B. juncea towards A. candida. One protein, peptidyl-prolyl cis/trans isomerase (PPIase) isoform CYP20-3, was only detected in the susceptible variety and increased in abundance in response to the pathogen. PPIases have recently been discovered to play an important role in pathogenesis by suppressing the host cell's immune response. For a subset of seven proteins examined in more detail, an increase in transcript abundance always preceded their induction at the proteome level. These findings are discussed within the context of the A. candida-Brassica juncea pathosystem, especially in relation to host resistance to this pathogen.
机译:由白化病念珠菌引起的白锈病是芥菜型油菜(印度芥菜)的严重病原体,对目前全球油菜品质的芥菜型油菜(B. juncea)产业发展构成潜在危害。进行了比较蛋白质组学研究,探讨了芥菜型油菜对生物营养性卵菌白念珠菌引起的白锈病防御反应的分子机制。接种假丝酵母后,十九种蛋白质在芥菜气单胞菌的易感性菌株(RH 819)和抗性品种(CBJ 001)之间显示出可再现的差异。通过Q-TOF MS / MS成功建立了所有19种蛋白质的身份。与模拟接种的植物相比,仅在抗性品种中检测到了其中的5种蛋白质,病原菌接种后不同时间的蛋白质丰度差异显着。其中有一种索马甜蛋白样蛋白(PR-5),该蛋白以前与芥菜芽胞杆菌对念珠菌的抗性不相关。仅在易感品种中检测到一种蛋白质,肽基-脯氨酰顺/反异构酶(PPIase)同工型CYP20-3,并响应病原体而增加。最近发现,PPIase通过抑制宿主细胞的免疫反应在发病机理中起重要作用。对于更详细检查的七个蛋白质的子集,转录本丰度的增加始终在蛋白质组水平上先于其诱导。这些发现是在念珠菌-芸苔芥病理系统的背景下讨论的,特别是关于宿主对该病原体的抗性。

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