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新型原生质体-叶绿体蛋白质组学分析研究水稻条纹病毒对叶绿体定位相关蛋白的干扰。

Characterization of Proteins Involved in Chloroplast Targeting Disturbed by Rice Stripe Virus by Novel Protoplast⁻Chloroplast Proteomics.

机构信息

The State Key Laboratory Breeding Base for Sustainable Control of Pest and Disease, Key Laboratory of Biotechnology in Plant Protection of MOA of China and Zhejiang Province, Institute of Virology and Biotechnology, Zhejiang Academy of Agricultural Sciences, Hangzhou 310021, China.

Texas A&M University AgriLife Research Center at Dallas, Dallas, TX 75252, USA.

出版信息

Int J Mol Sci. 2019 Jan 10;20(2):253. doi: 10.3390/ijms20020253.

Abstract

Rice stripe virus (RSV) is one of the most devastating viral pathogens in rice and can also cause the general chlorosis symptom in plants. The chloroplast changes associated with chlorosis symptom suggest that RSV interrupts normal chloroplast functions. Although the change of proteins of the whole cell or inside the chloroplast in response to RSV infection have been revealed by proteomics, the mechanisms resulted in chloroplast-related symptoms and the crucial factors remain to be elucidated. RSV infection caused the malformation of chloroplast structure and a global reduction of chloroplast membrane protein complexes in plants. Here, both the protoplast proteome and the chloroplast proteome were acquired simultaneously upon RSV infection, and the proteins in each fraction were analyzed. In the protoplasts, 1128 proteins were identified, among which 494 proteins presented significant changes during RSV; meanwhile, 659 proteins were identified from the chloroplasts, and 279 of these chloroplast proteins presented significant change. According to the label-free LC⁻MS/MS data, 66 nucleus-encoded chloroplast-related proteins (ChRPs), which only reduced in chloroplast but not in the whole protoplast, were identified, indicating that these nuclear-encoded ChRPswere not transported to chloroplasts during RSV infection. Gene ontology (GO) enrichment analysis confirmed that RSV infection changed the biological process of protein targeting to chloroplast, where 3 crucial ChRPs (K4CSN4, K4CR23, and K4BXN9) were involved in the regulation of protein targeting into chloroplast. In addition to these 3 proteins, 41 among the 63 candidate proteins were characterized to have chloroplast transit peptides. These results indicated that RSV infection changed the biological process of protein targeting into chloroplast and the location of ChRPs through crucial protein factors, which illuminated a new layer of RSV⁻host interaction that might contribute to the symptom development.

摘要

水稻条纹病毒(RSV)是水稻中最具破坏性的病毒病原体之一,也会导致植物出现普遍的黄化症状。与黄化症状相关的叶绿体变化表明 RSV 中断了正常的叶绿体功能。尽管蛋白质组学已经揭示了 RSV 感染引起的整个细胞或叶绿体内部蛋白质的变化,但导致叶绿体相关症状的机制和关键因素仍有待阐明。RSV 感染导致叶绿体结构畸形和植物中叶绿体膜蛋白复合物的整体减少。在这里,同时获得了 RSV 感染后的原生质体蛋白质组和叶绿体蛋白质组,并对每个部分的蛋白质进行了分析。在原生质体中,鉴定出 1128 种蛋白质,其中 494 种蛋白质在 RSV 期间发生显著变化;同时,从叶绿体中鉴定出 659 种蛋白质,其中 279 种叶绿体蛋白发生显著变化。根据无标记 LC-MS/MS 数据,鉴定出 66 种仅在叶绿体中减少而不在整个原生质体中减少的核编码叶绿体相关蛋白(ChRPs),表明这些核编码的 ChRPs 在 RSV 感染期间未被转运到叶绿体中。GO 富集分析证实,RSV 感染改变了蛋白质靶向叶绿体的生物过程,其中 3 种关键的 ChRPs(K4CSN4、K4CR23 和 K4BXN9)参与了蛋白质靶向叶绿体的调控。除了这 3 种蛋白外,63 种候选蛋白中有 41 种被鉴定具有叶绿体转运肽。这些结果表明,RSV 感染通过关键蛋白因子改变了蛋白质靶向叶绿体的生物过程和 ChRPs 的位置,揭示了 RSV-宿主相互作用的新层面,可能有助于症状的发展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/839b/6358847/aaf7b79c1cab/ijms-20-00253-g001.jpg

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