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通过系统生物学方法揭示了多个细胞区室参与了 Nicotiana benthamiana-花生矮化病毒-satRNA 的相互作用。

Multiple cellular compartments engagement in Nicotiana benthamiana-peanut stunt virus-satRNA interactions revealed by systems biology approach.

机构信息

Department of Molecular Biology and Biotechnology, Institute of Plant Protection, National Research Institute, 20 Władysława Węgorka Street, 60-318, Poznan, Poland.

Institute of Bioorganic Chemistry, Polish Academy of Sciences, 12/14 Noskowskiego Street, 61-704, Poznan, Poland.

出版信息

Plant Cell Rep. 2021 Jul;40(7):1247-1267. doi: 10.1007/s00299-021-02706-4. Epub 2021 May 24.

Abstract

PSV infection changed the abundance of host plant's transcripts and proteins associated with various cellular compartments, including ribosomes, chloroplasts, mitochondria, the nucleus and cytosol, affecting photosynthesis, translation, transcription, and splicing. Virus infection is a process resulting in numerous molecular, cellular, and physiological changes, a wide range of which can be analyzed due to development of many high-throughput techniques. Plant RNA viruses are known to replicate in the cytoplasm; however, the roles of chloroplasts and other cellular structures in the viral replication cycle and in plant antiviral defense have been recently emphasized. Therefore, the aim of this study was to analyze the small RNAs, transcripts, proteins, and phosphoproteins affected during peanut stunt virus strain P (PSV-P)-Nicotiana benthamiana interactions with or without satellite RNA (satRNA) in the context of their cellular localization or functional connections with particular cellular compartments to elucidate the compartments most affected during pathogenesis at the early stages of infection. Moreover, the processes associated with particular cell compartments were determined. The 'omic' results were subjected to comparative data analyses. Transcriptomic and small RNA (sRNA)-seq data were obtained to provide new insights into PSV-P-satRNA-plant interactions, whereas previously obtained proteomic and phosphoproteomic data were used to broaden the analysis to terms associated with cellular compartments affected by virus infection. Based on the collected results, infection with PSV-P contributed to changes in the abundance of transcripts and proteins associated with various cellular compartments, including ribosomes, chloroplasts, mitochondria, the nucleus and the cytosol, and the most affected processes were photosynthesis, translation, transcription, and mRNA splicing. Furthermore, sRNA-seq and phosphoproteomic analyses indicated that kinase regulation resulted in decreases in phosphorylation levels. The kinases were associated with the membrane, cytoplasm, and nucleus components.

摘要

PSV 感染改变了宿主植物与各种细胞区室相关的转录本和蛋白质的丰度,包括核糖体、叶绿体、线粒体、细胞核和细胞质,从而影响光合作用、翻译、转录和剪接。病毒感染是一个导致大量分子、细胞和生理变化的过程,由于许多高通量技术的发展,可以分析其中的很大一部分。已知植物 RNA 病毒在细胞质中复制;然而,叶绿体和其他细胞结构在病毒复制周期和植物抗病毒防御中的作用最近得到了强调。因此,本研究的目的是分析在花生丛矮病毒株 P(PSV-P)-Nicotiana benthamiana 相互作用过程中受影响的小 RNA、转录本、蛋白质和磷酸蛋白质,以及在没有卫星 RNA(satRNA)的情况下,这些受影响的小 RNA、转录本、蛋白质和磷酸蛋白质在细胞定位或与特定细胞区室的功能连接方面,以阐明在感染早期发病过程中受影响最严重的区室。此外,还确定了与特定细胞区室相关的过程。对“组学”结果进行了比较数据分析。转录组学和小 RNA(sRNA)-seq 数据的获得为 PSV-P-satRNA-植物相互作用提供了新的见解,而之前获得的蛋白质组学和磷酸蛋白质组学数据被用于将分析扩展到与病毒感染受影响的细胞区室相关的术语。根据收集到的结果,PSV-P 感染导致与核糖体、叶绿体、线粒体、细胞核和细胞质等各种细胞区室相关的转录本和蛋白质的丰度发生变化,受影响最严重的过程是光合作用、翻译、转录和 mRNA 剪接。此外,sRNA-seq 和磷酸蛋白质组学分析表明,激酶调节导致磷酸化水平降低。这些激酶与膜、细胞质和核成分相关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9dc4/8233301/aa009d91c7cf/299_2021_2706_Fig1_HTML.jpg

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