受南非木薯花叶病毒感染的易感和耐受木薯品系的蛋白质组图谱。

IF 4 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY Proteomes Pub Date : 2021-10-23 DOI:10.3390/proteomes9040041
Elelwani Ramulifho, Marie Emma Christine Rey
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引用次数: 0

摘要

木薯生产受到南非木薯马赛克病毒(SACMV)的威胁,该病毒会导致木薯马赛克病。木薯陆地品系 TME3 对 SACMV 具有耐受性,而 T200 则极易感染。本研究旨在确定参与抗病毒防御的叶片蛋白质组。液相色谱质谱法(LC-MS)分别鉴定了这两个品种在系统感染(感染后 32 天)和症状恢复(感染后 67 天)时的 2682 个(54 个差异表达)和 2817 个(206 个差异表达)蛋白质。观察到两个品系的差异表达蛋白(DEPs)数量存在差异。基因本体分析表明,在感染后 67 天(dpi),叶绿体、蛋白酶体和核糖体等防御相关通路在耐 SACMV 的 TME3 中的代表性过高。与 T200(31% 表达不足)相比,TME3 在感染后 67 dpi 时,叶绿体中高比例(56%)的过表达蛋白定位在叶绿体中,这表明叶绿体蛋白在 TME3 的耐受性中发挥作用。含核糖体_L7Ae结构域的蛋白(Manes.12G139100)在67 dpi时在TME3中独特地过度表达,并与核糖体蛋白Sac52(RPL10)相互作用。RPL10 是 NIK1 介导的效应触发免疫(ETI)对 geminivirus 感染反应中的一个已知的关键角色,这表明 Sac52 可能在 TME3 中的 SACMV 恢复中发挥作用。总之,TME3和T200中不同的蛋白质表达反应可能是揭示对CMD耐受性的关键。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Proteome Mapping of South African Cassava Mosaic Virus-Infected Susceptible and Tolerant Landraces of Cassava.

The production of cassava is threatened by the geminivirus South African cassava mosaic virus (SACMV), which causes cassava mosaic disease. Cassava landrace TME3 shows tolerance to SACMV, while T200 is highly susceptible. This study aimed to identify the leaf proteome involved in anti-viral defence. Liquid chromatography mass spectrometry (LC-MS) identified 2682 (54 differentially expressed) and 2817 (206 differentially expressed) proteins in both landraces at systemic infection (32 days post infection) and symptom recovery (67 days post infection), respectively. Differences in the number of differentially expressed proteins (DEPs) between the two landraces were observed. Gene ontology analysis showed that defence-associated pathways such as the chloroplast, proteasome, and ribosome were overrepresented at 67 days post infection (dpi) in SACMV-tolerant TME3. At 67 dpi, a high percentage (56%) of over-expressed proteins were localized in the chloroplast in TME3 compared to T200 (31% under-expressed), proposing that chloroplast proteins play a role in tolerance in TME3. Ribosomal_L7Ae domain-containing protein (Manes.12G139100) was over-expressed uniquely in TME3 at 67 dpi and interacts with the ribosomal protein Sac52 (RPL10). RPL10 is a known key player in the NIK1-mediated effector triggered immunity (ETI) response to geminivirus infection, indicating a possible role for Sac52 in SACMV recovery in TME3. In conclusion, differential protein expression responses in TME3 and T200 may be key to unravel tolerance to CMD.

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来源期刊
Proteomes
Proteomes Biochemistry, Genetics and Molecular Biology-Clinical Biochemistry
CiteScore
6.50
自引率
3.00%
发文量
37
审稿时长
11 weeks
期刊介绍: Proteomes (ISSN 2227-7382) is an open access, peer reviewed journal on all aspects of proteome science. Proteomes covers the multi-disciplinary topics of structural and functional biology, protein chemistry, cell biology, methodology used for protein analysis, including mass spectrometry, protein arrays, bioinformatics, HTS assays, etc. Our aim is to encourage scientists to publish their experimental and theoretical results in as much detail as possible. Therefore, there is no restriction on the length of papers. Scope: -whole proteome analysis of any organism -disease/pharmaceutical studies -comparative proteomics -protein-ligand/protein interactions -structure/functional proteomics -gene expression -methodology -bioinformatics -applications of proteomics
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