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靶向蛋白质组学可对乙烯受体进行定量分析,并揭示未成熟番茄中SlETR3的积累情况。

Targeted Proteomics Allows Quantification of Ethylene Receptors and Reveals SlETR3 Accumulation in Never-Ripe Tomatoes.

作者信息

Chen Yi, Rofidal Valérie, Hem Sonia, Gil Julie, Nosarzewska Joanna, Berger Nathalie, Demolombe Vincent, Bouzayen Mondher, Azhar Beenish J, Shakeel Samina N, Schaller G Eric, Binder Brad M, Santoni Véronique, Chervin Christian

机构信息

GBF, Université de Toulouse, INRA, Toulouse, France.

BPMP, CNRS, INRA, Montpellier SupAgro, Université de Montpellier, Montpellier, France.

出版信息

Front Plant Sci. 2019 Aug 29;10:1054. doi: 10.3389/fpls.2019.01054. eCollection 2019.

Abstract

Ethylene regulates fruit ripening and several plant functions (germination, plant growth, plant-microbe interactions). Protein quantification of ethylene receptors (ETRs) is essential to study their functions, but is impaired by low resolution tools such as antibodies that are mostly nonspecific, or the lack of sensitivity of shotgun proteomic approaches. We developed a targeted proteomic method, to quantify low-abundance proteins such as ETRs, and coupled this to mRNAs analyses, in two tomato lines: Wild Type (WT) and Never-Ripe (NR) which is insensitive to ethylene because of a gain-of-function mutation in ETR3. We obtained mRNA and protein abundance profiles for each ETR over the fruit development period. Despite a limiting number of replicates, we propose Pearson correlations between mRNA and protein profiles as interesting indicators to discriminate the two genotypes: such correlations are mostly positive in the WT and are affected by the NR mutation. The influence of putative post-transcriptional and post-translational changes are discussed. In NR fruits, the observed accumulation of the mutated ETR3 protein between ripening stages (Mature Green and Breaker + 8 days) may be a cause of NR tomatoes to stay orange. The label-free quantitative proteomics analysis of membrane proteins, concomitant to Parallel Reaction Monitoring analysis, may be a resource to study changes over tomato fruit development. These results could lead to studies about ETR subfunctions and interconnections over fruit development. Variations of RNA-protein correlations may open new fields of research in ETR regulation. Finally, similar approaches may be developed to study ETRs in whole plant development and plant-microorganism interactions.

摘要

乙烯调节果实成熟以及多种植物功能(发芽、植物生长、植物与微生物的相互作用)。对乙烯受体(ETRs)进行蛋白质定量分析对于研究其功能至关重要,但目前受到诸如大多不具有特异性的抗体等低分辨率工具的限制,或者受到鸟枪法蛋白质组学方法灵敏度不足的影响。我们开发了一种靶向蛋白质组学方法,用于定量低丰度蛋白质,如乙烯受体,并将其与mRNA分析相结合,应用于两个番茄品系:野生型(WT)和永不成熟(NR)品系。NR品系由于乙烯受体3(ETR3)功能获得性突变而对乙烯不敏感。我们获得了每个乙烯受体在果实发育期间的mRNA和蛋白质丰度图谱。尽管重复样本数量有限,但我们提出mRNA和蛋白质图谱之间的皮尔逊相关性可作为区分这两种基因型的有趣指标:这种相关性在野生型中大多为正,并且受到NR突变的影响。文中还讨论了假定的转录后和翻译后变化的影响。在NR果实中,观察到的成熟阶段(绿熟期和破色期 + 8天)之间突变的ETR3蛋白积累可能是NR番茄保持橙色的原因。与平行反应监测分析同时进行的膜蛋白无标记定量蛋白质组学分析,可能是研究番茄果实发育过程中变化的一种资源。这些结果可能会引发关于果实发育过程中乙烯受体亚功能及其相互联系的研究。RNA - 蛋白质相关性的变化可能会为乙烯受体调控开辟新的研究领域。最后,可能会开发类似的方法来研究整个植物发育和植物 - 微生物相互作用中的乙烯受体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5064/6727826/750770759596/fpls-10-01054-g001.jpg

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