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剖析拟南芥早期热应激反应导致植物存活或死亡的蛋白质组动态变化。

Dissecting the proteome dynamics of the early heat stress response leading to plant survival or death in Arabidopsis.

作者信息

Echevarría-Zomeño Sira, Fernández-Calvino Lourdes, Castro-Sanz Ana B, López Juan Antonio, Vázquez Jesús, Castellano M Mar

机构信息

Centro de Biotecnología y Genómica de Plantas, INIA-UPM, 28223, Pozuelo de Alarcón, Madrid, Spain.

Centro Nacional de Investigaciones Cardiovasculares, Instituto de Salud Carlos III, 28029, Madrid, Spain.

出版信息

Plant Cell Environ. 2016 Jun;39(6):1264-78. doi: 10.1111/pce.12664. Epub 2016 Feb 24.

Abstract

In many plant species, an exposure to a sublethal temperature triggers an adaptative response called acclimation. This response involves an extensive molecular reprogramming that allows the plant to further survive to an otherwise lethal increase of temperature. A related response is also launched under an abrupt and lethal heat stress that, in this case, is unable to successfully promote thermotolerance and therefore ends up in plant death. Although these molecular programmes are expected to have common players, the overlapping degree and the specific regulators of each process are currently unknown. We have carried out a high-throughput comparative proteomics analysis during acclimation and during the early stages of the plant response to a severe heat stress that lead Arabidopsis seedlings either to survival or death. This analysis dissects these responses, unravels the common players and identifies the specific proteins associated with these different fates. Thermotolerance assays of mutants in genes with an uncharacterized role in heat stress demonstrate the relevance of this study to uncover both positive and negative heat regulators and pinpoint a pivotal role of JR1 and BAG6 in heat tolerance.

摘要

在许多植物物种中,暴露于亚致死温度会触发一种称为驯化的适应性反应。这种反应涉及广泛的分子重编程,使植物能够在原本致命的温度升高情况下进一步存活。在突然的致死性热胁迫下也会启动一种相关反应,然而在这种情况下,该反应无法成功促进耐热性,最终导致植物死亡。尽管预计这些分子程序会有共同的参与者,但目前每个过程的重叠程度和特定调节因子尚不清楚。我们在拟南芥幼苗适应过程以及对严重热胁迫的早期反应(该胁迫导致拟南芥幼苗存活或死亡)期间进行了高通量比较蛋白质组学分析。该分析剖析了这些反应,揭示了共同参与者,并鉴定了与这些不同命运相关的特定蛋白质。对在热胁迫中作用未明确的基因的突变体进行耐热性测定,证明了本研究对于揭示正、负热调节因子的相关性,并明确了JR1和BAG6在耐热性中的关键作用。

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