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翻译组件对拟南芥高光、高温和低温驯化反应有贡献。

Translational Components Contribute to Acclimation Responses to High Light, Heat, and Cold in Arabidopsis.

作者信息

Garcia-Molina Antoni, Kleine Tatjana, Schneider Kevin, Mühlhaus Timo, Lehmann Martin, Leister Dario

机构信息

Plant Molecular Biology, Faculty of Biology, Ludwig-Maximilians-University Munich, Großhadernerstraße 2-4, 82152 Planegg-Martinsried, Germany.

Computational Systems Biology, TU Kaiserslautern, Paul-Ehrlich-Straße 23, 67663 Kaiserslautern, Germany.

出版信息

iScience. 2020 Jul 24;23(7):101331. doi: 10.1016/j.isci.2020.101331. Epub 2020 Jul 1.

Abstract

Plant metabolism is broadly reprogrammed during acclimation to abiotic changes. Most previous studies have focused on transitions from standard to single stressful conditions. Here, we systematically analyze acclimation processes to levels of light, heat, and cold stress that subtly alter physiological parameters and assess their reversibility during de-acclimation. Metabolome and transcriptome changes were monitored at 11 different time points. Unlike transcriptome changes, most alterations in metabolite levels did not readily return to baseline values, except in the case of cold acclimation. Similar regulatory networks operate during (de-)acclimation to high light and cold, whereas heat and high-light responses exhibit similar dynamics, as determined by surprisal and conditional network analyses. In all acclimation models tested here, super-hubs in conditional transcriptome networks are enriched for components involved in translation, particularly ribosomes. Hence, we suggest that the ribosome serves as a common central hub for the control of three different (de-)acclimation responses.

摘要

在适应非生物变化的过程中,植物新陈代谢会发生广泛的重编程。此前大多数研究都集中在从标准条件到单一胁迫条件的转变上。在此,我们系统地分析了植物对轻度改变生理参数的光照、高温和低温胁迫水平的适应过程,并评估了去适应过程中这些胁迫的可逆性。在11个不同时间点监测了代谢组和转录组的变化。与转录组变化不同,除了冷适应的情况外,代谢物水平的大多数变化并没有轻易恢复到基线值。通过意外性和条件网络分析确定,在对高光和低温的(去)适应过程中,类似的调控网络发挥作用,而高温和高光反应表现出相似的动态变化。在本文测试的所有适应模型中,条件转录组网络中的超级枢纽富含参与翻译的成分,特别是核糖体。因此,我们认为核糖体是控制三种不同(去)适应反应的共同核心枢纽。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c5a6/7364123/1ab0479130a2/fx1.jpg

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