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PNAS Plus: A stress recovery signaling network for enhanced flooding tolerance in Arabidopsis thaliana

机译:PNAS Plus:应力恢复信号网络用于提高拟南芥的耐洪能力

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摘要

Abiotic stresses in plants are often transient, and the recovery phase following stress removal is critical. Flooding, a major abiotic stress that negatively impacts plant biodiversity and agriculture, is a sequential stress where tolerance is strongly dependent on viability underwater and during the postflooding period. Here we show that in Arabidopsis thaliana accessions (Bay-0 and Lp2-6), different rates of submergence recovery correlate with submergence tolerance and fecundity. A genome-wide assessment of ribosome-associated transcripts in Bay-0 and Lp2-6 revealed a signaling network regulating recovery processes. Differential recovery between the accessions was related to the activity of three genes: RESPIRATORY BURST OXIDASE HOMOLOG D, SENESCENCE-ASSOCIATED GENE113, and ORESARA1, which function in a regulatory network involving a reactive oxygen species (ROS) burst upon desubmergence and the hormones abscisic acid and ethylene. This regulatory module controls ROS homeostasis, stomatal aperture, and chlorophyll degradation during submergence recovery. This work uncovers a signaling network that regulates recovery processes following flooding to hasten the return to prestress homeostasis.
机译:植物中的非生物胁迫通常是短暂的,消除胁迫后的恢复阶段至关重要。洪水是一种主要的非生物胁迫,会对植物的生物多样性和农业产生负面影响,是一种连续胁迫,其耐受力在很大程度上取决于水下和洪水后的生存能力。在这里,我们显示在拟南芥种质中(Bay-0和Lp2-6),不同的淹没恢复率与淹没耐受性和繁殖力相关。 Bay-0和Lp2-6中核糖体相关转录本的全基因组评估揭示了调节恢复过程的信号网络。这些种质之间的差异恢复与三个基因的活性有关:呼吸爆发性氧化酶同系物D,敏感性关联的基因113和ORESARA1,它们在一个调控网络中起作用,该调控网络涉及在淹没后破裂的活性氧(ROS)和激素脱落酸。和乙烯。该调节模块控制浸入恢复过程中的ROS稳态,气孔孔径和叶绿素降解。这项工作揭示了一个信号网络,该网络调节洪水后的恢复过程,以加速恢复到预应力稳态。

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