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Mutation in HvCBP20 (Cap Binding Protein 20) Adapts Barley to Drought Stress at Phenotypic and Transcriptomic Levels

机译:HvCBP20(帽结合蛋白20)中的突变使大麦在表型和转录组水平上适应干旱胁迫。

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摘要

CBP20 (Cap-Binding Protein 20) encodes a small subunit of the cap-binding complex (CBC), which is involved in the conserved cell processes related to RNA metabolism in plants and, simultaneously, engaged in the signaling network of drought response, which is dependent on ABA. Here, we report the enhanced tolerance to drought stress of barley mutant in the HvCBP20 gene manifested at the morphological, physiological, and transcriptomic levels. Physiological analyses revealed differences between the hvcbp20.ab mutant and its WT in response to a water deficiency. The mutant exhibited a higher relative water content (RWC), a lower stomatal conductance and changed epidermal pattern compared to the WT after drought stress. Transcriptome analysis using the Agilent Barley Microarray integrated with observed phenotypic traits allowed to conclude that the hvcbp20.ab mutant exhibited better fitness to stress conditions by its much more efficient and earlier activation of stress-preventing mechanisms. The network hubs involved in the adjustment of hvcbp20.ab mutant to the drought conditions were proposed. These results enabled to make a significant progress in understanding the role of CBP20 in the drought stress response.
机译:CBP20(盖帽结合蛋白20)编码盖帽结合复合物(CBC)的一个小亚基,它参与与植物RNA代谢有关的保守细胞过程,同时参与干旱反应的信号网络。取决于ABA。在这里,我们报告了在形态,生理和转录水平上表现出的HvCBP20基因大麦突变体对干旱胁迫的增强耐受性。生理分析揭示了hvcbp20.ab突变体与其野生型对水分缺乏的响应之间的差异。与干旱胁迫后的野生型相比,该突变体表现出较高的相对含水量(RWC),较低的气孔导度和改变的表皮模式。使用结合观察到的表型性状的安捷伦大麦微阵列进行的转录组分析可以得出结论,hvcbp20.ab突变体通过更有效和更早地激活压力预防机制而表现出对压力条件的更好适应性。提出了将hvcbp20.ab突变体适应干旱条件的网络中枢。这些结果使人们在了解CBP20在干旱胁迫响应中的作用方面取得了重大进展。

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