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黄瓜幼苗(L.)中外源钙介导的耐缺氧性增强相关转录组和微小RNA的综合分析

Integrated analysis of transcriptome and microRNAs associated with exogenous calcium-mediated enhancement of hypoxic tolerance in cucumber seedlings ( L.).

作者信息

He Lizhong, Yan Jun, Ding Xiaotao, Jin Haijun, Zhang Hongmei, Cui Jiawei, Zhou Qiang, Yu Jizhu

机构信息

Shanghai Key Lab of Protected Horticultural Technology, Horticultural Research Institute, Shanghai Academy of Agricultural Sciences, Shanghai, China.

Shanghai Dushi Green Engineering Co., Ltd., Shanghai, China.

出版信息

Front Plant Sci. 2023 Jan 4;13:994268. doi: 10.3389/fpls.2022.994268. eCollection 2022.

Abstract

Plants often suffer from hypoxic stress due to flooding caused by extreme weather. Hypoxia usually leads to restricted oxygen supply and alters metabolic patterns from aerobic to anaerobic. Cucumber roots are fragile and highly sensitive to damage from hypoxic stress. The purpose of this study was to investigate the regulatory mechanism of exogenous calcium alleviating hypoxic stress in cucumber through transcriptome and small RNAs analysis. Three treatments were performed in this paper, including untreated-control (CK), hypoxic stress (H), and hypoxic stress + exogenous calcium treatment (H + Ca). A large number of differentially expressed genes (DEGs) were identified, 1,463 DEGs between CK vs H, 3,399 DEGs between H vs H + Ca, and 5,072 DEGs between CK vs H + Ca, respectively. KEGG analysis of DEGs showed that exogenous calcium could activate hormone signaling pathways (ethylene, ABA, IAA and cytokinin), transcription factors (MYB, MYB-related, bHLH, bZIP, and WRKY), calcium signaling and glycolysis pathway to mitigating hypoxic stress in cucumber seedlings. Additionally, miRNA and their target genes were detected and predicted between treatments. The target genes of these miRNAs revealed that auxin, cellulose synthase, and mitochondrial ribosomal related genes (Csa2G315390, Csa6G141390, Csa4G053280, and Csa6G310480) probably play in the improvement of the hypoxic tolerance of cucumber seedlings through exogenous calcium application. In short, our data adds new information to the mechanism of exogenous calcium mitigation of hypoxic stress injury in cucumber seedlings at transcriptional and post-transcriptional levels.

摘要

由于极端天气引发的洪水,植物常常遭受缺氧胁迫。缺氧通常会导致氧气供应受限,并使代谢模式从有氧转变为无氧。黄瓜根系脆弱,对缺氧胁迫造成的损害高度敏感。本研究的目的是通过转录组和小RNA分析,探究外源钙缓解黄瓜缺氧胁迫的调控机制。本文进行了三种处理,包括未处理对照(CK)、缺氧胁迫(H)和缺氧胁迫+外源钙处理(H+Ca)。分别鉴定出大量差异表达基因(DEG),CK与H之间有1463个DEG,H与H+Ca之间有3399个DEG,CK与H+Ca之间有5072个DEG。对DEG的KEGG分析表明,外源钙可激活激素信号通路(乙烯、脱落酸、生长素和细胞分裂素)、转录因子(MYB、MYB相关、bHLH、bZIP和WRKY)、钙信号和糖酵解途径,以减轻黄瓜幼苗的缺氧胁迫。此外,还检测并预测了各处理之间的miRNA及其靶基因。这些miRNA的靶基因表明,生长素、纤维素合酶和线粒体核糖体相关基因(Csa2G315390、Csa6G141390、Csa4G053280和Csa6G310480)可能通过施用外源钙在提高黄瓜幼苗的耐缺氧性中发挥作用。简而言之,我们的数据在转录和转录后水平上为外源钙减轻黄瓜幼苗缺氧胁迫损伤的机制增添了新信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3d39/9846352/140347402098/fpls-13-994268-g001.jpg

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