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涉及玉米郑单958干旱响应的转录组、小RNA组和降解组的综合分析

Integrated analysis of transcriptome, sRNAome, and degradome involved in the drought-response of maize Zhengdan958.

作者信息

Yang Shuqiong, Liu Jiafei, Cao Lingling, Chen Jibao, Duan Pengfei

机构信息

Henan Provincial Key Laboratory of Ecological Security for Water Source Region of Mid-line of South-to-North Diversion Project, Nanyang Normal University, Nanyang, 473061, China.

出版信息

Open Life Sci. 2025 Jan 27;20(1):20221044. doi: 10.1515/biol-2022-1044. eCollection 2025.

Abstract

Drought is a major abiotic stress in restricting the growth, development, and yield of maize. As a significant epigenetic regulator, small RNA also functions in connecting the transcriptional and post-transcriptional regulatory network. Further to help comprehending the molecular mechanisms underlying drought adaptability and tolerance of maize, an integrated multi-omics analysis of transcriptome, sRNAome, and degradome was performed on the seedling roots of an elite hybrid Zhengdan958 under drought stress. In this study, 2,911 genes, 32 conserved miRNAs, and 12 novel miRNAs showed a significantly differential expression under drought stress. Moreover, 6,340 target genes of 445 miRNAs were validated using degradome sequencing, forming 281 miRNA-mRNA pairs in control (CK) and drought-stressed (DS) library. These target genes were mainly involved in the plant hormone signal transduction and phenylpropanoid biosynthesis pathways. The integrated multi-omics analysis revealed that five DEmiRNA-mRNA pairs displayed negatively correlated expression patterns, which were also verified by qRT-PCR. Tissue-specific expression profile and regulatory network analysis revealed that miR528a/b-, miR408a/b-, and miR164e- might be essential in root-specific drought stress response of maize Zhengdan958 seedlings. These worthwhile will promote the functional characterization of miRNA-mRNA modules response to drought stress, and potentially contribute to drought-resistance breeding of maize.

摘要

干旱是限制玉米生长、发育和产量的主要非生物胁迫。作为一种重要的表观遗传调控因子,小RNA在连接转录和转录后调控网络中也发挥作用。为了进一步帮助理解玉米干旱适应性和耐受性的分子机制,对优良杂交种郑单958幼苗根系在干旱胁迫下进行了转录组、小RNA组和降解组的综合多组学分析。在本研究中,2911个基因、32个保守miRNA和12个新miRNA在干旱胁迫下表现出显著差异表达。此外,利用降解组测序验证了445个miRNA的6340个靶基因,在对照(CK)和干旱胁迫(DS)文库中形成了281个miRNA-mRNA对。这些靶基因主要参与植物激素信号转导和苯丙烷生物合成途径。综合多组学分析表明,5对DEmiRNA-mRNA对呈现负相关表达模式,qRT-PCR也验证了这一点。组织特异性表达谱和调控网络分析表明,miR528a/b-、miR408a/b-和miR164e-可能在郑单958幼苗根系特异性干旱胁迫响应中起关键作用。这些研究成果将促进miRNA-mRNA模块对干旱胁迫响应的功能表征,并可能有助于玉米的抗旱育种。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a442/11773455/b901b0134847/j_biol-2022-1044-fig001.jpg

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