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整合小RNA和转录组分析揭示了miR408在豇豆耐旱反应中的关键作用。

Integrative small RNA and transcriptome analysis provides insight into key role of miR408 towards drought tolerance response in cowpea.

作者信息

Mishra Sagarika, Sahu Gyanasri, Shaw Birendra Prasad

机构信息

Abiotic Stress and Agro-Biotechnology Lab, Institute of Life Sciences, Bhubaneswar, India.

Regional Centre for Biotechnology, Faridabad, India.

出版信息

Plant Cell Rep. 2022 Jan;41(1):75-94. doi: 10.1007/s00299-021-02783-5. Epub 2021 Sep 27.

Abstract

Drought stress response studies and overexpression of vun-miR408 proved it to be essential for abiotic stress tolerance in cowpea. Small RNA and transcriptome sequencing of an elite high-yielding drought-tolerant Indian cowpea cultivar, Pusa Komal revealed a differential expression of 198 highly conserved, 21 legume-specific, 14 less-conserved, and 10 novel drought-responsive microRNAs (miRNAs) along with 3391 (up-regulated) and 3799 (down-regulated) genes, respectively, in the leaf and root libraries. Among the differentially expressed miRNAs, vun-miR408-3p, showed an up-regulation of 3.53-log-fold change under drought stress. Furthermore, laccase 12 (LAC 12) was identified as the potential target of vun-miR408-3p using 5' RNA ligase-mediated rapid amplification of cDNA ends. The stable transgenic cowpea lines overexpressing artificial vun-miR408-3p (OX-amiR408) displayed enhanced drought and salinity tolerance as compared to the wild-type plants. An average increase of 30.17% in chlorophyll, 26.57% in proline, and 27.62% in relative water content along with lesser cellular HO level was observed in the transgenic lines in comparison with the wild-type plants under drought stress. Additionally, the scanning electron microscopic study revealed a decrease in the stomatal aperture and an increase in the trichome density in the transgenic lines. The expression levels of laccase 3 and laccase 12, the potential targets of miR408, related to lipid catabolic processes showed a significant reduction in the wild-type plants under drought stress and the transgenic lines, indicating the regulation of lignin content as a plausibly essential trait related to the drought tolerance in cowpea. Taken together, this study primarily focused on identification of drought-responsive miRNAs and genes in cowpea, and functional validation of role of miR408 towards drought stress response in cowpea.

摘要

干旱胁迫响应研究以及vun-miR408的过表达证明其对豇豆的非生物胁迫耐受性至关重要。对印度一个高产耐旱豇豆优良品种Pusa Komal进行的小RNA和转录组测序显示,在叶片和根系文库中,分别有198个高度保守、21个豆科植物特异性、14个保守性较低和10个新的干旱响应微小RNA(miRNA)差异表达,同时还有3391个(上调)和3799个(下调)基因差异表达。在差异表达的miRNA中,vun-miR408-3p在干旱胁迫下上调了3.53对数倍变化。此外,利用5' RNA连接酶介导的cDNA末端快速扩增技术,确定漆酶12(LAC 12)是vun-miR408-3p的潜在靶标。与野生型植株相比,过表达人工合成vun-miR408-3p(OX-amiR408)的稳定转基因豇豆品系表现出更强的耐旱性和耐盐性。与干旱胁迫下的野生型植株相比,转基因品系的叶绿素平均增加了30.17%,脯氨酸增加了26.57%,相对含水量增加了27.62%,同时细胞内过氧化氢水平较低。此外,扫描电子显微镜研究显示转基因品系的气孔孔径减小,毛状体密度增加。与脂质分解代谢过程相关的miR408潜在靶标漆酶3和漆酶12的表达水平在干旱胁迫下的野生型植株和转基因品系中均显著降低,这表明木质素含量的调节可能是豇豆耐旱性的一个重要性状。综上所述,本研究主要聚焦于豇豆中干旱响应miRNA和基因的鉴定,以及miR408在豇豆干旱胁迫响应中作用的功能验证。

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