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一种CCCH型锌指蛋白的过表达通过调控胁迫相关基因提高水稻的耐旱性。

Overexpression of , a CCCH-Zinc Finger, Improves Drought Tolerance in Rice by Regulating Stress-Related Genes.

作者信息

Seong So Yoon, Shim Jae Sung, Bang Seung Woon, Kim Ju-Kon

机构信息

Crop Biotechnology Institute, GreenBio Science and Technology, Seoul National University, Pyeongchang 25354, Korea.

Present address: School of Biological Sciences and Technology, Chonnam National University, Gwangju 61186, Korea.

出版信息

Plants (Basel). 2020 Oct 1;9(10):1298. doi: 10.3390/plants9101298.

Abstract

CCCH zinc finger proteins are members of the zinc finger protein family, and are known to participate in the regulation of development and stress responses via the posttranscriptional regulation of messenger RNA in animals and yeast. However, the molecular mechanism of CCCHZF-mediated drought tolerance is not well understood. We analyzed the functions of , a member of the rice CCCHZF family. is predominantly expressed in seeds, and its expression levels rapidly declined during seed imbibition. The expression of was induced by drought, high salinity and abscisic acid (ABA). Subcellular localization analysis revealed that OsC3H10 localized not only in the nucleus but also to the processing bodies and stress granules upon stress treatment. Root-specific overexpression of was insufficient to induce drought tolerance, while the overexpression of throughout the entire plant enhanced the drought tolerance of rice plants. Transcriptome analysis revealed that overexpression elevated the expression levels of genes involved in stress responses, including LATE EMBRYOGENESIS ABUNDANT PROTEINs (LEAs), PATHOGENESIS RELATED GENEs (PRs) and GERMIN-LIKE PROTEINs (GLPs). Our results demonstrated that is involved in the regulation of the drought tolerance pathway by modulating the expression of stress-related genes.

摘要

CCCH锌指蛋白是锌指蛋白家族的成员,已知其通过对动物和酵母中信使核糖核酸的转录后调控参与发育和应激反应的调节。然而,CCCH锌指蛋白介导的耐旱分子机制尚不清楚。我们分析了水稻CCCH锌指蛋白家族成员之一的功能。主要在种子中表达,其表达水平在种子吸胀过程中迅速下降。的表达受干旱、高盐度和脱落酸(ABA)诱导。亚细胞定位分析表明,胁迫处理后,OsC3H10不仅定位于细胞核,还定位于加工体和应激颗粒。在根中特异性过表达不足以诱导耐旱性,而在整个植株中过表达则增强了水稻植株的耐旱性。转录组分析表明,过表达提高了参与应激反应的基因的表达水平,包括胚胎后期丰富蛋白(LEAs)、病程相关基因(PRs)和类萌发蛋白(GLPs)。我们的结果表明,通过调节应激相关基因的表达参与耐旱途径的调控。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0195/7599559/a7198cc830d2/plants-09-01298-g001.jpg

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