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鹰嘴豆CIPK25的表达增强了转基因烟草的根系生长以及对脱水和盐胁迫的耐受性。

Expression of chickpea CIPK25 enhances root growth and tolerance to dehydration and salt stress in transgenic tobacco.

作者信息

Meena Mukesh K, Ghawana Sanjay, Dwivedi Vikas, Roy Ansuman, Chattopadhyay Debasis

机构信息

National Institute of Plant Genome Research New Delhi, India.

出版信息

Front Plant Sci. 2015 Sep 8;6:683. doi: 10.3389/fpls.2015.00683. eCollection 2015.

Abstract

Calcium signaling plays an important role in adaptation and developmental processes in plants and animals. A class of calcium sensors, known as Calcineurin B-like (CBL) proteins sense specific temporal changes in cytosolic Ca(2+) concentration and regulate activities of a group of ser/thr protein kinases called CBL-interacting protein kinases (CIPKs). Although a number of CIPKs have been shown to play crucial roles in the regulation of stress signaling, no study on the function of CIPK25 or its orthologs has been reported so far. In the present study, an ortholog of Arabidopsis CIPK25 was cloned from chickpea (Cicer arietinum). CaCIPK25 gene expression in chickpea increased upon salt, dehydration, and different hormonal treatments. CaCIPK25 gene showed differential tissue-specific expression. 5'-upstream activation sequence (5'-UAS) of the gene and its different truncated versions were fused to a reporter gene and studied in Arabidopsis to identify promoter regions directing its tissue-specific expression. Replacement of a conserved threonine residue with an aspartic acid at its catalytic site increased the kinase activity of CaCIPK25 by 2.5-fold. Transgenic tobacco plants overexpressing full-length and the high active versions of CaCIPK25 displayed a differential germination period and longer root length in comparison to the control plants. Expression of CaCIPK25 and its high active form differentially increased salt and water-deficit tolerance demonstrated by improved growth and reduced leaf chlorosis suggesting that the kinase activity of CaCIPK25 was required for these functions. Expressions of the abiotic stress marker genes were enhanced in the CaCIPK25-expressing tobacco plants. Our results suggested that CaCIPK25 functions in root development and abiotic stress tolerance.

摘要

钙信号传导在植物和动物的适应及发育过程中起着重要作用。一类被称为类钙调神经磷酸酶B(CBL)蛋白的钙传感器可感知胞质Ca(2+)浓度的特定瞬时变化,并调节一组名为CBL相互作用蛋白激酶(CIPK)的丝氨酸/苏氨酸蛋白激酶的活性。尽管已证明许多CIPK在应激信号调节中起关键作用,但迄今为止尚未有关于CIPK25或其直系同源物功能的研究报道。在本研究中,从鹰嘴豆(Cicer arietinum)中克隆了拟南芥CIPK25的直系同源物。鹰嘴豆中CaCIPK25基因的表达在盐胁迫、脱水和不同激素处理后增加。CaCIPK25基因表现出不同的组织特异性表达。该基因的5'-上游激活序列(5'-UAS)及其不同的截短版本与报告基因融合,并在拟南芥中进行研究,以鉴定指导其组织特异性表达的启动子区域。在其催化位点将一个保守的苏氨酸残基替换为天冬氨酸可使CaCIPK25的激酶活性提高2.5倍。与对照植物相比,过表达全长和高活性版本CaCIPK25的转基因烟草植物表现出不同的萌发期和更长的根长。CaCIPK25及其高活性形式的表达差异增加了盐胁迫和水分亏缺耐受性,表现为生长改善和叶片黄化减少,这表明CaCIPK25的激酶活性是这些功能所必需的。在表达CaCIPK25的烟草植物中,非生物胁迫标记基因的表达增强。我们的结果表明,CaCIPK25在根系发育和非生物胁迫耐受性中发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/91bb/4561800/5545026b9d2a/fpls-06-00683-g0001.jpg

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