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小麦(Triticum aestivum L.)中CBL和CIPK基因家族的鉴定与综合分析。

Identification and comprehensive analyses of the CBL and CIPK gene families in wheat (Triticum aestivum L.).

作者信息

Sun Tao, Wang Yan, Wang Meng, Li Tingting, Zhou Yi, Wang Xiatian, Wei Shuya, He Guangyuan, Yang Guangxiao

机构信息

The Genetic Engineering International Cooperation Base of Chinese Ministry of Science and Technology, The Key Laboratory of Molecular Biophysics of Chinese Ministry of Education, College of Life Science and Technology, Huazhong University of Science & Technology, Wuhan, 430074, China.

出版信息

BMC Plant Biol. 2015 Nov 4;15:269. doi: 10.1186/s12870-015-0657-4.

Abstract

BACKGROUND

Calcineurin B-like (CBL) proteins belong to a unique group of calcium sensors in plant that decode the Ca(2+) signature by interacting with CBL-interacting protein kinases (CIPKs). Although CBL-CIPK complexes have been shown to play important roles in the responses to various stresses in plants, little is known about their functions in wheat.

RESULTS

A total of seven TaCBL and 20 TaCIPK genes were amplified from bread wheat, Triticum aestivum cv. Chinese Spring. Reverse-transcriptase-polymerase chain reaction (RT-PCR) and in silico expression analyses showed that TaCBL and TaCIPK genes were expressed at different levels in different tissues, or maintained at nearly constant expression levels during the whole life cycle of the wheat plant. Some TaCBL and TaCIPK genes showed up- or down-regulated expressions during seed germination. Preferential interactions between TaCBLs and TaCIPKs were observed in yeast two-hybrid and bimolecular fluorescence complementation experiments. Analyses of a deletion series of TaCIPK proteins with amino acid variations at the C-terminus provided new insights into the specificity of the interactions between TaCIPKs and TaCBLs, and indicated that the TaCBL-TaCIPK signaling pathway is very complex in wheat because of its hexaploid genome. The expressions of many TaCBLs and TaCIPKs were responsive to abiotic stresses (salt, cold, and simulated drought) and abscisic acid treatment. Transgenic Arabidopsis plants overexpressing TaCIPK24 exhibited improved salt tolerance through increased Na(+) efflux and an enhanced reactive oxygen species scavenging capacity.

CONCLUSIONS

These results contribute to our understanding of the functions of CBL-CIPK complexes and provide the basis for selecting appropriate genes for in-depth functional studies of CBL-CIPK in wheat.

摘要

背景

类钙调磷酸酶B蛋白(CBL)属于植物中一类独特的钙传感器,通过与CBL互作蛋白激酶(CIPK)相互作用来解码Ca(2+)信号。尽管CBL-CIPK复合物已被证明在植物对各种胁迫的响应中发挥重要作用,但关于它们在小麦中的功能却知之甚少。

结果

从普通小麦品种中国春中扩增出了总共7个TaCBL基因和20个TaCIPK基因。逆转录聚合酶链反应(RT-PCR)和电子表达分析表明,TaCBL和TaCIPK基因在不同组织中表达水平不同,或在小麦植株的整个生命周期中保持近乎恒定的表达水平。一些TaCBL和TaCIPK基因在种子萌发过程中表现出上调或下调表达。在酵母双杂交和双分子荧光互补实验中观察到了TaCBL和TaCIPK之间的优先相互作用。对C末端存在氨基酸变异的TaCIPK蛋白缺失系列的分析为TaCIPK与TaCBL之间相互作用的特异性提供了新的见解,并表明由于小麦的六倍体基因组,TaCBL-TaCIPK信号通路在小麦中非常复杂。许多TaCBL和TaCIPK的表达对非生物胁迫(盐、冷和模拟干旱)及脱落酸处理有响应。过表达TaCIPK24的转基因拟南芥植株通过增加Na(+)外流和增强活性氧清除能力表现出耐盐性提高。

结论

这些结果有助于我们理解CBL-CIPK复合物的功能,并为选择合适的基因深入研究小麦中CBL-CIPK的功能提供了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3967/4634908/01f9a9a29215/12870_2015_657_Fig1_HTML.jpg

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