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GbCML45 和 GbCML50 钙传感器在提高棉花黄萎病抗性中的积极作用。

Positive roles of the Ca sensors GbCML45 and GbCML50 in improving cotton Verticillium wilt resistance.

机构信息

National Key Laboratory of Cotton Biological Breeding and Utilization, School of Life Sciences, Sanya Institute, Henan University, Kaifeng, China.

Jilin Da'an Agro-Ecosystem National Observation Research Station, Changchun Jingyuetan Remote Sensing Experiment Station, State Key Laboratory of Black Soils Conservation and Utilization, Northeast Institute of Geography and Agroecology, Chinese Academy of Sciences, Changchun, China.

出版信息

Mol Plant Pathol. 2024 Jun;25(6):e13483. doi: 10.1111/mpp.13483.

Abstract

As a universal second messenger, cytosolic calcium (Ca) functions in multifaceted intracellular processes, including growth, development and responses to biotic/abiotic stresses in plant. The plant-specific Ca sensors, calmodulin and calmodulin-like (CML) proteins, function as members of the second-messenger system to transfer Ca signal into downstream responses. However, the functions of CMLs in the responses of cotton (Gossypium spp.) after Verticillium dahliae infection, which causes the serious vascular disease Verticillium wilt, remain elusive. Here, we discovered that the expression level of GbCML45 was promoted after V. dahliae infection in roots of cotton, suggesting its potential role in Verticillium wilt resistance. We found that knockdown of GbCML45 in cotton plants decreased resistance while overexpression of GbCML45 in Arabidopsis thaliana plants enhanced resistance to V. dahliae infection. Furthermore, there was physiological interaction between GbCML45 and its close homologue GbCML50 by using yeast two-hybrid and bimolecular fluorescence assays, and both proteins enhanced cotton resistance to V. dahliae infection in a Ca-dependent way in a knockdown study. Detailed investigations indicated that several defence-related pathways, including salicylic acid, ethylene, reactive oxygen species and nitric oxide signalling pathways, as well as accumulations of lignin and callose, are responsible for GbCML45- and GbCML50-modulated V. dahliae resistance in cotton. These results collectively indicated that GbCML45 and GbCML50 act as positive regulators to improve cotton Verticillium wilt resistance, providing potential targets for exploitation of improved Verticillium wilt-tolerant cotton cultivars by genetic engineering and molecular breeding.

摘要

作为一种普遍的第二信使,细胞质钙离子(Ca)在植物的多种细胞内过程中发挥作用,包括生长、发育和对生物/非生物胁迫的反应。植物特异性钙传感器钙调蛋白和钙调素样(CML)蛋白作为第二信使系统的成员,将 Ca 信号传递到下游反应。然而,CML 在棉花(棉属)对黄萎病菌(引起严重的维管束病害黄萎病)感染的反应中的功能仍不清楚。在这里,我们发现,在棉花根中,GbCML45 的表达水平在黄萎病菌感染后被上调,这表明它在黄萎病抗性中的潜在作用。我们发现,棉花植株中 GbCML45 的敲低降低了抗性,而在拟南芥中过表达 GbCML45 增强了对黄萎病菌感染的抗性。此外,通过酵母双杂交和双分子荧光测定,发现 GbCML45 与其近同源物 GbCML50 之间存在生理相互作用,并且这两种蛋白通过 Ca 依赖的方式增强了棉花对黄萎病菌感染的抗性。详细的研究表明,几种防御相关途径,包括水杨酸、乙烯、活性氧和一氧化氮信号途径,以及木质素和胼胝质的积累,负责 GbCML45 和 GbCML50 调节的棉花对黄萎病菌的抗性。这些结果共同表明,GbCML45 和 GbCML50 作为正调节剂,提高了棉花对黄萎病的抗性,为通过遗传工程和分子育种开发改良的黄萎病耐棉花品种提供了潜在的目标。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/16d7/11146148/e2ec4cabbfc9/MPP-25-e13483-g007.jpg

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