Cai Hanyang, Cheng Junbin, Yan Yan, Xiao Zhuoli, Li Jiazhi, Mou Shaoliang, Qiu Ailian, Lai Yan, Guan Deyi, He Shuilin
National Education Ministry, Key Laboratory of Plant Genetic Improvement and Comprehensive Utilization, Fujian Agriculture and Forestry University Fuzhou, China ; College of Life Science, Fujian Agriculture and Forestry University Fuzhou, China.
National Education Ministry, Key Laboratory of Plant Genetic Improvement and Comprehensive Utilization, Fujian Agriculture and Forestry University Fuzhou, China ; College of Crop Science, Fujian Agriculture and Forestry University Fuzhou, China.
Front Plant Sci. 2015 Sep 15;6:737. doi: 10.3389/fpls.2015.00737. eCollection 2015.
As Ca2+ sensors and effectors, calcium-dependent protein kinases (CDPKs) play important roles in plant growth, development, and response to environmental cues. However, no CDPKs have been characterized in Capsicum annuum thus far. Herein, a genome wide comprehensive analysis of genes encoding CDPKs and CDPK-related protein kinases (CRKs) was performed in pepper, a total of 31 CDPK genes and five closely related kinase genes were identified, which were phylogenetically divided into four distinct subfamilies and unevenly distributed across nine chromosomes. Conserved sequence and exon-intron structures were found to be shared by pepper CDPKs within the same subfamily, and the expansion of the CDPK family in pepper was found to be due to segmental duplication events. Five CDPKs in the C. annuum variety CM334 were found to be mutated in the Chiltepin variety, and one CDPK present in CM334 was lost in Chiltepin. The majority of CDPK and CRK genes were expressed in different pepper tissues and developmental stages, and 10, 12, and 8 CDPK genes were transcriptionally modified by salt, heat, and Ralstonia solanacearum stresses, respectively. Furthermore, these genes were found to respond specifically to one stress as well as respond synergistically to two stresses or three stresses, suggesting that these CDPK genes might be involved in the specific or synergistic response of pepper to salt, heat, and R. solanacearum. Our results lay the foundation for future functional characterization of pepper CDPK and its closely related gene families.
作为钙离子传感器和效应器,钙依赖性蛋白激酶(CDPKs)在植物生长、发育以及对环境信号的响应中发挥着重要作用。然而,迄今为止在辣椒中尚未鉴定出CDPKs。在此,对辣椒中编码CDPKs和CDPK相关蛋白激酶(CRKs)的基因进行了全基因组综合分析,共鉴定出31个CDPK基因和5个密切相关的激酶基因,它们在系统发育上分为四个不同的亚家族,并不均匀地分布在九条染色体上。发现同一亚家族内的辣椒CDPKs具有保守序列和外显子 - 内含子结构,并且辣椒中CDPK家族的扩张是由于片段重复事件。发现辣椒品种CM334中的5个CDPKs在奇尔蒂皮因品种中发生了突变,并且CM334中存在的一个CDPK在奇尔蒂皮因中缺失。大多数CDPK和CRK基因在不同的辣椒组织和发育阶段表达,并且分别有10、12和8个CDPK基因受到盐、热和青枯雷尔氏菌胁迫的转录修饰。此外,发现这些基因对一种胁迫有特异性响应,也对两种胁迫或三种胁迫有协同响应,这表明这些CDPK基因可能参与辣椒对盐、热和青枯雷尔氏菌的特异性或协同响应。我们的结果为未来辣椒CDPK及其密切相关基因家族的功能表征奠定了基础。