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机构地区:[1]作物遗传改良国家重点实验室/国家植物基因研究中心(武汉),武汉430070
出 处:《华中农业大学学报》2012年第1期1-9,共9页Journal of Huazhong Agricultural University
基 金:The National Natural Science Foundation of China(30725021,30830071,and 30921091);the National Special Key Project of China on Functional Genomics of Major Plants and Animals(2006AA10A103)
摘 要:通过序列比对分析鉴定出9个GSK同源基因(命名为OsGSK1-9),它们分布在水稻的6条染色体上。聚类分析表明预测的OsGSK蛋白和其他植物中的GSK蛋白可被分为4个亚组。通过实时定量PCR进一步分析了OsGSK基因家族的基因在水稻各种组织和器官以及在多种逆境胁迫和植物激素处理条件下的表达量。结果表明:大多数OsGSK基因在水稻全生育期都有较高的表达量并且受多种激素(如脱落酸、生长素、油菜素内酯)和逆境(如干旱和盐胁迫)胁迫诱导表达,表明OsGSK基因家族在水稻发育和逆境适应过程中可能起重要作用。The glycogen synthase kinase 3 (GSK3)/SHAGGY-like kinases are serine/threonine protein kina- ses involved in a variety of biological processes. In this study, nine GSK3-1ike genes (OsGSK1-9) were identified in rice,and they are distributed on six chromosomes, and the distribution pattern is related to the chromosomal block duplication events in rice. The OsGSK proteins can be classified into four subgroups. The expression pat- terns of OsGSK genes were investigated in various tissues and organs of rice and in the seedlings treated with phytohormones and abiotic stresses. The results suggest that most of OsGSK genes have high expression level in the whole life cycle, and they are responsive not only to different phytohormones (such as abscisic acid, auxin, and brassinosteroid) but also to drought and salt stresses,implying that OsGSK genes may have important roles in de- velopment and stress responses in rice.
分 类 号:S511.503.53[农业科学—作物学]
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