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大豆钾转运体基因GmKT12的克隆和信息学分析 被引量:5

Molecular Cloning and Bioinformatics Analysis of K^+Transporter Gene (GmKT12) from Soybean (Glycine max [L.] Merri)
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摘要 以钾高效和钾敏感型大豆品系为试验材料,设置低钾胁迫试验,在8个时间段取样提取RNA,利用Realtime PCR检测GmKT12基因的表达量,结果显示GmKT12基因在不同品系地上部和地下部表达水平有显著差异,其原因来自GmKT12基因的氨基酸序列和蛋白质结构的变异。从2个品系中分别克隆目的基因并对基因序列进行同源性及生物信息学分析表明,与GmKT12基因相似性在30%以上的同源基因有56个,GmKT12在进化树中的位置与Glyma18g18822最近;GmKT12编码蛋白为可溶性跨膜蛋白,具有多个磷酸化位点,该基因与信号转导有关,对大豆获取及转运钾离子可能起着关键作用。 GmKT12 predicted as a potassium transporter is of great importance in absorbing nutrients, signal transduction in plant growth. At present, there are few reports about the gene. In this paper, one low K tolerant soybean line You 06-71 and one low K intolerant line Hengchun 04-11 were used as plant materials. In order to research the expression level of GmKT12 in low potas- sium stress conditions, RNA was extracted and tested by Real-time PCR in eight periods. The results showed that there were highly significant differences between two lines due to their was diversity of amino acid sequence and protein structure. Homol- ogy and Bioinformatic analysis after cloning the target sequence from the two lines showed that comparing with GmKT12, there were 56 homologous genes with more than 30 percent similarity, GmKT12 and Glyma18g18822 were nearest in the phylogenetic tree. The protein encoded by GmKT12 was soluble transmembrane protein which contained 11-12 membrane structural domains, and possessed multiple phosphorylation sites. These indicated that the protein might take part in plant signal transduction and regulate potassium ions transportation into or out of cells. In conclusion, GmKT12 might play a pivotal role in potassium absorp- tion in soybean, on which the research is important.
出处 《作物学报》 CAS CSCD 北大核心 2013年第9期1701-1709,共9页 Acta Agronomica Sinica
基金 国家转基因生物新品种培育科技重大专项(2011ZX08004-005 2009ZX08009-133B) 国家自然科学基金项目(30871554 30900906) 中国农业科学院公益性院所科研基金(1610172011006)资助
关键词 大豆 钾转运体基因 克隆 生物信息学分析 Real—time PCR 序列测定 同源性分析 系统发育分析 Soybean (Glycine max [L.] Merri) Potassium transporter Cloning Bioinformatics analysis Real-time PCR Sequencing Homologous analysis Phylogenetic analysis
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