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利用DNA shuffling技术鉴定草甘膦N-乙酰转移酶抗性相关位点
引用本文:金丹,陈明,马瑞强,杨志荣,陈建.利用DNA shuffling技术鉴定草甘膦N-乙酰转移酶抗性相关位点[J].中国农业科技导报,2007,9(5):110-114.
作者姓名:金丹  陈明  马瑞强  杨志荣  陈建
作者单位:[1]四川大学生命科学学院,教育部生物资源与环境重点实验室,成都610064 [2]西南大学生物技术中心,重庆400716 [3]中国农业科学院生物技术研究所,北京100081 [4]中国农业大学生物学院,北京100094 [5]第三军医大学高原军事医学系病理生理教研室,重庆400038
摘    要:为研究高抗草甘膦N-乙酰转移酶(glyphosateN-acetyhransferase,GAT)的草甘膦抗性相关位点,以高抗草甘膦的gatl基因和不具草甘膦抗性的gat2基因为出发基因,通过一轮双基因DNAshuffling,获得了抗性较野生型gatl下降的突变体14个:10个单位点突变,3个双位点突变,1个3位点突变。其中,MTGAT3(H41Q)、MTGAT5($52P)、MTGATT6(153M)、MTGAT7(F56L)、MTGAT8(R82G)、MTGAT11(119T/1722L)和MTGAT14(Y70H/L98P/K119E)7个突变体的草甘膦抗性几乎丧失。本工作为深入研究GAT1蛋白分子结构与功能之间的关系奠定了基础。

关 键 词:草甘膦  草甘膦N-乙酰转移酶  DNA  shuffling  点突变  
文章编号:1008-0864(2007)05-0110-05
收稿时间:2007-04-23
修稿时间:2007年4月23日

To Identify Sites Related to Glyphosate-tolerance in Glyphosate |N-acetyltransferase by DNA Shuffling Technology
JIN Dan,CHEN Ming,MA Rui-qiang,YANG Zhi-rong,CHEN Jian.To Identify Sites Related to Glyphosate-tolerance in Glyphosate |N-acetyltransferase by DNA Shuffling Technology[J].Journal of Agricultural Science and Technology,2007,9(5):110-114.
Authors:JIN Dan  CHEN Ming  MA Rui-qiang  YANG Zhi-rong  CHEN Jian
Abstract:To study on some sites related to glyphosate-tolerance in glyphosate N-acetyhransferase (GAT) with high glyphosate-tolerance, the high glyphosate-tolerant gatl gene and the gat2 gene nearly without glyphosate-tolerance were used to directed evolution by DNA shuffling. As a result, fourteen gatl mutants containing lower glyphosatetolerance than wild-type gatl were obtained by selection with different concentrations of glyphosate (5 mmol · L^-1 to 50 mmol · L^- 1 ). Ten of them were single site mutated, three ones were double sites mutated, while one was three sites mutated. Among them, the glyyphosate-tolerance of mutants MTGAT3 ( H41Q ), MTGAT5 ( S52P ), MTGAT6 (I53M) ,MTGAT7 (F56L) ,MTGAT8 (R82G) ,MTGAT11 (I19T/P22L) and MTGAT14(Y70H/L98P/K119E) were almost lost. This research work has laid a foundation for further studying the relationship between GAT1 protein structure andd its function.
Keywords:DNA shuffling
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