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木醋杆菌纤维素合成操纵子的克隆及棉花转化
引用本文:卢迎春,魏刚,等.木醋杆菌纤维素合成操纵子的克隆及棉花转化[J].Acta Botanica Sinica,2002,44(4):441-445.
作者姓名:卢迎春  魏刚
作者单位:北京大学生命科学学院 北京100871 (卢迎春,魏刚),北京大学生命科学学院 北京100871(朱玉贤)
基金项目:国家自然科学基金杰出青年科学基金项目 ( 3972 5 0 0 2 ),国家科技部转基因植物专项资助 (J99_A_0 0 3)~~
摘    要:革兰氏阴性菌木醋杆菌 (Acetobacterxylinum (Brown)Yamada)合成一种由纤维素微纤丝组成的胞外带状物。与高等植物纤维素相比 ,它具有独特的结构和机械性能。根据从木醋杆菌ATCC 5 35 82克隆的acs纤维素合成操纵子序列设计引物 ,用PCR的方法从木醋杆菌Ay2 0 1中克隆了ayacs纤维素合成操纵子的全部 4个基因。序列比较发现 ,两者高度同源。将连上CaMV 35S启动子的acsA、acsB克隆到植物表达载体pCAMBIA 130 1上 ,acsC、acsD克隆到pCOB30 2_3中。然后通过花粉管通道法转化棉花 (Gossypiumhirsutum)胚珠 ,收获的种子在含有卡那霉素和除草剂的双抗培养基上进行筛选。PCR检测发现 934粒种子中有 5棵植株含有全部 4个基因。这是首次将编码 4个功能蛋白的细菌操纵子成功地转入棉花

关 键 词:木醋杆菌  纤维素合成操纵子  棉花转化

Cloning Whole Cellulose-Synthesizing Operon (ayacs Operon) from Acetobacter xylinum and Transforming It into Cultivated Cotton Plants
Authors:LU Ying-Chun  WEI Gang  ZHU Yu-Xian
Institution:LU Ying-Chun,WEI Gang,ZHU Yu-Xian *
Abstract:The gram-negative bacterium Acetobacter xylinum synthesizes an extracellular ribbon of cellulose microfibrils that possess unique structural and mechanical properties when compared to higher plant cellulose. All four genes in the cellulose-synthesizing operon (ayacs operon) of A. xylinum Ay201 were amplified by polymerase chain reaction (PCR) using oligonucleotide primers designed according to published acs operon sequence of A. xylinum ATCC 53582. Alignment of the two operons showed that they were highly homologous (98% similarity, 97% identity). AcsA and acsB gene were cloned in pCAMBIA 1301 vector while acsC and acsD were cloned in pCOB302-3 under the control of CaM 35S promoter. The constructs were introduced into cotton by the pollen-tube-pathway method and seeds obtained from putative transgenic plants were germinated on media containing hygromycin and phosphinothricin (PPT). Five seedlings out of 934 seeds were proved to contain all four foreign genes by PCR amplification. This is the first time that a whole operon encoding four different bacterial enzymes with various biological functions is transformed into cultivated cotton plants.
Keywords:Acetobacter xylinum  cellulose-synthesizing operon  cotton transformation
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