从已建立的天山雪莲cDNA文库中随机挑取单克隆,采用通用引物M13扩增出基因序列并测序,然后将该序列在GenBank中进行比对,根据该序列设计特异引物进行PCR,最终获得了冷调节蛋白基因siCOR的完整开放读码框(ORF);构建植物表达载体,通过农杆菌介导法获得转基因烟草,用RT-PCR对转化烟草进行鉴定,收取种子后筛选出纯合的Ts株系,并通过冷冻胁迫进行抗寒性分析。结果表明:(1)siCoR大小661bp,与禾本科植物粳稻的冷调节蛋白基因一致性最高(65.04%)。(2)与野生型植株相比,转siCOR基因烟草均叶片浓绿、无分支侧芽,生长快;在冷冻胁迫条件下,转siCOR基因的烟草叶片相对含水量、PSII相对量子产率降低幅度、相对电导率和丙二醛含量的升高幅度均低于野生型烟草植株,而且转siCOR基因烟草植株叶片出现萎蔫症状的时间较迟、程度较轻,受到的伤害也较轻。研究发现,在冷冻胁迫条件下,转siCOR基因烟草植株表现出良好的生理和生长优势,显示出了较强的抗寒特征。
Seeking monoclone in established eDNA library randomly for PCR directed with universal M13 primer and sequencing,comparing the sequence in GenBank,designing specific primer according to the se- quence,finally we obtained the whole ORF of siCOR. Then plant expression vector pBIN438-siCOR was constructed and NC89 tobacco plants were transformed via Agrobacterium tumefaciens, RT-PCR analysis indicated that siCOR had been integrated into the genome. Homozygous transgenic tobacco plants were used in cold resistance identification. The results show that: (1)The size of siCOR cDNA was 661 bp,the ideutity of amino acid sequence was about 65.04% with Oryza sativa Japonica. (2)siCOR tobacco has deep green leaves,grows faster and has no lateral bud compared with wild type;Under the cold stress, the de- crease of relative water content, reduction of relative quantum yield of PS Ⅱ , the increase of relative conduc- tivity and MDA content of siCOR tobacco are lesser than that of control tobacco evidently. Besides,trans- genic plants have slower and lighter symptom. In summary, under the cold stress, siCOR tobacco showswell growth traits and strong cold resistance characteristics.