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首页> 外文期刊>Biotechnology Reports >Evaluation of two cotton varieties CRSP1 and CRSP2 for genetic transformation efficiency, expression of transgenes Cry1Ac+Cry2A, GT gene and insect mortality
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Evaluation of two cotton varieties CRSP1 and CRSP2 for genetic transformation efficiency, expression of transgenes Cry1Ac+Cry2A, GT gene and insect mortality

机译:评价两个棉花品种CRSP1和CRSP2的遗传转化效率,Cry1Ac + Cry2A转基因表达,GT基因和昆虫死亡率

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Expression of the transgene with a desirable character in crop plant is the ultimate goal of transgenic research. Transformation of two Bt genes namely Cry1Ac and Cry2A cloned as separate cassette under 35S promoter in pKHG4 plant expression vector was done by using shoot apex cut method of Agrobacterium. Molecular confirmation of putative transgenic cotton plants for Cry1Ac, Cry2A and GT gene was done through PCR and ELISA. Transformation efficiency of CRSP-1 and CRSP-2 was calculated to be 1.2 and 0.8% for Cry1Ac while 0.9 and 0.6% for Cry2A and 1.5 and 0.7% for GTG respectively. CRSP-1 was found to adopt natural environment (acclimatized) earlier than CRSP-2 when exposed to sunlight for one month. Expression of Cry1Ac, Cry2A and GTG was found to be 1.2, 1 and 1.3ng/@ml respectively for CRSP-1 as compared to CRSP-2 where expression was recorded to be 0.9, 0.5 and 0.9ng/@ml respectively. FISH analysis of the transgenic CRSP-1 and CRSP-2 demonstrated the presence of one and two copy numbers respectively. Similarly, the response of CRSP-1 against Glyphosate @1900ml/acre was far better with almost negligible necrotic spot and efficient growth after spray as compared to CRSP-2 where some plants were found to have necrosis and negative control where the complete decay of plant was observed after seven days of spray assay. Similarly, almost 100% mortality of 2nd instar larvae of Heliothis armigera was recorded after three days in CRSP-1 as compared CRSP-2 where insect mortality was found to be less than 90%. Quantitatively speaking non transgenic plants were found with 23-90% leaf damage by insect, while CRSP-1 was with less than 5% and CRSP-2 with 17%. Taken together CRSP1 was found to have better insect control and weedicide resistance along with its natural ability of genetic modification and can be employed by the valuable farmers for better insect control and simultaneously for better production.
机译:在作物中表达具有理想特性的转基因是转基因研究的最终目标。利用农杆菌芽尖切割法,在pKHG4植物表达载体中在35S启动子下克隆为单独的盒的两个Bt基因Cry1Ac和Cry2A的转化。通过PCR和ELISA对推定的转基因棉花植株进行Cry1Ac,Cry2A和GT基因的分子鉴定。对于Cry1Ac,CRSP-1和CRSP-2的转化效率经计算分别为1.2%和0.8%,而对于Cry2A,CRSP-1和CRSP-2的转化效率分别为0.9%和0.6%,对于GTG分别为1.5%和0.7%。当暴露于阳光下一个月时,发现CRSP-1比CRSP-2早采用自然环境(已适应)。发现CRSP-1的Cry1Ac,Cry2A和GTG的表达分别为1.2、1和1.3ng / ml,而CRSP-2的表达分别为0.9、0.5和0.9ng / ml。对转基因CRSP-1和CRSP-2的FISH分析表明分别存在一个和两个拷贝数。同样,CRSP-1对草甘膦@ 1900ml /英亩的反应要好得多,几乎没有坏死斑,喷洒后有效生长,而CRSP-2与某些植物已出现坏死和阴性对照的植物完全腐烂的情况相比,喷雾试验7天后观察到。同样,在CRSP-1中三天后,棉铃虫第二龄幼虫的死亡率几乎达到100%,而在昆虫死亡率低于90%的CRSP-2中记录。从数量上说,发现非转基因植物被昆虫的叶片损害率为23-90%,而CRSP-1的损害少于5%,CRSP-2的损害为17%。综上所述,发现CRSP1具有更好的昆虫控制和除草剂抗性以及其自然的遗传修饰能力,可被有价值的农民用来更好地控制昆虫并同时提高产量。

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