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Cotton Plants Transformed with the Activated Chimeric Cry1Ac and API-B Genes 被引量:12
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作者 郭洪年 吴家和 +6 位作者 陈晓英 罗晓丽 卢睿 石跃进 秦红敏 肖娟丽 田颖川 《Acta Botanica Sinica》 CSCD 2003年第1期108-113,共6页
A chimeric gene, Bt29K, composed of coding sequences of activated Cry1Ac insecticidal protein and an endoplasm reticulum-retarding signal peptide, was synthesized. A plant expression vector containing two expression c... A chimeric gene, Bt29K, composed of coding sequences of activated Cry1Ac insecticidal protein and an endoplasm reticulum-retarding signal peptide, was synthesized. A plant expression vector containing two expression cassettes for the Bt29K and API-B genes was constructed. These two insect-resistant genes were transferred into two cotton ( Gossypium hirsutum L.) varieties ( or lines) via Agrobacterium-mediated transformation and nine homozygous transgenic cotton lines showing a mortality of 90.0% - 99.7% to cotton ballworm (Heliothis armigera) larvae and good agronomic traits were selected through six generations. Molecular biology analysis revealed that one or two copies of the insecticidal protein genes were integrated into the transgenic cotton genome and activated Cry1Ac and API-B protein expression was at a level of 0.17% and 0.09% of the total soluble protein in the transgenic cotton leaves, respectively. Comparison of the insect-resistance of the homozygous lines expressing the activated chimeric Cry1Ac and API-B with that expressing Cry1Ac only revealed that the insect-resistance of the former is apparently higher than the latter. These results also indicate that the strategy to construct a plant expression vector expressing two different insect-resistant genes reported here is reasonable. 展开更多
关键词 synthetic chimeric Cry1Ac gene arrowhead proteinase inhibitor gene insect-resistant transgenic cotton plants
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Obtaining High Pest_resistant Transgenic Upland Cotton Cultivars Carrying cry1Ac3 Gene Driven by Chimeric OM Promoter 被引量:5
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作者 陈宛新 肖桂芳 朱祯 《Acta Botanica Sinica》 CSCD 2002年第8期963-970,共8页
Hypocotyl segments from aseptic seedlings of two important cultivars of upland cotton ( Gossypium hirsutum L.) in Northwest China, 'Xinluzao_1', 'Jinmian_7', 'Jinmian_12' and 'Jihe_321&#... Hypocotyl segments from aseptic seedlings of two important cultivars of upland cotton ( Gossypium hirsutum L.) in Northwest China, 'Xinluzao_1', 'Jinmian_7', 'Jinmian_12' and 'Jihe_321' were transformed respectively by two efficient plant expression plasmids pBinMoBc and pBinoBc via Agrobacterium tumefaciens . In pBinMoBc, cry 1Ac3 gene, which encodes the Bt toxin, is under the control of chimeric OM promoter. In pBinoBc, it is under control of CaMV 35S promoter. After co_cultivation with Agrobacterium tumefimpfaciens LBA4404 (containing pBinMoBc or pBinoBc), kanamycin_resistant selection, somatic embryos were induced and regenerated plants were obtained. Then the regenerated plantlets were grafted to untransformed stocks in greenhouse to produce descendants. The integration of cry 1Ac3 gene and its expression in T 2 generation of transgenic cotton plants were confirmed by Southern hybridization and Western blotting. The analyses of insect bioassay indicated that the transgenic plants of both constructions have significant resistance to the larvae of cotton bollworm ( Heliothis armigera ) and that cry 1Ac3 gene driven by chimeric OM promoter could endue T 2 generation cotton with high pest_resistant ability, implicating that it has a profound application in genetic engineering to breed new pest_resistant cotton varieties. 展开更多
关键词 upland cotton insect_resistant cotton transgenic plant Agrobacterium tumefaciens cry 1Ac3 gene chimeric promoter
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无花果ACS1基因RNAi植物表达载体构建 被引量:2
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作者 唐霞 张帅 +1 位作者 马俊莲 张子德 《河北农业大学学报》 CAS CSCD 北大核心 2013年第4期62-65,共4页
通过构建无花果ACS1基因的RNA干扰植物表达载体,为研究ACS基因的功能及采用生物技术方法培育无花果耐贮新品种奠定基础。本试验根据已克隆的无花果ACS1基因序列及植物表达载体pBI221、pBI121的酶切位点,设计2对带相应酶位点的特异性引物... 通过构建无花果ACS1基因的RNA干扰植物表达载体,为研究ACS基因的功能及采用生物技术方法培育无花果耐贮新品种奠定基础。本试验根据已克隆的无花果ACS1基因序列及植物表达载体pBI221、pBI121的酶切位点,设计2对带相应酶位点的特异性引物,以测序质粒为模板,进行PCR扩增,获得正、反向扩增片段,分别正、反向插入到pBI221载体中的CaMV35S启动子和gusA基因之间,构建成无花果ACS1基因的RNAi中间表达载体。再将中间载体中的正、反向片段和gusA基因以双酶切方式连接到表达载体pBI121上,构建成pBI121-RNAi-ACS1植物表达载体。通过各种限制性内切酶的酶切鉴定,成功构建了无花果ACS1基因的RNA干扰植物表达载体。 展开更多
关键词 无花果 acs1基因 植物表达
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Cs-ACS1基因克隆与转化黄瓜研究 被引量:3
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作者 曲淑娟 宋波 +3 位作者 夏蓓蓓 谢玉会 苏承刚 张兴国 《西南大学学报(自然科学版)》 CAS CSCD 北大核心 2010年第4期79-82,共4页
采用PCR方法,从全雌系黄瓜基因组DNA中扩增出2333bp的基因片段,BLAST分析结果表明:所克隆的基因序列与Cs-ACS1仅有1个碱基的差异,与Cs-ACS1G的核苷酸序列同源性为98%,而推导氨基酸完全一致;结果表明所克隆的基因为Cs-ACS1基因.构建了该... 采用PCR方法,从全雌系黄瓜基因组DNA中扩增出2333bp的基因片段,BLAST分析结果表明:所克隆的基因序列与Cs-ACS1仅有1个碱基的差异,与Cs-ACS1G的核苷酸序列同源性为98%,而推导氨基酸完全一致;结果表明所克隆的基因为Cs-ACS1基因.构建了该基因的正义表达载体,并导入黄瓜,获得2株转基因植株. 展开更多
关键词 Cs-acs1基因 植物基因表达载体 转基因黄瓜
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