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Cloning of a MADS Box Gene(GhMADS3)from Cotton and Analysis of Its Homeotic Role in Transgenic Tobacco 被引量:8
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作者 郭余龙 祝钦泷 +1 位作者 郑尚永 李名扬 《Journal of Genetics and Genomics》 SCIE CAS CSCD 北大核心 2007年第6期527-535,共9页
A MADS box gene (GhMADS3) was cloned from cotton (Gossypium hirsutum L.) based on EST sequences. The predicted protein sequence of GhMADS3 showed 85%, 73%, and 62% identity with Theobroma cacao TcAG, Antirrhinum m... A MADS box gene (GhMADS3) was cloned from cotton (Gossypium hirsutum L.) based on EST sequences. The predicted protein sequence of GhMADS3 showed 85%, 73%, and 62% identity with Theobroma cacao TcAG, Antirrhinum majus FAR, and Arabidopsis thaliana AG, respectively, and was grouped with AG homologues when the full length sequences excluding N-extensions were compared. GhMADS3 expressed in the wild type cotton flower primarily in stamens and carpels, which was comparable to AG in Arabidopsis. However, it was not expressed in floral buds of a homeotic cotton variant chvl. Ectopic expression of GhMADS3 in tobacco (Nicotiana tabacum L.) resulted in flowers with sepal-to-carpel and petal-to-stamen transformation. The carpelloid first whorl organs, with stigmatic tissue on their upper edges, had a white appearance when compared with the dark green color of the wild type sepals. At times, long filaments were observed at the fusion site of the first carpelloid oranges. The second whorl organs in staminoid were usually smaller than the wild type and the color was changed from pink to white. These results suggest that GhMADS3 has a homeotic role in flower development. 展开更多
关键词 MADS-BOX AG subfamily homeotic role COTTON flower development
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降低茶叶咖啡碱的研究进展 被引量:17
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作者 姚永宏 柴友荣 +7 位作者 李中林 吴全 侯渝嘉 徐泽 蔡伦红 周正科 邬秀红 邓敏 《西南农业学报》 CSCD 北大核心 2009年第6期1799-1802,共4页
咖啡碱(1,3,7-三甲基黄嘌呤)是茶叶中嘌呤碱的主体成份,摄入过量的咖啡碱会对人体产生短期的负面作用,也限制了以保健和治疗为目的茶和茶制品的摄入剂量。近20年来,国内外系统研究了茶叶脱除咖啡碱技术,开发了溶剂萃取法、热水脱除法、... 咖啡碱(1,3,7-三甲基黄嘌呤)是茶叶中嘌呤碱的主体成份,摄入过量的咖啡碱会对人体产生短期的负面作用,也限制了以保健和治疗为目的茶和茶制品的摄入剂量。近20年来,国内外系统研究了茶叶脱除咖啡碱技术,开发了溶剂萃取法、热水脱除法、超临界CO2萃取法等理化方法,并开始培育低咖啡碱茶树品种等,尤其是通过基因工程创造低咖啡碱茶叶新材料的分子育种呼之欲出。本文是对该领域的一个综述和展望。 展开更多
关键词 咖啡碱 降低
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