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首页> 外文期刊>Nature biotechnology >Spatiotemporal manipulation of auxin biosynthesis in cotton ovule epidermal cells enhances fiber yield and quality.Comments Comment in: Nat Biotechnol. 2011 May;29(5):407-9; PMID: 21552241
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Spatiotemporal manipulation of auxin biosynthesis in cotton ovule epidermal cells enhances fiber yield and quality.Comments Comment in: Nat Biotechnol. 2011 May;29(5):407-9; PMID: 21552241

机译:时空调控棉花胚珠表皮细胞中生长素的生物合成可提高纤维产量和品质。评论评论:Nat Biotechnol。 2011年5月; 29(5):407-9; PMID:21552241

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摘要

The capacity of conventional breeding to simultaneously improve the yield and quality of cotton fiber is limited. The accumulation of the plant hormone indole-3-acetic acid (IAA) in cotton fiber initials prompted us to investigate the effects of genetically engineering increased IAA levels in the ovule epidermis. Targeted expression of the IAA biosynthetic gene iaaM, driven by the promoter of the petunia MADS box gene Floral Binding protein 7 (FBP7), increased IAA levels in the epidermis of cotton ovules at the fiber initiation stage. This substantially increased the number of lint fibers, an effect that was confirmed in a 4-year field trial. The lint percentage of the transgenic cotton, an important component of fiber yield, was consistently higher in our transgenic plants than in nontransgenic controls, resulting in a >15% increase in lint yield. Fiber fineness was also notably improved.
机译:传统育种同时提高棉纤维产量和质量的能力受到限制。棉纤维首字母中植物激素吲哚-3-乙酸(IAA)的积累促使我们研究了基因工程增加胚珠表皮中IAA水平的影响。在矮牵牛MADS盒基因花键结合蛋白7(FBP7)的启动子的驱动下,IAA生物合成基因iaaM的靶向表达在纤维萌发阶段增加了棉花胚珠表皮中的IAA水平。这大大增加了皮棉纤维的数量,这种效果在4年的现场试验中得到了证实。转基因棉花的皮棉百分比是纤维产量的重要组成部分,在我们的转基因植物中,皮棉百分比始终高于非转基因对照,导致皮棉产量增加> 15%。纤维细度也得到显着改善。

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