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Stable transformation and expression of GhEXPA8 fiber expansin gene to improve fiber length and micronaire value in cotton

机译:稳定地转化和表达GhEXPA8纤维弹性蛋白基因以提高棉花的纤维长度和马克隆值

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摘要

Cotton fiber is multigenic trait controlled by number of genes. Previous studies suggest that one of these genes may be responsible for switching cotton fiber growth on and off to influence the fiber quality produced from a cotton seed. In the present study, the Gossypium hirsutum GhEXPA8 fiber expansin gene was introduced into local cotton variety NIAB 846 by using an Agrobacterium-mediated gene transformation. The neomycin phosphotransferase (NPTII) gene was used as a selection marker for screening of putative transgenic cotton plants. Integration and expression of the fiber expansin gene in cotton plants was confirmed with molecular techniques including Southern blot analyses, real-time PCR. Cellulose assay was used for measurement of cellulose contents of transgenic cotton fiber. The data collected from 3 years of field performance of the transgenic cotton plants expressing GhEXPA8 showed that significant improvement has been made in fiber lengths and micronaire values as compared to control G. hirsutum variety NIAB 846 cotton plants. Statistical techniques were also used for analysis of fiber and agronomic characteristics. The results of this study support improvement of cotton fiber through genetic modification.
机译:棉纤维是受基因数量控制的多基因性状。先前的研究表明,这些基因之一可能负责打开和关闭棉纤维的生长,从而影响棉籽产生的纤维质量。在本研究中,通过农杆菌介导的基因转化,将陆地棉GhEXPA8纤维扩张蛋白基因导入当地棉花品种NIAB 846。新霉素磷酸转移酶(NPTII)基因用作筛选推定的转基因棉花植株的选择标记。通过分子技术,包括Southern印迹分析,实时PCR,证实了棉植物中纤维扩展蛋白基因的整合和表达。纤维素测定法用于测量转基因棉纤维的纤维素含量。从表达GhEXPA8的转基因棉花植物的3年田间表现中收集的数据表明,与对照G. hirsutum变种NIAB 846棉花植物相比,纤维长度和马克隆值得到了显着改善。统计技术也用于分析纤维和农艺特性。这项研究的结果支持通过基因改造改善棉纤维。

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