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Characterization of expressed sequence tags from developing fibers of Gossypium barbadense and evaluation of insertion-deletion variation in tetraploid cultivated cotton species

机译:棉棒发育纤维表达序列标签的表征及四倍体栽培棉种插入缺失变异的评价

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Background Cotton is the leading fiber crop worldwide. Gossypium barbadense is an important species of cotton because of its extra-long staple fibers with superior luster and silkiness. However, a systematic analysis and utilization of cDNA sequences from G. barbadense fiber development remains understudied. Results A total of 21,079 high quality sequences were generated from two non-normalized cDNA libraries prepared by using a mixture of G. barbadense Hai7124 fibers and ovules. After assembly processing, a set of 8,653 unigenes were obtained. Of those, 7,786 were matched to known proteins and 7,316 were assigned to functional categories. The molecular functions of these unigenes were mostly related to binding and catalytic activity, and carbohydrate, amino acid, and energy metabolisms were major contributors among the subsets of metabolism. Sequences comparison between G. barbadense and G. hirsutum revealed that 8,245 unigenes from G. barbadense were detected the similarity with those released publicly in G. hirsutum, however, the remaining 408 sequences had no hits against G. hirsutum unigenes database. Furthermore, 13,275 putative ESTs InDels loci involved in the orthologous and/or homoeologous differences between/within G. barbadense and G. hirsutum were discovered by in silico analyses, and 2,160 InDel markers were developed by ESTs with more than five insertions or deletions. By gel electrophoresis combined with sequencing verification, 71.11% candidate InDel loci were reconfirmed orthologous and/or homoeologous loci polymorphisms using G. hirsutum acc TM-1 and G. barbadense cv Hai7124. Blastx result showed among 2,160 InDel loci, 81 with significant function similarity with known genes associated with secondary wall synthesis process, indicating the important roles in fiber quality in tetraploid cultivated cotton species. Conclusion Sequence comparisons and InDel markers development will lay the groundwork for promoting the identification of genes related to superior agronomic traits, genetic differentiation and comparative genomic studies between G. hirsutum and G. barbadense.
机译:背景技术棉花是世界领先的纤维作物。棉(Gossypium barbadense)是棉花的重要品种,因为它的超长短纤维具有优异的光泽和丝滑性。但是,仍在研究系统的分析和利用巴巴德氏酵母纤维发育的cDNA序列。结果从两个非标准化的cDNA文库中共生成了21,079个高质量序列,这些文库是使用巴巴德氏酵母Hai7124纤维和胚珠的混合物制备的。组装处理后,获得了一组8,653个单基因。其中,7,786个与已知蛋白质匹配,而7,316个与功能类别匹配。这些单基因的分子功能主要与结合和催化活性有关,碳水化合物,氨基酸和能量代谢是新陈代谢子集的主要贡献者。 G. barbadense和G. hirsutum之间的序列比较表明,检测到来自Barbadense的8,245个单基因与在G. hirsutum中公开发布的单基因相似,但是,其余408个序列对G. hirsutum unigenes数据库没有命中。此外,通过计算机分析,发现了13,275个推定的ESTs InDel基因座,它们参与了巴巴德氏菌和陆地棉之间/内部的直系同源和/或同源差异,并且ESTs开发了2,160个InDel标记,插入或缺失超过五个。通过凝胶电泳与测序验证相结合,使用hirsutum acc TM-1和Barbadense G. Hai7124再次确认了71.11%候选InDel基因座的直系和/或同源基因多态性。 Blastx结果显示,在2,160个InDel基因座中,有81个与与次生壁合成过程相关的已知基因具有显着的功能相似性,表明在四倍体栽培棉种中纤维质量的重要作用。结论序列比较和InDel标记的开发将为促进鉴定与G. hirsutum和G. barbadense之间的优良农艺性状,遗传分化和比较基因组研究相关的基因奠定基础。

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