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Integration of conventional and advanced molecular tools to track footprints of heterosis in cotton

机译:常规和先进的分子工具的整合,以跟踪棉花杂种优势的占地面积

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摘要

Abstract Background Heterosis, a multigenic complex trait extrapolated as sum total of many phenotypic features, is widely utilized phenomenon in agricultural crops for about a century. It is mainly focused on establishing vigorous cultivars with the fact that its deployment in crops necessitates the perspective of genomic impressions on prior selection for metric traits. In spite of extensive investigations, the actual mysterious genetic basis of heterosis is yet to unravel. Contemporary crop breeding is aimed at enhanced crop production overcoming former achievements. Leading cotton improvement programs remained handicapped to attain significant accomplishments. Results In mentioned context, a comprehensive project was designed involving a large collection of cotton accessions including 284 lines, 5 testers along with their respective F1 hybrids derived from Line × Tester mating design were evaluated under 10 diverse environments. Heterosis, GCA and SCA were estimated from morphological and fiber quality traits by L × T analysis. For the exploration of elite marker alleles related to heterosis and to provide the material carrying such multiple alleles the mentioned three dependent variables along with trait phenotype values were executed for association study aided by microsatellites in mixed linear model based on population structure and linkage disequilibrium analysis. Highly significant 46 microsatellites were discovered in association with the fiber and yield related traits under study. It was observed that two-thirds of the highly significant associated microsatellites related to fiber quality were distributed on D sub-genome, including some with pleiotropic effect. Newly discovered 32 hQTLs related to fiber quality traits are one of prominent findings from current study. A set of 96 exclusively favorable alleles were discovered and C tester (A971Bt) posited a major contributor of these alleles primarily associated with fiber quality. Conclusions Hence, to uncover hidden facts lying within heterosis phenomenon, discovery of additional hQTLs is required to improve fibre quality. To grab prominent improvement in influenced fiber quality and yield traits, we suggest the A971 Bt cotton cultivar as fundamental element in advance breeding programs as a parent of choice.
机译:摘要背景杂种优势,多粒复杂性状推断为许多表型特征的总和,广泛利用农业农作物的现象约一个世纪。它主要专注于建立剧烈品种,使其在作物中的部署需要对基因组印象的看法,以便对公制特征的选择。尽管有广泛的调查,但杂种优势的实际神秘遗传基础尚未解开。当代作物育种旨在提高作物生产克服以前的成就。领先的棉花改善计划仍然残疾,以实现显着成就。结果在提到的背景下,涉及综合项目,涉及大量的棉花加入,包括284条线,5个测试仪以及各自的F1杂种源于10个不同的环境中评估了来自线×测试仪交配设计的各自的F1杂种。通过L×T分析从形态学和纤维质量性状估算杂种物,GCA和SCA。为了探索与杂种优势相关的精英标志物等位基因,并提供携带这种多个等位基因的材料,所提到的三种依赖性变量以及特征表型值被针对基于群体结构的混合线性模型中的微卫星在微卫星基础上进行了基础研究。在研究下,与纤维和产量相关性状相关联的显着的46微卫星。观察到,三分之二的与纤维质量相关的高显着相关的微卫星分布在D次基因组上,包括一些具有脂肪效应的含量。新发现与纤维质量特征相关的32个HQTL是目前研究的突出发现之一。发现了一套96个独立有利的等位基因,C测试仪(A971BT)占据了这些等位基因的主要贡献者,主要与纤维质量相关。结论因此,为了揭示杂种杂种现象内的隐藏事实,需要发现额外的HQTLS来改善纤维质量。为了抓住受影响的纤维质量和产量特征的突出改善,我们建议A971 BT棉花品种作为主要的育种计划作为首选的父母。

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