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Dissecting Genetic Network of Fruit Branch Traits in Upland Cotton by Association Mapping Using SSR Markers

机译:利用SSR标记进行陆地棉果实分支性状遗传网络的解剖。

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摘要

Genetic architecture of branch traits has large influences on the morphological structure, photosynthetic capacity, planting density, and yield of Upland cotton (Gossypium hirsutum L.). This research aims to reveal the genetic effects of six branch traits, including bottom fruit branch node number (BFBNN), bottom fruit branch length (BFBL), middle fruit branch node number (MFBNN), middle fruit branch length (MFBL), upper fruit branch node number (UFBNN), and upper fruit branch length (UFBL). Association mapping was conducted for these traits of 39 lines and their 178 F1 hybrids in three environments. There were 20 highly significant Quantitative Trait SSRs (QTSs) detected by mixed linear model approach analyzing a full genetic model with genetic effects of additive, dominance, epistasis and their environment interaction. The phenotypic variation explained by genetic effects ranged from 32.64 ~ 91.61%, suggesting these branch traits largely influenced by genetic factors.
机译:分支性状的遗传结构对陆地棉(陆地棉)的形态结构,光合能力,种植密度和产量有很大影响。这项研究旨在揭示六个分支性状的遗传效应,包括底部果实的分支节数(BFBNN),底部果实的分支长度(BFBL),中间果实的分支节数(MFBNN),中间果实的分支长度(MFBL),上部果实分支节点号(UFBNN)和上部水果分支长度(UFBL)。在三个环境中针对39个品系及其178个F1杂种的这些性状进行了关联映射。通过混合线性模型方法分析了具有加和,优势,上位性及其环境相互作用的遗传效应的完整遗传模型,检测到20个非常重要的定量性状SSR(QTS)。遗传效应解释的表型变异范围为32.64〜91.61%,表明这些分支性状在很大程度上受遗传因素影响。

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