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首页> 外文期刊>Biotechnology & Biotechnological Equipment >Genetic dissection of two fibre yield-related stem traits in ramie ( Boehmeria nivea L. Gaud)
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Genetic dissection of two fibre yield-related stem traits in ramie ( Boehmeria nivea L. Gaud)

机译:苎麻两种纤维产量相关茎状性状的遗传解剖(Boehmeria Nivea L. Gaud)

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Ramie fibres are harvested from the stem bark of the plant, and thus two stem traits—the stem length (SL) and the stem diameter (SD)—are important components of fibre yield in this crop. A recently developed high-density genetic map using an F2 agamous line population derived from two parents, Qingdaye (QDY) and Zhongzhu 1 (ZZ1) laid the basis for dissection of the genetic basis of fibre yield-related traits. However, the genetic basis of the two fibre yield-related stem traits presented here is still uncharacterized in this population. In this study, quantitative trait locus (QTL) analysis for SL and SD traits was performed using the population of QDY/ZZ1, resulting in the identification of four SL and six SD QTLs. Among these 10 QTLs, one was detected in both environments, and six demonstrated a significant environmental correlation. Three DELLA genes were identified to cluster in the region of the stem length QTL qSL11b , and their encoding proteins displayed either amino acid-substitutions or amino acid-insertion/deletion in the functional GRAS domain between two parents. Because the DELLA protein is a negative regulator of the gibberellin signalling pathway and plays a central role in regulating the stem elongation, the mutations in the GRAS domain-encoding region of these three genes potentially influence stem growth. The identification of the QTLs for two stem traits will help improve the fibre yield in ramie breeding programmes by marker-assisted selection. The three identified DELLA genes are candidate genes for cloning the qSL11b locus in future studies.
机译:从植物的茎树皮中收获苎麻纤维,因此两个茎干 - 茎长(S1)和茎直径(SD) - 在该作物中的纤维产量的重要组成部分。最近开发的高密度遗传图谱使用来自两个父母的F2抗敏感线群,青春期(QDY)和中珠1(ZZ1)奠定了解剖纤维产量相关性状的遗传基础的基础。然而,这里呈现的两种纤维产率相关的干性状的遗传基础仍然在该群群中仍然不表征。在该研究中,使用QDY / ZZ1的群体进行SL和SD特征的定量性状轨迹(QTL)分析,导致识别四个SL和六个SD QTL。在这10个QTL中,在这两个环境中检测到一个,六个展示了显着的环境相关性。将三个Della基因鉴定为茎长QTL QSL11B的区域中的簇,并且它们的编码蛋白在两个父母之间的功能性GRAS结构域中显示氨基酸 - 取代或氨基酸插入/缺失。因为Della蛋白是吉布林素信号传导途径的负调节剂,并且在调节杆伸长率方面发挥着核心作用,因此这三种基因的GRAS结构域编码区域中的突变可能影响茎生长。鉴定两个茎状性状的QTLS将通过标记辅助选择有助于提高苎麻育种计划中的纤维产量。三种鉴定的Della基因是用于克隆未来研究中QSL11B基因座的候选基因。

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