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Genetic analysis and quantitative trait locus mapping of PEG-induced osmotic stress tolerance in cotton

机译:PEG诱导的棉花渗透胁迫耐性的遗传分析和数量性状位点定位

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Water stress is one of the major abiotic stresses that adversely affect cotton production. Seedlings of 142 backcross inbred lines (BILs) derived from Pima cotton Pima S-7' (Gossypium barbadense L.)xUpland cotton Sure-Grow 747'(G.hirsutum L.) were evaluated in two tests for plant height, fresh shoot weight and root weight under two treatments (5% PEG and water-control conditions) using a hydroponic system in the greenhouse. The experiment in each test was a randomized complete block design with three replicates. The analysis of variance for the two tests detected significant genotypic variation in PEG-induced stress tolerance within the BIL population and between the parents. Heritabilities were moderate to high and were higher under the control conditions than under the PEG treatment, and the three traits were also significantly and positively correlated. Based on a linkage map with 292 loci, six QTLs were detected including two for plant height, and two each for fresh shoot weight and root weight. This study represents the first report in using a permanent mapping population in genetic and linkage analysis of water stress tolerance in cotton.
机译:水分胁迫是对棉花生产造成不利影响的主要非生物胁迫之一。在两个测试中评估了来自Pima棉花Pima S-7'(棉Barbadense L.)x陆地棉Sure-Grow 747'(G.hirsutum L.)的142个回交自交系(BIL)的幼苗的株高,鲜枝重在温室中使用水培系统进行的两种处理(5%PEG和控水条件)下的根重和根重。每个测试中的实验都是随机重复的完整模块设计,一式三份。两项测试的方差分析检测到BIL群体内和父母之间PEG诱导的应激耐受性的显着基因型变化。遗传力为中等至高,在对照条件下高于PEG处理,并且三个性状也显着正相关。基于具有292个基因座的连锁图谱,检测到6个QTL,其中两个QTL用于株高,两个分别用于鲜苗重和根重。这项研究代表了使用永久性作图种群进行棉花水分胁迫耐性的遗传和连锁分析的第一份报告。

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