QTL Mapping and Genetic Analysis of Fiber Quality Traits in Hybrid Cotton

Zhang Sujun, Xiao-Yi Zhou, Tang Liyuan, Li Xinghe, Wang Haitao, Liu Cunjing, Cai Xiao, Zhang Xiangyun, Zhang Jianhong
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Abstract

‘Ji1518’ is a new hybrid cotton variety suitable for mechanized harvesting, the two parents of ‘Ji228’ and ‘Ji567’ were crossed to established F2, F2:3 and F2:9 (recombinant inbred lines RILs) population. Simple sequence repeats (SSR) was performed to construct two different genetic maps based on the F2 and F2:9 populations respectively. The QTL mapping of five fiber quality traits was performed in three populations above. A genetic map was constructed by F2 population, which contained 15 loci in 4 linkage groups, with a full-length coverage of 237.10 cM. While the other linkage map was constructed by F2:9 population, which contained 45 loci in 11 linkage groups, with a full-length coverage of 554.42. Based on the inclusive composite interval mapping method with QTL IciMapping 4.1, 15 QTLs related to upper half mean length, fiber strength, the micronaire value, the elongation and the uniformity were both detected in F2 and F2:3 segregating populations, among them, the QTL locus qFM-4-2 related to the micronaire value explained the highest phenotypic variation rate at 21.10%. QTLs with dominant or super-dominant effects accounted for 66.7% of the total, which showed that dominant genes were the main source of fiber quality heterosis in ‘Ji1518’. Meanwhile, 6 QTLs related to the above five traits of fiber quality were detected in the RIL (F2:9) population, and the contribution rate was between 5.10% and 10.26%. QTL loci related with FS and MIC were detected near HAU2349 in all three populations, and QTL loci related with FU were detected near HAU2710 in all three populations, and the markers above were linked on A6 chromosome. These stable and common QTLs are beneficial to the MAS breeding, which could improve the breeding efficiency.
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杂交棉纤维品质性状的QTL定位与遗传分析
以吉228和吉567为亲本,建立了重组自交系F2、F2:3和F2:9(重组自交系ril)群体。利用SSR (Simple sequence repeats)分别构建了F2和F2:9群体的遗传图谱。对上述3个群体进行了5个纤维品质性状的QTL定位。利用F2群体构建遗传图谱,包含4个连锁群15个位点,全长覆盖237.10 cM。另一个连锁图谱由F2:9群体构建,包含11个连锁群中的45个位点,全长覆盖度为554.42。基于QTL IciMapping 4.1的包容性复合区间作图方法,在F2和F2:3分离群体中检测到15个与上半平均长度、纤维强度、马克隆值、伸长率和均匀性相关的QTL位点,其中与马克隆值相关的QTL位点qFM-4-2解释的表型变异率最高,为21.10%。具有显性或超显性效应的qtl占66.7%,表明显性基因是‘吉1518’纤维品质杂种优势的主要来源。同时,在RIL (F2:9)群体中检测到6个与上述5个纤维品质性状相关的qtl,贡献率在5.10% ~ 10.26%之间。三个群体在HAU2349附近均检测到与FS和MIC相关的QTL位点,在HAU2710附近均检测到与FU相关的QTL位点,上述标记均连锁在A6染色体上。这些稳定且常见的qtl有利于MAS育种,可以提高育种效率。
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