Construction of a high-density genetic map and lint percentage and cottonseed nutrient trait QTL identification in upland cotton (Gossypium hirsutum L.)

Molecular Genetics and Genomics : MGG
Dexin LiuDajun Liu

Abstract

Upland cotton plays a critical role not only in the textile industry, but also in the production of important secondary metabolites, such as oil and proteins. Construction of a high-density linkage map and identifying yield and seed trait quantitative trail loci (QTL) are prerequisites for molecular marker-assisted selective breeding projects. Here, we update a high-density upland cotton genetic map from recombinant inbred lines. A total of 25,313 SSR primer pairs were screened for polymorphism between Yumian 1 and T586, and 1712 SSR primer pairs were used to genotype the mapping population and construct a map. An additional 1166 loci have been added to our previously published map with 509 SSR markers. The updated genetic map spans a total recombinant length of 3338.2 cM and contains 1675 SSR loci and nine morphological markers, with an average interval of 1.98 cM between adjacent markers. Green lint (Lg) mapped on chromosome 15 in a previous report is mapped in an interval of 2.6 cM on chromosome 21. Based on the map and phenotypic data from multiple environments, 79 lint percentage and seed nutrient trait QTL are detected. These include 8 lint percentage, 13 crude protein, 15 crude oil, 8 linoleic, 10 oleic, 13 palmitic, and...Continue Reading

References

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May 20, 2014·Nature Genetics·Fuguang LiShuxun Yu

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Citations

Mar 4, 2020·International Journal of Molecular Sciences·Xueying LiuIain Wilson
Mar 15, 2018·Frontiers in Plant Science·Zhaoyun TanZhengsheng Zhang
Oct 30, 2021·TAG. Theoretical and applied genetics. Theoretische und angewandte Genetik·Zhibin ZhangHaihong Shang

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