Genome-wide identification of quantitative trait loci for morpho-agronomic and yield-related traits in foxtail millet (Setaria italica) across multi-environments

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作者
Tianpeng Liu
Jihong He
Kongjun Dong
Xuewen Wang
Lei Zhang
Ruiyu Ren
Sha Huang
Xiaoting Sun
Wanxiang Pan
Wenwen Wang
Peng Yang
Tianyu Yang
Zhengsheng Zhang
机构
[1] Southwest University,College of Agronomy and Biotechnology
[2] Gansu Academy of Agricultural Sciences,Crop Research Institute
[3] University of Georgia,Institute of Plant Breeding, Genetics, and Genomics
[4] Gansu Agricultural University,College of Life Science and Technology
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Linkage map; Morpho-agronomic trait; Yield-related traits; QTL;
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摘要
Foxtail millet (Setaria italica) is an ideal model of genetic system for functional genomics of the Panicoideae crop. Identification of QTL responsible for morpho-agronomic and yield-related traits facilitates dissection of genetic control and breeding in cereal crops. Here, based on a Yugu1 × Longgu7 RIL population and genome-wide resequencing data, an updated linkage map harboring 2297 bin and 74 SSR markers was constructed, spanning 1315.1 cM with an average distance of 0.56 cM between adjacent markers. A total of 221 QTL for 17 morpho-agronomic and yield-related traits explaining 5.5 ~ 36% of phenotypic variation were identified across multi-environments. Of these, 109 QTL were detected in two to nine environments, including the most stable qLMS6.1 harboring a promising candidate gene Seita.6G250500, of which 70 were repeatedly identified in different trials in the same geographic location, suggesting that foxtail millet has more identical genetic modules under the similar ecological environment. One hundred-thirty QTL with overlapping intervals formed 22 QTL clusters. Furthermore, six superior recombinant inbred lines, RIL35, RIL48, RIL77, RIL80, RIL115 and RIL125 with transgressive inheritance and enrichment of favorable alleles in plant height, tiller, panicle morphology and yield related-traits were screened by hierarchical cluster. These identified QTL, QTL clusters and superior lines lay ground for further gene-trait association studies and breeding practice in foxtail millet.
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页码:873 / 888
页数:15
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