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QTL mapping of downy mildew resistance in foxtail millet by SLAF‑seq and BSR-seq analysis.

Authors :
Liu, Xu
Zhang, Nuo
Sun, Yurong
Fu, Zhenxin
Han, Yuanhuai
Yang, Yang
Jia, Jichun
Hou, Siyu
Zhang, Baojun
Source :
Theoretical & Applied Genetics. Jul2024, Vol. 137 Issue 7, p1-14. 14p.
Publication Year :
2024

Abstract

Key message: Key message Three major QTLs for resistance to downy mildew were located within an 0.78 Mb interval on chromosome 8 in foxtail millet. Downy mildew, a disease caused by Sclerospora graminicola, is a serious problem that jeopardizes the yield and quality of foxtail millet. Breeding resistant varieties represents one of the most economical and effective solutions, yet there is a lack of molecular markers related to the resistance. Here, a mapping population comprising of 158 F6:7 recombinant inbred lines (RILs) was constructed from the crossing of G1 and JG21. Based on the specific locus amplified fragment sequencing results, a high-density linkage map of foxtail millet with 1031 bin markers, spanning 1041.66 cM was constructed. Based on the high-density linkage map and the phenotype data in four environments, a total of nine quantitative trait loci (QTL) associated with resistance to downy mildew were identified. Further BSR-seq confirmed the genomic regions containing the potential candidate genes related to downy mildew resistance. Interestingly, a 0.78-Mb interval between C8M257 and C8M268 on chromosome 8 was highlighted because of its presence in three major QTL, qDM8_1, qDM8_2, and qDM8_4, which contains 10 NBS-LRR genes. Haplotype analysis in RILs and natural population suggest that 9 SNP loci on Seita8G.199800, Seita8G.195900, Seita8G.198300, and Seita.8G199300 genes were significantly correlated with disease resistance. Furthermore, we found that those genes were taxon-specific by collinearity analysis of pearl millet and foxtail millet genomes. The identification of these new resistance QTL and the prediction of resistance genes against downy mildew will be useful in breeding for resistant varieties and the study of genetic mechanisms of downy mildew disease resistance in foxtail millet. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00405752
Volume :
137
Issue :
7
Database :
Academic Search Index
Journal :
Theoretical & Applied Genetics
Publication Type :
Academic Journal
Accession number :
178032623
Full Text :
https://doi.org/10.1007/s00122-024-04673-2