Biotechnology Bulletin ›› 2026, Vol. 42 ›› Issue (7): 138-147.doi: 10.13560/j.cnki.biotech.bull.1985.2025-1249

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Mapping and Candidate Gene Analysis of the Major Gene Controlling Seed Shattering in Foxtail Millet Based on BSA-Seq

LIU Qian, WANG Zong-yan, LUO Jun-hao, WU Zhang-zhang, HU Zhen, LYU Jian-zhen(), JIANG Liang()   

  1. College of Agriculture, Shanxi Agricultural University, Shanxi Houji Laboratory, Taiyuan 030031
  • Received:2025-11-19 Online:2026-07-26 Published:2026-07-20
  • Contact: LYU Jian-zhen, JIANG Liang E-mail:lvjianzhen110@163.com;jiangliang188@gmail.com

Abstract:

Objective Seed shattering is a crucial artificially - selected trait in the process of crop domestication. Mapping and cloning the major gene regulating seed shattering provides a theoretical basis and application value for clarifying the genetic basis of foxtail millet domestication and developing molecular marker - assisted breeding tools. Method The easily-shattering germplasm resource YLL5 and the shattering - resistant modern cultivar Jigu 42 (Si42) were taken as the research objects. Paraffin sectioning was used to compare the differences in the cell structure and cell-wall components of the abscission zone between the two parents. To map the gene controlling seed shattering, an F₄ genetic population was constructed. BSA-Seq (Bulked segregant analysis sequencing) was carried out, and in combination with linkage analysis methods such as ED, G′ value, SNP-loess, and SNP-index, the loci related to the trait were preliminarily mapped. The annotated genes in the mapped interval were screened, and quantitative reverse-transcription PCR (RT-qPCR) was used to verify the expression differences of candidate genes in multiple tissues of the two parents. Result The results of paraffin sectioning showed significant differences in cell arrangement, tissue structure, and cell wall components between YLL5 and Si42. Through association analysis, the locus controlling the target trait was preliminarily mapped to chromosome 5 (3.3 Mb) and chromosome 8 (1.1 Mb). Using InDel markers, the target interval was finely mapped to a region of approximately 0.3 Mb on chromosome 5. A total of 25 genes were annotated in this interval, and genes with high expression in the panicle were screened out. RT-qPCR analysis indicated that the expression level of the candidate gene Seita.5G087200 in the panicle and spikelet tissues of the easily-shattering parent YLL5 was significantly higher than that in Si42, and its expression pattern was highly consistent with the shattering phenotype. Sanger sequencing further revealed a transposon-insertion variation in the second exon of this gene. A molecular marker developed based on this variation could effectively distinguish different shattering phenotypes, showing potential for application in molecular marker-assisted selection. Conclusion Seita.5G087200 is likely a key candidate gene regulating the seed-shattering trait in foxtail millet.

Key words: Setaria italica, domestication traits, BSA-Seq technology, seed shattering, genetic mapping