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January 15, 2026Molecular Breeding0 citations

Fine mapping and cloning of an intersubspecific reproductive isolation locus MSHB1 in rice

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XWXuan WangJGJunyi GongJZJinfeng Zhao

Key Points

  • This research aims to explore the genetic basis of reproductive isolation in rice subspecies.
  • Identified MSHB1 locus using chromosome segment substitution lines from Indica and aromatic rice.
  • Constructed near-isogenic lines to observe phenotypic traits related to male sterility.
  • Conducted fine mapping of MSHB1 on chromosome 1 and performed genetic complementation assays.
  • Utilized comparative genomic analyses to investigate promoter activity of OsEAF6 paralogs.
  • MSHB1 was localized to a 28.583-kb interval on chromosome 1.
  • CS004 line carrying the BAS allele showed complete male sterility and altered growth traits.
  • The HHZ-derived allele restored fertility, demonstrating a genetic complementation effect.
  • Functional divergence in OsEAF6 paralogs contributes to hybrid breakdown.

Abstract

Reproductive isolation between rice subspecies poses a significant barrier to harnessing heterosis in hybrid breeding. Here, we identified and characterized a novel locus, designated Male Sterility-Related Hybrid Breakdown Locus on Chromosome 1 ( MSHB1 ), through the utilization of chromosome segment substitution lines (CSSLs) derived from crosses between an indica cultivar Huanghuazhan (HHZ) and an aromatic cultivar Basmati Surkh 89 − 15 (BAS). A near-isogenic line, CS004, carrying the BAS-derived MSHB1 BAS allele, exhibits complete male sterility, reduced plant height, fewer panicles, and shorter panicle length. Fine mapping localized MSHB1 to a 28.583-kb interval on the short arm of chromosome 1. Genetic complementation confirmed that the MSHB1 allele from HHZ is sufficient to restore fertility. MSHB1 encodes a homolog of Esa1-associated factor 6 (EAF6), which regulates histone acetylation and transcriptional activity. Comparative genomic analyses revealed that functional divergence in promoter activity between duplicated OsEAF6 paralogs ( MSHB1 and MSHB12 ) drives hybrid breakdown. These findings elucidate a molecular mechanism underlying intersubspecific reproductive isolation and highlight MSHB1 as a strategic target for overcoming hybrid sterility to enhance heterosis in rice breeding.

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Cite This Study

Wang et al. (2026) studied this question.

synapsesocial.com/papers/69683e135818e7dbd7c6322fhttps://doi.org/10.1007/s11032-025-01630-9
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