Archive/Genomic Insights into the Genetic Diversity, Selection Signals, and Agronomic Traits of Rice (Oryza sativa L.) Germplasm in Zhejiang Province
Genomic Insights into the Genetic Diversity, Selection Signals, and Agronomic Traits of Rice (Oryza sativa L.) Germplasm in Zhejiang Province
Yang Lv, Hao Wu, Muhammad Asad Ullah Asad et al.
July 31, 2026
en

Abstract

Elucidating the evolutionary trajectories and genetic basis of critical agronomic traits in regional rice germplasm is paramount for discovering elite allelic variations for crop improvement. Here, we systematically characterized a panel of 109 rice accessions from Zhejiang Province through whole-genome resequencing (~10× coverage) coupled with two years of rigorous field phenotypic evaluations. A total of 4,753,071 high-quality genomic variants, including 4,147,316 SNPs, were identified across the genome. Population structure and evolutionary analyses revealed sharp genetic differentiation at the subspecies level, partitioning the panel into distinct indica and japonica clusters accompanied by intricate subpopulation stratification and historical gene flow. Through a joint scanning of the fixation index (Fst) and nucleotide diversity (Pi) ratios, three prominent selective sweep regions (qSS1, qSS10, and qSS12) driving subspecific differentiation were captured on chromosomes 1, 10, and 12. Notably, the qSS12 locus harbors the sucrose transporter gene OsSUT2, indicating that carbohydrate transport and energy metabolism served as core genomic targets driving the indica–japonica divergence. Furthermore, genome-wide association studies (GWAS) successfully mapped 9 significant loci modulating heading date, effective tiller number, and grain size. Subsequent gene-based haplotype analyses within these target intervals pinpointed elite allelic variations in core candidate genes, including OsSPX1 (phosphate homeostasis, 1000-grain weight), Chl9 (chlorophyll synthesis, grain width), and OsCER1 (wax biosynthesis, panicle length). Collectively, this study deciphers the genomic landscape and subspecies differentiation patterns of Zhejiang rice germplasm, providing pivotal molecular targets and invaluable genomic resources for germplasm conservation and precision molecular breeding.

IPC Classification

G06A01B60H01

Keywords

genomicinsightsgeneticdiversityselectionsignalsagronomictraitsriceoryzasativagermplasmzhejiangprovinceplantselucidatingevolutionarytrajectoriesbasiscriticalregionalparamountdiscoveringelite
Reference this publication

€ 4.00