生物
黑米
驯化
种质资源
转录组
代谢组学
小桶
数量性状位点
人口
基因
遗传学
白色(突变)
分子育种
候选基因
花青素
稻属
生物强化
植物
计算生物学
栽培
生物技术
基因组学
适应(眼睛)
RNA序列
代谢途径
机制(生物学)
作物
作者
Zaihui Zhou,Zenan Yang,Qinglu Zhang,Xushi Wang,Qiu Chen,Xinyao Yu,Yao Zhou,Yidan Ouyang,Jianwei Zhang,Weibo Xie,Qifa Zhang,Hao Chen,Zaihui Zhou,Zenan Yang,Qinglu Zhang,Xushi Wang,Qiu Chen,Xinyao Yu,Yao Zhou,Yidan Ouyang
摘要
Abstract Black rice, a nutritionally superior yet genetically uncharacterized germplasm, exhibits extreme rarity (∼ 1%) in natural rice populations. Here, we establish a global germplasm collection of 367 black rice accessions and employ integrated multi-omics (genomics, transcriptomics, metabolomics) to dissect its divergence from white rice. Population genomic analyses reveal a two-step domestication trajectory for black rice from wild progenitor: initial Rc-mediated loss of proanthocyanidin pigmentation, followed by OsKala4/OsMYB3-driven anthocyanin activation under artificial selection. Genome-wide scans identify 238 differentially selected regions between black and white rice that orchestrate extensive transcriptomic reprogramming (up to 22% differentially expressed genes) and metabolomic remodeling (up to 32% differentially accumulated metabolites) in black rice seeds. Multi-omics analysis and genome-wide association study uncover previously uncharacterized regulators (OsWRKY1, OsBBX13, OsTT12) that synergistically enhance the MBW transcriptional complex to regulate anthocyanin biosynthesis and vacuolar sequestration. Furthermore, we reconstructed a comprehensive biosynthetic pathway network for phenolic acids and flavonoids in black rice through integration of experimental metabolomic and transcriptomic datasets with KEGG pathway annotations. Finally, we evaluated the selection status of 225 quantitative trait genes and compared agronomic traits between black and white rice. Our findings provide a molecular roadmap for precision breeding strategies to develop elite black rice cultivars with optimized nutritional and agronomic performance.
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