Zhang Wei, Zhou Liang, Ni Dahu, Ni Jinlong, Song Fengshun, Yang Liansong, Zhang Dewen
Anhui Province Key Laboratory of Rice Genetics and Breeding, Rice Research Institute, Anhui Academy of Agricultural Sciences, Hefei 230031, China.
Plants (Basel). 2025 Jun 18;14(12):1873. doi: 10.3390/plants14121873.
Successfully breeding high-yield, lodging-resistant hybrid rice varieties is critical for ensuring food security. Two-line hybrid rice system plays an essential role in rice breeding, and 1892S, an important two-line sterile line, has contributed significantly to the development of over 100 hybrid rice varieties with superior agronomic traits, including lodging resistance. Despite its importance, a comprehensive understanding of the genomic basis underlying these traits in 1892S has been lacking due to the limitations of short-read sequencing technologies. To address this gap, we utilized advanced telomere-to-telomere (T2T) genome assembly techniques to generate a high-quality, gap-free genome of 1892S-the final genome comprises 12 complete chromosomes with 40,560 protein-coding genes. Comparative genomic analysis identified multiple known lodging resistance genes, including , , , , , and , with unique allelic variations that may enhance resistance. The pan-genome analysis identified 2347 strain-specific genes in 1892S, further supporting its unique genetic advantages. This study represents the complete T2T genome assembly of a two-line sterile line and provides novel insights into the genetic foundation of lodging resistance in hybrid rice. This study highlights the genetic potential of 1892S in hybrid rice breeding and provides a model for the genomic analysis of other two-line sterile lines, offering valuable insights for improving in hybrid rice, including traits lodging resistance, yield stability, and adaptability, which are crucial for global food security.
成功培育高产、抗倒伏的杂交水稻品种对于确保粮食安全至关重要。两系杂交水稻系统在水稻育种中发挥着重要作用,1892S作为一个重要的两系不育系,为100多个具有优良农艺性状(包括抗倒伏性)的杂交水稻品种的培育做出了重大贡献。尽管其很重要,但由于短读长测序技术的局限性,一直缺乏对1892S这些性状潜在基因组基础的全面了解。为了填补这一空白,我们利用先进的端粒到端粒(T2T)基因组组装技术生成了1892S的高质量、无间隙基因组——最终基因组由12条完整染色体组成,包含40560个蛋白质编码基因。比较基因组分析鉴定出多个已知的抗倒伏基因,包括 、 、 、 、 和 ,它们具有可能增强抗性的独特等位变异。泛基因组分析在1892S中鉴定出2347个菌株特异性基因,进一步支持了其独特的遗传优势。本研究代表了一个两系不育系的完整T2T基因组组装,并为杂交水稻抗倒伏的遗传基础提供了新的见解。这项研究突出了1892S在杂交水稻育种中的遗传潜力,并为其他两系不育系的基因组分析提供了一个模型,为改良杂交水稻提供了有价值的见解,包括抗倒伏性、产量稳定性和适应性等性状,这些对于全球粮食安全至关重要。