4.6 Article

Combinations of the Ghd7, Ghd8 and Hd1 genes largely define the ecogeographical adaptation and yield potential of cultivated rice

期刊

NEW PHYTOLOGIST
卷 208, 期 4, 页码 1056-1066

出版社

WILEY
DOI: 10.1111/nph.13538

关键词

combinations; ecogeographical adaptation; grain yield; heading date; natural variation; Oryza rufipogon; Oryza sativa

资金

  1. National Natural Science Foundation of China [91335201]
  2. 863 program on functional genomics of stress resistance and nutrient utility in rice [2012 AA10A303]
  3. National Key Program on Basic Research and Development [2010CB125901]

向作者/读者索取更多资源

Rice cultivars have been adapted to favorable ecological regions and cropping seasons. Although several heading date genes have separately made contributions to this adaptation, the roles of gene combinations are still unclear. We employed a map-based cloning approach to isolate a heading date gene, which coordinated the interaction between Ghd7 and Ghd8 to greatly delay rice heading. We resequenced these three genes in a germplasm collection to analyze natural variation. Map-based cloning demonstrated that the gene largely affecting the interaction between Ghd7 and Ghd8 was Hd1. Natural variation analysis showed that a combination of loss-of-function alleles of Ghd7, Ghd8 and Hd1 contributes to the expansion of rice cultivars to higher latitudes; by contrast, a combination of pre-existing strong alleles of Ghd7, Ghd8 and functional Hd1 (referred as SSF) is exclusively found where ancestral Asian cultivars originated. Other combinations have comparatively larger favorable ecological scopes and acceptable grain yield. Our results indicate that the combinations of Ghd7, Ghd8 and Hd1 largely define the eco-geographical adaptation and yield potential in rice cultivars. Breeding varieties with the SSF combination are recommended for tropical regions to fully utilize available energy and light resources and thus produce greater yields.

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