Prasad C T Manjunath, Kodde Jan, Angenent Gerco C, Hay Fiona R, McNally Kenneth L, Groot Steven P C
Wageningen Plant Research, Wageningen University & Research, Wageningen, The Netherlands.
Laboratory of Molecular Biology, Wageningen University & Research, Wageningen, The Netherlands.
Plant Cell Environ. 2023 Jun;46(6):1962-1980. doi: 10.1111/pce.14581. Epub 2023 Mar 20.
Seed deterioration during storage results in poor germination, reduced vigour, and non-uniform seedling emergence. The aging rate depends on storage conditions and genetic factors. This study aims to identify these genetic factors determining the longevity of rice (Oryza sativa L.) seeds stored under experimental aging conditions mimicking long-term dry storage. Genetic variation for tolerance to aging was studied in 300 Indica rice accessions by storing dry seeds under an elevated partial pressure of oxygen (EPPO) condition. A genome-wide association analysis identified 11 unique genomic regions for all measured germination parameters after aging, differing from those previously identified in rice under humid experimental aging conditions. The significant single nucleotide polymorphism in the most prominent region was located within the Rc gene, encoding a basic helix-loop-helix transcription factor. Storage experiments using near-isogenic rice lines (SD7-1D (Rc) and SD7-1d (rc) with the same allelic variation confirmed the role of the wildtype Rc gene, providing stronger tolerance to dry EPPO aging. In the seed pericarp, a functional Rc gene results in accumulation of proanthocyanidins, an important sub-class of flavonoids having strong antioxidant activity, which may explain the variation in tolerance to dry EPPO aging.
种子在储存过程中的老化会导致发芽率降低、活力下降以及幼苗出土不均匀。老化速率取决于储存条件和遗传因素。本研究旨在确定在模拟长期干燥储存的实验老化条件下储存的水稻(Oryza sativa L.)种子寿命的这些遗传因素。通过在升高的氧气分压(EPPO)条件下储存干燥种子,研究了300份籼稻品种对老化的耐受性遗传变异。全基因组关联分析确定了老化后所有测量发芽参数的11个独特基因组区域,这与之前在潮湿实验老化条件下水稻中鉴定的区域不同。最显著区域的显著单核苷酸多态性位于Rc基因内,该基因编码一种碱性螺旋-环-螺旋转录因子。使用具有相同等位基因变异的近等基因水稻品系(SD7-1D(Rc)和SD7-1d(rc))进行的储存实验证实了野生型Rc基因的作用,其对干燥EPPO老化具有更强的耐受性。在种子果皮中,功能性Rc基因导致原花青素的积累,原花青素是具有强抗氧化活性的重要类黄酮亚类,这可能解释了对干燥EPPO老化耐受性的差异。