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Genome-wide Association Mapping of Cold Tolerance Genes at the Seedling Stage in Rice

机译:稻米幼苗阶段耐寒性基因的基因组 - 宽联型映射

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Background Rice is a temperature-sensitive crop and its production is severely affected by low temperature in temperate and sub-tropical regions. To understand the genetic basis of cold tolerance in rice, we evaluated the cold tolerance at the seedling stage (CTS) of 295 rice cultivars in the rice diversity panel 1 (RDP1), these cultivars were collected from 82 countries. Results The evaluations revealed that both temperate and tropical japonica rice cultivars are more tolerant to cold stress than indica and AUS cultivars. Using the cold tolerance phenotypes and 44?K SNP chip dataset of RDP1, we performed genome-wide association mapping of quantitative trait loci (QTLs) for CTS. The analysis identified 67 QTLs for CTS that are located on 11 chromosomes. Fifty-six of these QTLs are located in regions without known cold tolerance-related QTLs. Conclusion Our study has provided new information on the genetic architecture of rice cold tolerance and has also identified highly cold tolerant cultivars and CTS-associated SNP markers that will be useful rice improvement.
机译:背景技术水稻是一种温度敏感的作物,其生产受到温度低温和亚热带地区的低温严重影响。要了解水稻耐寒性的遗传基础,我们在稻米多样性小组(RDP1)中评估了295米品种幼苗阶段(CTS)的耐寒性,这些品种从82个国家收集。结果评价显示,温带和热带日本水稻品种比籼稻和透镜品种更容易耐冷凝压力。使用RDP1的耐寒性表型和44?K SNP芯片数据集,我们对CTS进行了定量特征基因座(QTLS)的基因组关联映射。该分析确定了位于11染色体上的CTS的67个QTL。这些QTL中的五十六个位于没有已知的耐寒耐寒相关QTL的地区。结论我们的研究提供了有关水稻冷耐耐受遗传建筑的新信息,也鉴定了高度耐寒的品种和CTS相关的SNP标记,这将是有用的水稻改善。

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