The National Key Facility for Crop Gene Resources and Genetic Improvement/Institute of Crop Sciences, Chinese Academy of Agricultural Sciences, Beijing 100081, China; State Key Laboratory of Crop Genetics and Germplasm Enhancement, Cytogenetics Institute, Nanjing Agricultural University, Nanjing, Jiangsu 210095, China.
The National Key Facility for Crop Gene Resources and Genetic Improvement/Institute of Crop Sciences, Chinese Academy of Agricultural Sciences, Beijing 100081, China.
Plant Commun. 2023 May 8;4(3):100549. doi: 10.1016/j.xplc.2023.100549. Epub 2023 Jan 14.
Wheat (Triticum aestivum) is among the most important staple crops for safeguarding the food security of the growing world population. To bridge the gap between genebank diversity and breeding programs, we developed an advanced backcross-nested association mapping plus inter-crossed population (AB-NAMIC) by crossing three popular wheat cultivars as recurrent founders to 20 germplasm lines from a mini core collection. Selective backcrossing combined with selection against undesirable traits and extensive crossing within and between sub-populations created new opportunities to detect unknown genes and increase the frequency of beneficial alleles in the AB-NAMIC population. We performed phenotyping of 590 AB-NAMIC lines and a natural panel of 476 cultivars for six consecutive growing seasons and genotyped these 1066 lines with a 660K SNP array. Genome-wide association studies of both panels for plant development and yield traits demonstrated improved power to detect rare alleles and loci with medium genetic effects in AB-NAMIC. Notably, genome-wide association studies in AB-NAMIC detected the candidate gene TaSWEET6-7B (TraesCS7B03G1216700), which has high homology to the rice SWEET6b gene and exerts strong effects on adaptation and yield traits. The commercial release of two derived AB-NAMIC lines attests to its direct applicability in wheat improvement. Valuable information on genome-wide association study mapping, candidate genes, and their haplotypes for breeding traits are available through WheatGAB. Our research provides an excellent framework for fast-tracking exploration and accumulation of beneficial alleles stored in genebanks.
小麦(Triticum aestivum)是保障不断增长的世界人口粮食安全的最重要的主食作物之一。为了弥合基因库多样性与育种计划之间的差距,我们通过将三个流行的小麦品种作为轮回亲本与来自迷你核心收集的 20 个种质系杂交,开发了一种先进的回交-嵌套关联作图加交叉群体(AB-NAMIC)。通过选择性回交,结合对不良性状的选择以及在亚群体内和亚群体间的广泛杂交,为检测未知基因和增加 AB-NAMIC 群体中有益等位基因的频率创造了新的机会。我们对 590 条 AB-NAMIC 系和 476 个自然群体的品种进行了 6 个连续生长季节的表型分析,并使用 660K SNP 阵列对这 1066 条系进行了基因型分析。对两个群体的植物发育和产量性状进行全基因组关联研究表明,在 AB-NAMIC 中,检测稀有等位基因和具有中等遗传效应的基因座的能力得到了提高。值得注意的是,AB-NAMIC 中的全基因组关联研究检测到了候选基因 TaSWEET6-7B(TraesCS7B03G1216700),该基因与水稻 SWEET6b 基因高度同源,对适应性和产量性状具有很强的影响。两个衍生的 AB-NAMIC 系的商业发布证明了其在小麦改良中的直接适用性。通过 WheatGAB 可获得有关全基因组关联研究图谱、候选基因及其与育种性状相关的单倍型的宝贵信息。我们的研究为快速探索和积累基因库中储存的有益等位基因提供了一个极好的框架。