生物
遗传学
单核苷酸多态性
连锁不平衡
SNP公司
遗传关联
关联映射
数量性状位点
耐旱性
遗传标记
遗传多样性
核苷酸多型性
人口
基因型
进化生物学
基因
植物
社会学
人口学
作者
Zhuanfang Hao,Xinhai Li,Chuanxiao Xie,Jianfeng Weng,Mingshun Li,Degui Zhang,Xiaoling Liang,Lingling Liu,Sisi Liu,Shihuang Zhang
标识
DOI:10.1111/j.1744-7909.2011.01051.x
摘要
Abstract Single nucleotide polymorphism (SNP) is a common form of genetic variation and popularly exists in maize genome. An Illumina GoldenGate assay with 1 536 SNP markers was used to genotype maize inbred lines and identified the functional genetic variations underlying drought tolerance by association analysis. Across 80 lines, 1 006 polymorphic SNPs (65.5% of the total) in the assay with good call quality were used to estimate the pattern of genetic diversity, population structure, and familial relatedness. The analysis showed the best number of fixed subgroups was six, which was consistent with their original sources and results using only simple sequence repeat markers. Pairwise linkage disequilibrium (LD) and association mapping with phenotypic traits investigated under water‐stressed and well‐watered regimes showed rapid LD decline within 100–500 kb along the physical distance of each chromosome, and that 29 SNPs were associated with at least two phenotypic traits in one or more environments, which were related to drought‐tolerant or drought‐responsive genes. These drought‐tolerant SNPs could be converted into functional markers and then used for maize improvement by marker‐assisted selection.
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