Zhou Guangfei, Hao Derong, Xue Lin, Chen Guoqing, Lu Huhua, Zhang Zhenliang, Shi Mingliang, Huang XiaoLan, Mao Yuxiang
Jiangsu Yanjiang Institute of Agricultural Sciences, Nantong 226541, China.
Jiangsu Collaborative Innovation Center for Modern Crop Production, Nanjing 210095, China.
Breed Sci. 2018 Dec;68(5):622-628. doi: 10.1270/jsbbs.18102. Epub 2018 Nov 23.
Kernel moisture content at harvest stage (KMC) is an important factor affecting maize production, especially for mechanical harvesting. We investigated the genetic basis of KMC using an association panel comprising of 144 maize inbred lines that were phenotypically evaluated at two field trial locations. Significant positive or negative correlations were identified between KMC and a series of other agronomic traits, indicating that KMC is associated with other such traits. Combining phenotypic values and the Maize SNP3K Beadchip to perform a genome-wide association study revealed eight single nucleotide polymorphisms (SNPs) associated with KMC at ≤ 0.001 using a mixed linear model (PCA+K). These significant SNPs could be converted into five quantitative trait loci (QTLs) distributed on chromosomes 1, 5, 8, and 9. Of these QTLs, three were colocalized with genomic regions previously reported. Based on the phenotypic values of the alleles corresponding to significant SNPs, the favorable alleles were mined. Eight maize inbred lines with low KMC and harboring favorable alleles were identified. These QTLs and elite maize inbred lines with low KMC will be useful in maize breeding.
收获期籽粒含水量(KMC)是影响玉米生产的一个重要因素,特别是对于机械收获而言。我们利用一个由144个玉米自交系组成的关联群体研究了KMC的遗传基础,这些自交系在两个田间试验地点进行了表型评价。在KMC与一系列其他农艺性状之间鉴定出显著的正相关或负相关,表明KMC与其他此类性状相关。结合表型值和玉米SNP3K芯片进行全基因组关联研究,使用混合线性模型(PCA+K)在≤0.001水平上揭示了8个与KMC相关的单核苷酸多态性(SNP)。这些显著的SNP可转化为分布在第1、5、8和9号染色体上的5个数量性状位点(QTL)。在这些QTL中,有3个与先前报道的基因组区域共定位。根据显著SNP对应等位基因的表型值,挖掘出有利等位基因。鉴定出8个KMC低且携带有利等位基因的玉米自交系。这些QTL和KMC低的优良玉米自交系将有助于玉米育种。