Zhao Xinghua, Wang Changbiao, Liu Jiang, Han Bin, Huang Jinling
College of Agriculture, Shanxi Agricultural University, Taigu, Shanxi, China.
College of Life Sciences, Shanxi Agricultural University, Taigu, Shanxi, China.
Front Genet. 2024 Nov 1;15:1487700. doi: 10.3389/fgene.2024.1487700. eCollection 2024.
Maize, belonging to the Poaceae family and the L. genus, stands as an excellent food crop. The plant type has a significant impact on crop growth, photosynthesis, lodging resistance, planting density, and final yield. In this study, 160 maize inbred lines were selected as experimental materials to conduct molecular markers research on maize plant type traits through the measurement of plant type-related traits, population structure, and genome-wide association analysis. The phenotypic data revealed differences in plant type-related traits among maize inbred lines grown in the Xinzhou and Jinzhong regions. The frequency distribution of plant height, ear height, spindle length of tassel, and first-order branch number of tassel traits in the 160 maize inbred lines previously studied generally conformed to a normal distribution. We identified 42,240 high-quality single nucleotide polymorphisms (SNPs) using the Affymetrix Axiom chip. The 160 maize inbred lines were categorized into six subgroups, each exhibiting an average gene diversity of 0.356 and an average polymorphism information content of 0.245. We identified 9, 23, 18, 8 and 32 loci that were significantly associated with first-order branch number of tassel, spindle length of tassel, ear height, plant height, and ear height/plant height ratio, respectively. At the same time, 6, 22, 14, 2, and 37 genes were identified as significantly associated with first-order branch number of tassel, spindle length of tassel, ear height, plant height, and ear height/plant height ratio, respectively. This study comprehensively delved into the genetic information of maize plant type-related traits, offering valuable genetic resources and a solid theoretical foundation for the breeding of novel maize varieties with optimized plant types.
玉米属于禾本科玉蜀黍属,是一种优良的粮食作物。株型对作物生长、光合作用、抗倒伏性、种植密度和最终产量有重大影响。本研究选取160份玉米自交系为试验材料,通过测定株型相关性状、群体结构和全基因组关联分析,对玉米株型性状进行分子标记研究。表型数据显示,在忻州和晋中地区种植的玉米自交系间株型相关性状存在差异。先前研究的160份玉米自交系的株高、穗位高、雄穗主轴长度和雄穗一级分枝数性状的频率分布总体符合正态分布。我们使用Affymetrix Axiom芯片鉴定出42240个高质量单核苷酸多态性(SNP)。160份玉米自交系被分为6个亚群,每个亚群的平均基因多样性为0.356,平均多态性信息含量为0.245。我们分别鉴定出9个、23个、18个、8个和32个与雄穗一级分枝数、雄穗主轴长度、穗位高、株高和穗位高/株高比显著相关的位点。同时,分别鉴定出6个、22个、14个、2个和37个与雄穗一级分枝数、雄穗主轴长度、穗位高、株高和穗位高/株高比显著相关的基因。本研究全面深入地探究了玉米株型相关性状的遗传信息,为培育株型优化的新型玉米品种提供了宝贵的遗传资源和坚实的理论基础。