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甜玉米和糯玉米株型性状的全基因组关联研究及基因组预测

Genome-Wide Association Study and Genomic Prediction on Plant Architecture Traits in Sweet Corn and Waxy Corn.

作者信息

Dang Dongdong, Guan Yuan, Zheng Hongjian, Zhang Xuecai, Zhang Ao, Wang Hui, Ruan Yanye, Qin Li

机构信息

Shenyang City Key Laboratory of Maize Genomic Selection Breeding, College of Bioscience and Biotechnology, Shenyang Agricultural University, Shenyang 110866, China.

CIMMYT-China Specialty Maize Research Center, Crop Breeding and Cultivation Research Institute, Shanghai Academy of Agricultural Sciences, Shanghai 201403, China.

出版信息

Plants (Basel). 2023 Jan 9;12(2):303. doi: 10.3390/plants12020303.

Abstract

Sweet corn and waxy corn has a better taste and higher accumulated nutritional value than regular maize, and is widely planted and popularly consumed throughout the world. Plant height (PH), ear height (EH), and tassel branch number (TBN) are key plant architecture traits, which play an important role in improving grain yield in maize. In this study, a genome-wide association study (GWAS) and genomic prediction analysis were conducted on plant architecture traits of PH, EH, and TBN in a fresh edible maize population consisting of 190 sweet corn inbred lines and 287 waxy corn inbred lines. Phenotypic data from two locations showed high heritability for all three traits, with significant differences observed between sweet corn and waxy corn for both PH and EH. The differences between the three subgroups of sweet corn were not obvious for all three traits. Population structure and PCA analysis results divided the whole population into three subgroups, i.e., sweet corn, waxy corn, and the subgroup mixed with sweet and waxy corn. Analysis of GWAS was conducted with 278,592 SNPs obtained from resequencing data; 184, 45, and 68 significantly associated SNPs were detected for PH, EH, and TBN, respectively. The phenotypic variance explained (PVE) values of these significant SNPs ranged from 3.50% to 7.0%. The results of this study lay the foundation for further understanding the genetic basis of plant architecture traits in sweet corn and waxy corn. Genomic selection (GS) is a new approach for improving quantitative traits in large plant breeding populations that uses whole-genome molecular markers. The marker number and marker quality are essential for the application of GS in maize breeding. GWAS can choose the most related markers with the traits, so it can be used to improve the predictive accuracy of GS.

摘要

甜玉米和糯玉米比普通玉米口感更好,营养价值积累更高,在全球广泛种植且深受消费者喜爱。株高(PH)、穗位高(EH)和雄穗分支数(TBN)是关键的株型性状,对提高玉米产量起着重要作用。在本研究中,对由190个甜玉米自交系和287个糯玉米自交系组成的鲜食玉米群体的株高、穗位高和雄穗分支数等株型性状进行了全基因组关联研究(GWAS)和基因组预测分析。来自两个地点的表型数据显示,这三个性状的遗传力都很高,甜玉米和糯玉米在株高和穗位高方面均存在显著差异。甜玉米的三个亚组在这三个性状上的差异均不明显。群体结构和主成分分析(PCA)结果将整个群体分为三个亚组,即甜玉米、糯玉米以及甜糯混合亚组。利用重测序数据获得的278,592个单核苷酸多态性(SNP)进行GWAS分析;分别检测到184个、45个和68个与株高、穗位高和雄穗分支数显著相关的SNP。这些显著SNP的表型变异解释率(PVE)值在3.50%至7.0%之间。本研究结果为进一步了解甜玉米和糯玉米株型性状的遗传基础奠定了基础。基因组选择(GS)是一种利用全基因组分子标记改良大型植物育种群体数量性状的新方法。标记数量和标记质量对于GS在玉米育种中的应用至关重要。GWAS可以选择与性状最相关的标记,因此可用于提高GS的预测准确性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e60a/9867343/b035cc0be227/plants-12-00303-g001.jpg

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