4.6 Article

Integrating GWAS and Gene Expression Analysis Identifies Candidate Genes for Root Morphology Traits in Maize at the Seedling Stage

Journal

GENES
Volume 10, Issue 10, Pages -

Publisher

MDPI
DOI: 10.3390/genes10100773

Keywords

root traits; maize; quantitative trait locus; GWAS; RNA-seq; candidate genes

Funding

  1. NATIONAL Key Technology Research and Development Program of MOST [2016YFD0100303]
  2. Natural Science Foundations of Jiangsu Province [BK20180920]
  3. National Natural Science Foundations [31902101, 31601810, 31801028]
  4. Innovative Research Team of Universities in Jiangsu Province - Priority Academic Program Development of Jiangsu Higher Education Institutions (PAPD)
  5. Research and innovation program for graduate students of Yangzhou university [XKYCX18_082]

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Root system plays an essential role in water and nutrient acquisition in plants. Understanding the genetic basis of root development will be beneficial for breeding new cultivars with efficient root system to enhance resource use efficiency in maize. Here, the natural variation of 13 root and 3 shoot traits was evaluated in 297 maize inbred lines and genome-wide association mapping was conducted to identify SNPs associated with target traits. All measured traits exhibited 2.02- to 21.36-fold variations. A total of 34 quantitative trait loci (QTLs) were detected for 13 traits, and each individual QTL explained 5.7% to 15.9% of the phenotypic variance. Three pleiotropic QTLs involving five root traits were identified; SNP_2_104416607 was associated with lateral root length (LRL), root surface area (RA), root length between 0 and 0.5mm in diameter (RL005), and total root length (TRL); SNP_2_184016997 was associated with RV and RA, and SNP_4_168917747 was associated with LRL, RA and TRL. The expression levels of candidate genes in root QTLs were evaluated by RNA-seq among three long-root lines and three short-root lines. A total of five genes that showed differential expression between the long- and short-root lines were identified as promising candidate genes for the target traits. These QTLs and the potential candidate genes are important source data to understand root development and genetic improvement of root traits in maize.

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