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Genome-Wide Association Study Discovers Novel Germplasm Resources and Genetic Loci with Resistance to Gibberella Ear Rot Caused by . | LitMetric

Genome-Wide Association Study Discovers Novel Germplasm Resources and Genetic Loci with Resistance to Gibberella Ear Rot Caused by .

Phytopathology

State Key Laboratory of Crop Gene Exploration and Utilization in Southwest China, Key Laboratory of Biology and Genetic Improvement of Maize in Southwest Region of Ministry of Agriculture, Maize Research Institute, Sichuan Agricultural University, Chengdu 611130, China.

Published: July 2023

AI Article Synopsis

  • Gibberella ear rot (GER)
  • is a major disease in maize that negatively impacts grain yield and quality, and its genetic resistance factors are not well understood.
  • - A study analyzing 316 maize inbred lines found
  • 69 SNPs
  • significantly linked to GER resistance, with varying degrees of phenotypic variation explained, highlighting the complexity of genetic variations involved.
  • - The research identified
  • 10 key SNPs
  • related to GER resistance in maize, including one with the highest phenotypic variation explained, providing valuable targets for future breeding efforts to enhance resistance.

Article Abstract

Gibberella ear rot (GER) in maize caused by is one of the most devastating maize diseases reducing grain yield and quality worldwide. The genetic bases of maize GER resistance remain largely unknown. Using artificial inoculation across multiple environments, the GER severity of an association panel consisting of 316 diverse inbred lines was observed with wide phenotypic variation. In the association panel, a genome-wide association study using a general linear model identified 69 single-nucleotide polymorphisms (SNPs) significantly associated with GER resistance at the threshold of 2.04 × 10, and the average phenotypic variation explained (PVE) of these SNPs was 5.09%. We also conducted a genome-wide association study analysis using a mixed linear model at a threshold of 1.0 × 10, and 16 significantly associated SNPs with an average PVE of 4.73% were detected. A combined general linear model and mixed linear model method obtained 10 co-localized significantly associated SNPs linked to GER resistance, including the most significant SNP (PZE-105079915) with the greatest PVE value, 9.07%, at bin 5.05 following 10 candidate genes. These findings are significant for the exploration of the complicated genetic variations in maize GER resistance. The regions and genes identified herein provide a list of candidate targets for further investigation, in addition to the elite germplasm resources that can be used for breeding GER resistance in maize.

Download full-text PDF

Source
http://dx.doi.org/10.1094/PHYTO-09-22-0336-RDOI Listing

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