QTLs for Resistance to Fusarium Ear Rot in a Multiparent Advanced Generation Intercross (MAGIC) Maize Population

Author:

Butrón A.1ORCID,Santiago R.23,Cao A.1,Samayoa L. F.4,Malvar R. A.1

Affiliation:

1. Misión Biológica de Galicia (CSIC), Box 28, Pontevedra 36080, Spain;

2. Facultad de Biología, Departamento de Biología Vegetal y Ciencias del Suelo, Universidad de Vigo, As Lagoas Marcosende, Vigo 36310, Spain;

3. Agrobiología Ambiental, Calidad de Suelos y Plantas (UVIGO), Unidad Asociada a la MBG (CSIC), Pontevedra 36143, Spain; and

4. Department of Crop & Soil Sciences, North Carolina State University, Raleigh, NC 27695, U.S.A.

Abstract

Alternative approaches to linkage and association mapping using inbred panels may allow further insights into loci involved in resistance to Fusarium ear rot and lead to the discovery of suitable markers for breeding programs. Here, the suitability of a maize multiparent advanced-generation intercross population for detecting quantitative trait loci (QTLs) associated with Fusarium ear rot resistance was evaluated and found to be valuable in uncovering genomic regions containing resistance-associated loci in temperate materials. In total, 13 putative minor QTLs were located over all of the chromosomes, except chromosome 5, and frequencies of favorable alleles for resistance to Fusarium ear rot were, in general, high. These findings corroborated the quantitative characteristic of resistance to Fusarium ear rot in which many loci have small additive effects. Present and previous results indicate that crucial regions such as 210 to 220 Mb in chromosome 3 and 166 to 173 Mb in chromosome 7 (B73-RefGen-v2) contain QTLs for Fusarium ear rot resistance and fumonisin content.

Funder

Plan Estatal de Ciencia y Tecnologia de España and European Union funds under the FEDER program

Autonomous Government of Galicia

Publisher

Scientific Societies

Subject

Plant Science,Agronomy and Crop Science

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