4.6 Article

Genome-Wide Association Study Reveals Genetic Architecture and Candidate Genes for Yield and Related Traits under Terminal Drought, Combined Heat and Drought in Tropical Maize Germplasm

期刊

GENES
卷 13, 期 2, 页码 -

出版社

MDPI
DOI: 10.3390/genes13020349

关键词

candidate genes; climate smart; genomics; marker-assisted selection; sub-Saharan Africa

资金

  1. German Academic Exchange Service (DAAD)
  2. Bill and Melinda Gates Foundation [OPP1134248]
  3. Integrated Genotyping Service and Support (IGSS) platform grant of BecA-ILRI, Kenya [PJ-002507]

向作者/读者索取更多资源

The study evaluated 162 tropical maize inbred lines and identified SNP markers and candidate genes associated with the tolerance of maize to combined heat and drought stresses. Some of the SNP markers had pleiotropic effects on multiple traits, and several genes regulating plant responses to various stresses were also identified. These findings provide valuable information for breeding climate smart maize varieties that can adapt to tropical conditions.
Maize (Zea mays L.) production is constrained by drought and heat stresses. The combination of these two stresses is likely to be more detrimental. To breed for maize cultivars tolerant of these stresses, 162 tropical maize inbred lines were evaluated under combined heat and drought (CHD) and terminal drought (TD) conditions. The mixed linear model was employed for the genome-wide association study using 7834 SNP markers and several phenotypic data including, days to 50% anthesis (AD) and silking (SD), husk cover (HUSKC), and grain yield (GY). In total, 66, 27, and 24 SNPs were associated with the traits evaluated under CHD, TD, and their combined effects, respectively. Of these, four single nucleotide polymorphism (SNP) markers (SNP_161703060 on Chr01, SNP_196800695 on Chr02, SNP_195454836 on Chr05, and SNP_51772182 on Chr07) had pleiotropic effects on both AD and SD under CHD conditions. Four SNPs (SNP_138825271 (Chr03), SNP_244895453 (Chr04), SNP_168561609 (Chr05), and SNP_62970998 (Chr06)) were associated with AD, SD, and HUSKC under TD. Twelve candidate genes containing phytohormone cis-acting regulating elements were implicated in the regulation of plant responses to multiple stress conditions including heat and drought. The SNPs and candidate genes identified in the study will provide invaluable information for breeding climate smart maize varieties under tropical conditions following validation of the SNP markers.

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