Genome-wide association implicates numerous genes underlying ecological trait variation in natural populations of Populus trichocarpa

Athena D. Mckown, Jaroslav Klápště, Robert D. Guy, Armando Geraldes, Ilga Porth, Jan Hannemann, Michael Friedmann, Wellington Muchero, Gerald A. Tuskan, Jürgen Ehlting, Quentin C.B. Cronk, Yousry A. El-Kassaby, Shawn D. Mansfield, Carl J. Douglas

Research output: Contribution to journalArticlepeer-review

140 Scopus citations

Abstract

In order to uncover the genetic basis of phenotypic trait variation, we used 448 unrelated wild accessions of black cottonwood (Populus trichocarpa) from much of its range in western North America. Extensive data from large-scale trait phenotyping (with spatial and temporal replications within a common garden) and genotyping (with a 34 K Populus single nucleotide polymorphism (SNP) array) of all accessions were used for gene discovery in a genome-wide association study (GWAS). We performed GWAS with 40 biomass, ecophysiology and phenology traits and 29 355 filtered SNPs representing 3518 genes. The association analyses were carried out using a Unified Mixed Model accounting for population structure effects among accessions. We uncovered 410 significant SNPs using a Bonferroni-corrected threshold (P < 1.7 × 10-6). Markers were found across 19 chromosomes, explained 1-13% of trait variation, and implicated 275 unique genes in trait associations. Phenology had the largest number of associated genes (240 genes), followed by biomass (53 genes) and ecophysiology traits (25 genes). The GWAS results propose numerous loci for further investigation. Many traits had significant associations with multiple genes, underscoring their genetic complexity. Genes were also identified with multiple trait associations within and/or across trait categories. In some cases, traits were genetically correlated while in others they were not.

Original languageEnglish
Pages (from-to)535-553
Number of pages19
JournalNew Phytologist
Volume203
Issue number2
DOIs
StatePublished - Jul 2014

Keywords

  • Biomass
  • Ecophysiology
  • Genome-wide association study (GWAS)
  • Phenology
  • Pleiotropy
  • Poplar
  • Single nucleotide polymorphisms (SNP) array
  • Unified Mixed Model

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