Frontiers in Plant Science (Apr 2024)

Pooled DNA sequencing in hairy vetch (Vicia villosa Roth) reveals QTL for seed dormancy but not pod dehiscence

  • Neal Tilhou,
  • Lisa Kissing Kucek,
  • Brandon Carr,
  • Joel Douglas,
  • John Englert,
  • Shahjahan Ali,
  • John Raasch,
  • Suresh Bhamidimarri,
  • Steven Mirsky,
  • Maria J. Monteros,
  • Ryan Hayes,
  • Heathcliffe Riday

DOI
https://doi.org/10.3389/fpls.2024.1384596
Journal volume & issue
Vol. 15

Abstract

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IntroductionHairy vetch (Vicia villosa Roth) is a promising legume cover crop, but its use is limited by high rates of pod dehiscence and seed dormancy.MethodsWe used phenotypically contrasting pooled DNA samples (n=24 with 29-74 individuals per sample) from an ongoing cover crop breeding program across four environments (site-year combinations: Maryland 2020, Maryland 2022, Wisconsin 2021, Wisconsin 2022) to find genetic associations and genomic prediction accuracies for pod dehiscence and seed dormancy. We also combined pooled DNA sample genetic association results with the results of a prior genome-wide association study.Results and discussionGenomic prediction resulted in positive predictive abilities for both traits between environments and with an independent dataset (0.34-0.50), but reduced predictive ability for DNA pools with divergent seed dormancy in the Maryland environments (0.07-0.15). The pooled DNA samples found six significant (false discovery rate q-value<0.01) quantitative trait loci (QTL) for seed dormancy and four significant QTL for pod dehiscence. Unfortunately, the minor alleles of the pod dehiscence QTL increased the rate of pod dehiscence and are not useful for marker-assisted selection. When combined with a prior association study, sixteen seed dormancy QTL and zero pod dehiscence QTL were significant. Combining the association studies did not increase the detection of useful QTL.

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