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Hairy vetch (Vicia villosa Roth) germplasm contains a cryptic second species (Vicia varia Host)

  • Neal Tilhou
  • , Lisa Kissing Kucek
  • , Virginia Moore
  • , Solveig Hanson
  • , Chris Reberg-Horton
  • , Matthew R. Ryan
  • , Nancy Jo Ehlke
  • , Amy Bartow
  • , Brandon Carr
  • , Joel Douglas
  • , John Englert
  • , John Raasch
  • , Alyssa J. Woodard
  • , Jamie Crawford
  • , Ryan Crawford
  • , Shahjahan Ali
  • , Suresh Bhamidimarri
  • , Steven Mirsky
  • , Maria J. Monteros
  • , Gerry Moore
  • Audrey V. Gamble, Nithya Rajan, Sruthi Narayanan, Erin R. Haramoto, Nicholas T. Basinger, Virginia R. Sykes, Amanda McWhirt, Mark S. Reiter, Heathcliffe Riday

Producción científica: Articlerevisión exhaustiva

1 Cita (Scopus)

Resumen

Hairy vetch is a promising legume cover crop (Vicia villosa Roth) for the northern United States. Based on evidence from molecular markers, multi-site evaluations, and morphological observations, a distinct second species exists within US hairy vetch germplasm, referred to hereafter as smooth vetch (Vicia varia Host). Morphologically, hairy vetch is highly variable, but this study found statistically significant differences between smooth and hairy vetch in visual pubescence scores, plant maturity, and calyx lobe lengths. We used a panel of single sequence repeat (SSR) markers to assign cultivars and breeding materials to the two species and found that many commercial cultivars are smooth vetch. Interestingly, the SSR panel indicated that woollypod vetch (Vicia dasycarpa Ten.) is a subpopulation of hairy vetch. Based on an elastic net model trained with multi-site trial results from >35 site-years, smooth vetch is not winter hardy in the northern United States but has superior performance relative to hairy vetch in the south-central and Pacific Northwest United States. Specifically, smooth vetch has greater performance in environments with mild winters, cool spring temperatures, or low clay soils. Because of these differences in adaptation, differentiating these species will greatly improve agronomic outcomes and accelerate ongoing cover crop breeding progress.

Idioma originalEnglish
Número de artículoe21455
Número de páginas13
PublicaciónCrop Science
Volumen65
N.º1
DOI
EstadoPublished - ene 1 2025

Nota bibliográfica

Publisher Copyright:
© 2025 The Author(s). Crop Science © 2025 Crop Science Society of America. This article has been contributed to by U.S. Government employees and their work is in the public domain in the USA.

Financiación

We would like to thank all of the managers of the trials used in this study. Financial support was received from by USDA‐ARS Projects 5090‐21000‐001‐00D, USDA‐NIFA grants 2018‐67013‐27570 and 2015‐51300‐24192. We would like to thank all of the managers of the trials used in this study. Financial support was received from by USDA-ARS Projects 5090-21000-001-00D, USDA-NIFA grants 2018-67013-27570 and 2015-51300-24192.

FinanciadoresNúmero del financiador
US Department of Agriculture National Institute of Food and Agriculture, Agriculture and Food Research Initiative2015‐51300‐24192, 2018‐67013‐27570
US Department of Agriculture National Institute of Food and Agriculture, Agriculture and Food Research Initiative
USDA-Agricultural Research Service5090-21000-001-00D
USDA-Agricultural Research Service

    ASJC Scopus subject areas

    • Agronomy and Crop Science

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