栽培者と消費者のためにオーツ麦を改良する研究(How Illinois is improving oats for growers and consumers)

2026-08-04 イリノイ大学アーバナ・シャンペーン校

米イリノイ大学の研究チームは、18年間にわたる3地点の圃場試験を分析し、エンバク育種プログラムが収量や品質を着実に向上させてきたことを明らかにした。収量は年1.2%、18年間で1ヘクタール当たり645kg(18ブッシェル/エーカー)増加し、食品用穀粒の価値を左右する容積重も毎年約0.5ポンド/ブッシェル向上した。これらの遺伝的改良は、地域の温暖化や高温ストレスが進む中でも達成された。一方、生殖成長期の高温は収量と容積重を低下させるため、耐暑性のさらなる改良が課題となっている。縞萎縮病ならぬオオムギ黄萎ウイルス(BYDV)への抵抗性は18年間ほぼ維持されていた。今後はゲノム選抜や高速シーケンシングを導入し、気候変動下でも安定生産できる品種育成を目指す。

栽培者と消費者のためにオーツ麦を改良する研究(How Illinois is improving oats for growers and consumers)

<関連情報>

イリノイ大学におけるオート麦( Avena sativa L.)育種の詳細な歴史的表現型および遺伝学的評価 An in-depth historical phenotypic and genetic assessment of oat (Avena sativa L.) breeding at the University of Illinois

Sheila Scheffel, Frederic L. Kolb, Steven R. Scofield, Jason Fiedler, Jessica E. Rutkoski, Juan D. Arbelaez
Crop Science  Published: 28 May 2026
DOI:https://doi.org/10.1002/csc2.70312Digital Object Identifier (DOI)

Abstract

It is essential to evaluate the effectiveness of breeding programs to ensure they continue to deliver value to stakeholders, including farmers, millers, and consumers. We evaluated the performance of the University of Illinois Oat Breeding Program (UIOBP) by quantifying realized genetic trends for key agronomic, grain quality, and disease resistance traits. Additionally, we assessed the effect of heat stress and genetic diversity to inform future breeding decisions. Our analysis integrated genotypic, pedigree, historical weather, and phenotypic data collected over an 18-year period from 2002 to 2019. Genetic trends were estimated using mixed models and the control population method. We quantified genetic correlations, rates of genetic gain, and the effects of temperature on yield and test weight, and assessed genetic diversity using molecular marker data, pedigree reconstruction, and population structure. Significant genetic trends were observed for yield (35.8 kg ha1 year1), test weight (0.63 g L1 year1), heading date (−0.01 days year−1), and plant height (−0.07 cm year1), while barley yellow dwarf virus, groat content, and thins (%) showed no significant change. Genetic diversity analyses revealed weak population structure and slightly reduced effective population size in recent parental lines. Phenotypic analyses showed that high temperatures during critical reproductive periods reduced yield and test weight. The UIOBP has maintained genetic diversity while achieving favorable selection response in yield, test weight, heading time, and plant height; however, limited progress in milling traits highlights areas for improvement. These findings demonstrate the continued value of public oat breeding while informing future breeding efforts.

1204農業及び蚕糸
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