Grain Yield Stability of Spring Bread Wheat Under Contrasting Moisture Conditions: A Six-Year AMMI Analysis in the Non-Chernozem Zone of Russia

Grain yield stability is a key requirement for spring bread wheat (Triticum aestivum L.) in the Non-Chernozem Zone of Russia, where interannual variation in moisture and heat supply generates substantial genotype × environment interaction (G × E). Six genotypes were evaluated across six growing seasons (2019–2024) at a single site in the Moscow region. Stability analyses (AMMI, WAAS, YSI and HMRP) were applied to grain yield only; phenology, plant height and 1000-kernel weight were characterised by means, coefficients of variation and LSD values. Seasons differed markedly: vegetation-period precipitation ranged from 182.8 to 547.0 mm and the seasonal hydrothermal coefficient from 1.1 to 3.8. Mean yield ranged from 3.21 t ha−1 (Line No. 153) to 3.87 t ha−1 (Zlata), with a grand mean of 3.58 t ha−1. IPCA1 and IPCA2 explained 73.5% and 20.4% of the G × E sum of squares. Zlata had the highest mean yield, within the LSD of Line No. 178, together with the lowest YSI (3), whereas Line No. 178 showed the highest single-year yield (7.03 t ha−1) and the greatest variability (CV = 45.6%). Precipitation during emergence–heading was most closely related to the interaction gradient (r = −0.875). Exploratory marker–IPCA1 associations were partly confounded with germplasm origin and require validation in larger, multi-location datasets.

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Journal
Agronomy
Published
2026-09-14
DOI
https://doi.org/10.3390/agronomy16181802
Primary Topic
Genetics and Plant Breeding
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article
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article

Grain Yield Stability of Spring Bread Wheat Under Contrasting Moisture Conditions: A Six-Year AMMI Analysis in the Non-Chernozem Zone of Russia

М.Г. Дивашук, Pavel Yu. Kroupin, А.Г. Черноок, Daniyar Tajibayev et al.
Agronomy
Genetics and Plant Breeding
article

Grain Yield Stability of Spring Bread Wheat Under Contrasting Moisture Conditions: A Six-Year AMMI Analysis in the Non-Chernozem Zone of Russia

М.Г. Дивашук, Pavel Yu. Kroupin, А.Г. Черноок, Daniyar Tajibayev, Gennady I. Karlov, Vladimir Igonin, Boburjon B. Najodov, Elena Vertikova
article en

Abstract

Grain yield stability is a key requirement for spring bread wheat (Triticum aestivum L.) in the Non-Chernozem Zone of Russia, where interannual variation in moisture and heat supply generates substantial genotype × environment interaction (G × E). Six genotypes were evaluated across six growing seasons (2019–2024) at a single site in the Moscow region. Stability analyses (AMMI, WAAS, YSI and HMRP) were applied to grain yield only; phenology, plant height and 1000-kernel weight were characterised by means, coefficients of variation and LSD values. Seasons differed markedly: vegetation-period precipitation ranged from 182.8 to 547.0 mm and the seasonal hydrothermal coefficient from 1.1 to 3.8. Mean yield ranged from 3.21 t ha−1 (Line No. 153) to 3.87 t ha−1 (Zlata), with a grand mean of 3.58 t ha−1. IPCA1 and IPCA2 explained 73.5% and 20.4% of the G × E sum of squares. Zlata had the highest mean yield, within the LSD of Line No. 178, together with the lowest YSI (3), whereas Line No. 178 showed the highest single-year yield (7.03 t ha−1) and the greatest variability (CV = 45.6%). Precipitation during emergence–heading was most closely related to the interaction gradient (r = −0.875). Exploratory marker–IPCA1 associations were partly confounded with germplasm origin and require validation in larger, multi-location datasets.

AgronomyVol. 16(18)
Russian State Agrarian University - Moscow Timiryazev Agricultural Academy (RU), Moscow State Agroengineering University named after V.P. Goryachkin (RU), All-Russian Scientific Research Institute of Food Biotechnology (RU), Astana Medical University (KZ)
Openalex Percentile: Top 13%
Genetics and Plant Breeding
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