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Updated: Jan 9, 2026

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Published on: May 10, 2020
Characterization of Grain Protein Accumulation Across Different Spikelet Positions and the Mechanisms Underlying
Jianchao Feng1, Beiming Xu1, Dongyun Ma1,2
1College of Agronomy/National Engineering Research Center for Wheat, Henan Agricultural University, Zhengzhou 450046, China.
Abstract:
Understanding protein accumulation responses to the nitrogen (N) fertilizer at different spikelet positions and physiological mechanisms is essential for high-quality, high-yield wheat. We investigated two cultivars, strong-gluten KX3302 and medium-gluten ZM27, under four N regimes: LN-C, LN-S, HN-C, and HN-S. Parameters analyzed included grain weight (GW), grain protein content (GPC), protein fractions, sedimentation value (SV), N metabolism enzymes, endogenous phytohormones, and glutenin gene expression across spikelet positions. Middle/basal grains exceeded apical grains in GW, GPC, α/β-gliadin, HMW-GS, and LMW-GS; γ-gliadin and SV were higher apically/middle. Superior grains (SGs) surpassed inferior grains (IGs) in GW, GPC, fractions, and beneficial phytohormones. N metabolism enzymes and HMW-GS expression peaked midspikelet and in SGs. HN-S enhanced GW, GPC, SV, and fractions versus LN-C (especially SGs), but GW and HMW-GS increased more in IGs, reducing disparities. Stage-optimized high N elevates protein accumulation and quality by regulating hormones, enzymes, and genes, while boosting GW/SV and reducing positional differences.
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