Journal of the Science of Food and Agriculture · 1966 · 729 citations · 13 references
Plant ProteinsEngineeringBotanyTanninBuffering Capacity ValuesItalian RyegrassAgricultural EconomicsBuffering ConstituentsPlant NutritionSeed StorageCrop PhysiologyPlant Physiology
Italian ryegrass primarily buffers with malate and citrate, whereas red clover relies mainly on glycerate and malate. Buffering capacity varied across species, with silages showing two‑to‑threefold higher values; anions accounted for 68–88 % of buffering, proteins 10–20 %, and organic acids—especially glycerate in clover—were the main contributors, while ensilage increased buffering mainly through lactate and acetate formation as malate, citrate, and glycerate were degraded.
Abstract The buffering capacity values of several herbage species and of silage made from this herbage, and the contributions of plant constituents to this buffering, between pH 4 and 6, were determined, and found to vary with the herbage species; values in the silages were normally two to three times greater than those in the plant materials. The anion fraction of the plant materials accounted for 68–80% of the total buffering capacity, and for 73–88% in the silages. Buffering caused by plant proteins was estimated to be 10–20% of the total buffering capacity. The buffering capacity of wilted red clover ( Trifolium pratense ) was 18% lower than that of fresh red clover, and the total organic acid content of wilted clover was also lower than that in fresh clover. The organic acids were responsible for most of the buffering effect in herbages and silages. In Italian ryegrass (Lolium multiflorum), the main buffers were malate and citrate, but, in red clover, glycerate and malate were the main buffers. The clovers studied contained a high level of glycerate (4% of dry matter). During ensilage, malate, citrate and glycerate were extensively broken down. The increased buffering capacity during ensilage was caused mainly by the formation of lactates and acetates.
13