Promising legume-cereal grass mixtures for agroclimatic conditions of the European North of Russia

N. Y. Konovalova, S. Konovalova
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Abstract

The article presents the results of scientific research for 1991–2021 years the North-Western Research Institute of Dairy and Grassland Farming, a separate subdivision of the VolRC RAS (Vologda Research Center of the Russian Academy of Sciences) on the creation of high-yielding legume-cereal grass mixtures for the agroclimatic conditions of the European North of Russia. According to the research results, technologies for growing promising crops (eastern goat, variable alfalfa, festulolium, reed fescue) in single-species and mixed crops have been developed. Bloodless crops of goat and grass mixtures for two mowing ensured the production of 7.2–7.9 t / ha of dry matter. In terms of productivity, single-species crops significantly exceeded mixed crops. From grass mixtures, stand out crops with meadow fescue, hedgehog and awnless rump stood out. The yield of variable alfalfa and grass mixtures with its participation for two mowing ranged from 7.8 to 9.5 t/ ha of dry matter. Significantly inferior to alfalfa by 0.86–1.04 t/ha of dry matter were grass mixtures with timofeevka. Single-species festulolium crops with two-mowing use were significantly inferior in yield to grass mixtures with leguminous grass species by 0.9-4.0 t/ha of SV. Legume-cereal grass mixtures were characterized by an increased protein content (1.7–2.1 times), fat (1.1–1.2 times), reduced fiber (1.2–1.3 times). Harvesting of the first mowing during the budding phase of legumes, the beginning of earing of the festulolium significantly reduced the yield of dry matter by 20% compared with harvesting during the flowering phase. At the same time, the protein content in the plant mass of early mowing increased by 12 % in festulolium, by 21–36 % in festulolium with clover and birdʼsfoot trefoil, and by 3–11 % in herbage with alfalfa. It is effective for three-mowing use to include reed fescue in legume-cereal grass mixtures. Grass mixtures with her participation in three mowing provide yields at the control level (two mowing), and in terms of protein yield per hectare exceed it by 26–31 %.
在俄罗斯欧洲北部农业气候条件下有前景的豆科谷草混合物
文章介绍了俄罗斯科学院沃洛格达研究中心(VolRC RAS)下设的西北奶牛和草地农业研究所 1991-2021 年的科研成果,该研究所致力于为俄罗斯欧洲北部的农业气候条件创造高产的豆科谷草混合物。根据研究成果,开发出了有前景的作物(东山羊、可变紫花苜蓿、苜蓿、苇状羊茅)单一品种和混合作物种植技术。两次刈割的山羊和草混种无血作物可确保每公顷 7.2-7.9 吨干物质的产量。就产量而言,单一品种作物明显超过混合作物。在混合牧草中,草地羊茅、刺猬草和无芒闾草的产量最为突出。紫花苜蓿和草混播的产量各不相同,紫花苜蓿和草混播的干物质产量为 7.8 吨/公顷至 9.5 吨/公顷,而紫花苜蓿和草混播的干物质产量为 7.8 吨/公顷至 9.5 吨/公顷。与 Timofeevka 混播的苜蓿干物质产量比苜蓿低 0.86-1.04 吨/公顷。采用两次刈割的单一品种禾本科牧草的产量明显低于豆科牧草混播的禾本科牧草,每公顷 SV 为 0.9-4.0 吨。豆科谷草混合物的特点是蛋白质含量增加(1.7-2.1 倍),脂肪含量增加(1.1-1.2 倍),纤维含量减少(1.2-1.3 倍)。与开花期收割相比,在豆科植物萌芽期收割第一次刈割的干物质产量明显降低了 20%。同时,早期刈割的羽衣甘蓝植株质量中的蛋白质含量增加了 12%,羽衣甘蓝与三叶草和雀舌三叶草的蛋白质含量增加了 21-36%,与紫花苜蓿的蛋白质含量增加了 3-11%。在豆科-谷类草混合物中加入苇状羊茅可以有效地进行三次刈割。苇状羊茅参与三次刈割的混播草产量与对照水平(两次刈割)相当,每公顷蛋白质产量比对照水平高出 26-31%。
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