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首页> 外文期刊>Animal Feed Science and Technology >Forage legume species determine the nutritional quality of binary mixtures with perennial ryegrass in the first production year.
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Forage legume species determine the nutritional quality of binary mixtures with perennial ryegrass in the first production year.

机译:饲草豆类物种决定了第一年生产与多年生黑麦草的二元混合物的营养质量。

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There is increasing interest in forage legumes as ruminant feeds in Europe as alternatives to using mineral N fertilizer on temporary grassland. Successful management of grass-legume mixtures depends on the suitability of the forage legume species to the cutting frequency, and its nutritional quality for animals. An experiment was completed in 2004 and 2005 on two sites at the University of Kiel (Germany) to examine the response of legume-perennial ryegrass (Lolium perenne L.) mixtures to cutting frequency in terms of dry matter (DM) yield, N2 fixation, net energy for lactation (NEl), plant cell wall content, and crude protein (CP) content and CP fractions in the first production year. Different legumes in binary mixtures with perennial ryegrass (L. perenne L.), red clover (Trifolium pratense L.), white clover (Trifolium repens L.), hay-type and grazing-type alfalfa (Medicago sativa L.), birdsfoot trefoil (Lotus corniculatus L.), Caucasian clover (Trifolium ambiguum M. Bieb.) and two monocultures of perennial ryegrass (with and without cattle slurry supplying 20 g N/m2) were examined under two cutting frequencies. All legume-grass mixtures outperformed perennial ryegrass with and without slurry in terms of DM yield, irrespective of cutting frequency. Production from both birdsfoot trefoil and Caucasian clover in grass-legume mixtures were very low, similar to unfertilized pure stands of grass, and the low production was consistent with slow and deficient establishment of birdsfoot trefoil and Caucasian clover, as observed by others. Nutritional quality of Caucasian clover was comparable to white clover. The companion grass benefited from the N transferred by forage legumes and their growth habit. This was especially evident for white clover, resulting in the highest companion grass yield and, in consequence, high mixture DM yield in both the 3 and 5 cut systems. Differences in agronomic performance of the legume-grass mixtures, and the grass monocultures, were related to the legume species in the mixture rather than cutting system. Forage legume species determined the nutritional quality and yield of binary mixtures with perennial ryegrass in the first production year.
机译:在欧洲,作为反刍动物饲料的草料豆类作为在临时草原上使用矿物氮肥的替代品,人们越来越感兴趣。草-豆混合物的成功管理取决于饲草豆类物种对砍伐频率的适应性及其对动物的营养质量。 2004年和2005年,在德国基尔大学的两个站点上完成了一项实验,以检验豆类-多年生黑麦草( Lolium perenne 。)混合物对干物质切割频率的响应(DM)产量,N 2 固定,泌乳净能量(NE1),植物细胞壁含量以及粗蛋白质(CP)含量和CP产量在第一年。与多年生黑麦草( Perenne L.),红三叶草( Trifolium pratense L.),白三叶草( Trifolium repens )二元混合物中的不同豆类> L.),干草型和放牧型苜蓿( Medicago sativa L.),鸟足三叶草( Corniculatus L.),高加索三叶草( Trifolium在两个切割频率下检查了两种生长期的黑麦草(有和没有提供20 g N / m 2 的牛粪)和两种多年生黑麦草的单培养。不论切割频率如何,所有豆科植物混合物的干物质产量都优于或不含有浆液的多年生黑麦草。其他人观察到,在草-豆科植物混合物中,禽足三叶草和高加索三叶草的产量都非常低,类似于未施肥的纯草木,低产量与禽足三叶草和高加索三叶草的缓慢缓慢建立有关。高加索三叶草的营养品质与白三叶草相当。伴生草受益于豆类牧草及其生长习性转移的氮。这对于白三叶草尤其明显,导致最高的同伴草产量,因此在3割和5割系统中混合DM的产量都很高。豆科植物和草混合物的农艺性能差异与混合物中的豆类种类有关,而不是与cutting插系统有关。饲草豆类物种在第一年就决定了多年生黑麦草的二元混合物的营养质量和产量。

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