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Plant diversity effects are robust to cutting severity and nitrogen application in productive grasslands

机译:植物的多样性效应对切割生产性草原的严重程度和氮施用具有鲁棒性

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The replacement of nitrogen fertilizer with nitrogen derived from N_2 fixation offers important economic and environmental advantages. We investigated the effects of plant diversity of grasses and legumes, nutrient application and cutting on ecosystemfunction (aboveground biomass) in a productive grassland system. We varied resource levels (two levels of nitrogen fertilizer) and biomass removal intensity (two levels of cutting height) across a gradient of plant diversity (four species: Lolium perenne, Phleum pratense, Trifolium pratense and Trifolium repens) and relative abundance (varying species proportions) over a period of three years. Aboveground biomass was on average 16.5% greater in mixtures than in monocultures. On average, the yield benefits due to increasing evenness of four species mixtures were at least as big as the effects of increasing nitrogen by 150 kg ha~(-1) yr~(-1). These results indicate the potential of grass-legume mixtures to provide yield benefits at moderate levels of nitrogen application.
机译:用N_2固定衍生的氮肥替代氮肥提供了重要的经济和环境优势。我们调查了植物多样性草和豆类,营养应用和切割在生产草地系统中的生态系统(地上生物量)的影响。植物多样性梯度(四种种类:Lolium Perenne,Phleum Pratense,Trifolium Praidense和Trifolium repens)和相对丰度(不同的物种比例)在三年的时间内。在混合物中平均比单一栽培量平均为16.5%。平均而言,由于四种物种混合物的增加,产生的产量益处至少与氮气增加150kg ha〜(-1)Yr〜(-1)的影响一样大。这些结果表明了基层混合物的潜力,以在中等水平的氮施用中提供产量益处。

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