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Net effects of nitrogen fertilization on the nutritive value and digestibility of oat forages~1

机译:氮肥对燕麦饲草营养价值和消化率的净影响〜1

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摘要

Applications of soil amendments containing N are part of routine forage-management strategies for grasses, with a primary goal of increasing forage yield. However, the effects of N fertilization on forage nutritive value, estimates of energy density, and in vitro dry matter or neutral detergent fiber disappearance sometimes have been erratic or inconsistent. Our objectives were to evaluate the effects of N fertilization on the nutritive value of a single cultivar (ForagePlus, Kratz Farms, Slinger, WⅠ) of fall-grown oat fertilized at plant-ing with 20, 40, 60, 80, or 100 kg of N/ha of urea or 2 rates of dairy slurry (42,300 or 84,600 L/ha). Nitrogen fertilization exhibited consistent effects on fiber com-ponents; forages fertilized with urea or dairy slurry had greater concentrations of fiber components compared with those harvested from unfertilized check plots (0 kg of N/ha), and fiber concentrations increased linearly with urea fertilization rate. In contrast, concentrations of water-soluble carbohydrates were greatest for unfer-tilized forages (21.2%), but declined linearly with urea fertilization, exhibiting a minimum of 13.5% at the 80 kg of N/ha urea application rate. Similarly, nonfiber carbohydrates also declined linearly, from 34.8% for unfertilized check plots to a minimum of 24.6% at the 80 kg of N/ha urea application rate. Fertilization with urea resulted in consistent linear increases in crude protein (CP), neutral detergent soluble CP, neutral de-tergent insoluble CP, and acid detergent insoluble CP; however, the partitioning of CP on the basis of associa-tion with specific fiber fractions could not be related to N fertilization when concentrations were expressed on a percentage of CP basis. The summative calcula-tion of energy, expressed as total digestible nutrients was closely related to N fertilization rate during both the 2013 (y = -0.038x + 72.2; R~2 = 0.961) and 2014 (y = -0.040x + 69.2; R~2 = 0.771) production years. Following 30- or 48-h incubations in buffered rumen fluid, in vitro dry matter disappearance was greater for unfertilized forages compared with those fertilized with either urea or dairy slurry, and disappearance declined linearly with urea fertilization rate; however, these responses were not detected for neutral detergent fiber disappearance. Overall, the forage nutritive value of fall-grown oat declined mildly in response to N fer-tilization, but these responses were not nearly strong enough to offset the advantages obtained by improved forage yields.
机译:含氮土壤改良剂的应用是常规草料饲草管理策略的一部分,其主要目标是提高草料产量。但是,氮肥对饲草营养价值,能量密度的估计以及体外干物质或中性洗涤剂纤维消失的影响有时不稳定或不一致。我们的目标是评估氮肥对种植20、40、60、80或100千克施肥的落葵燕麦单一品种(ForagePlus,Krtz Farms,Slinger,WⅠ)的营养价值的影响。 N / ha的尿素或2倍的乳浆(42,300或84,600 L / ha)。氮肥对纤维成分表现出一致的影响。与从未施肥的小块土地上收获的肥料(0 kg N / ha)相比,用尿素或奶浆施肥的牧草的纤维成分浓度更高,且纤维浓度随尿素施肥速率线性增加。相比之下,未施肥草料的水溶性碳水化合物浓度最高(21.2%),但随尿素施肥量线性下降,在氮素/公顷尿素施用量为80千克时,其最低含量为13.5%。同样,非纤维碳水化合物也呈线性下降,从未施肥的检查地块中的34.8%降至在80千克氮/公顷尿素施用量下的最低24.6%。用尿素施肥会导致粗蛋白(CP),中性去污剂可溶性CP,中性去污剂不溶性CP和酸性去污剂不溶性CP线性一致增加;但是,当浓度以CP的百分比表示时,基于CP与特定纤维组分的关联而进​​行的CP分配与氮肥无关。在2013年(y = -0.038x + 72.2; R〜2 = 0.961)和2014年(y = -0.040x + 69.2; 2014年(y = -0.038x + 72.2; R〜2 = 0.961);以总可消化营养素表示的能量总和与氮肥利用率密切相关。 R〜2 = 0.771)生产年限。在缓冲瘤胃液中孵育30或48小时后,未施肥草料的体外干物质消失率高于用尿素或乳浆施肥的草料,其消失随尿素施肥率线性下降。但是,对于中性洗涤剂纤维的消失,未检测到这些响应。总体而言,落氮燕麦的饲用营养价值因氮肥的施用而略有下降,但这些响应强度不足以抵消因饲草产量提高而带来的优势。

著录项

  • 来源
    《Journal of dairy science》 |2017年第3期|1739-1750|共12页
  • 作者单位

    US Dairy Forage Research Center, USDA-Agricultural Research Service, Marshfield, Wl 54449;

    Department of Dairy Science, University of Wisconsin-Madison, Madison 53706;

    Marshfield Agricultural Research Station, University of Wisconsin, Marshfield 54449;

    US Dairy Forage Research Center, USDA-Agricultural Research Service, Marshfield, Wl 54449;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    N fertilization; oat forage; nutritive value;

    机译:氮肥燕麦草料;营养价值;
  • 入库时间 2022-08-17 23:22:46

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