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Energy and protein value of lupin seed as a production ration or as a supplement for sheep fed chaffed wheaten hay

机译:羽扇豆种子的能量和蛋白质价值,可作为生产定量饲料或补充用小麦糠切成的干草的绵羊的补充

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Lupin seed was evaluated as a supplement to cereal hay and as the sole component of a production ration, by measuring energy, nitrogen (N), and carbon balances in 4-6 adult wether sheep. Seven diets of different combinations of lupin seed and chaffed wheaten hay were fed in sequence to 4 sheep. The hay was offered as a restricted ration of 800 g/day with and without 100 g lupin seed/day, and ad libitum with and without 2 levels of lupin seed (100, 400 g/day). In addition, lupin seed alone was offered at near maintenance and ad libitum to 6 sheep. The dry matter (DM) content of the wheaten hay contained 7.7 g N/kg DM and 572 g cell wall organic matter (CWOM), and its gross energy (GE) value was 18.1 MJ/kg DM. The GE was 49% digestible, and its metabolisable energy (ME) value was estimated at 6.4 MJ/kg DM at ad libitum intake levels. Corresponding values for the lupin seed fed alone were 49 g N, 199 g CWOM, 20.1 MJ GE, 86% digestible energy, and 15.7 MJ ME/kg. Ad libitum intakes of wheaten hay were below that required to sustain energy maintenance, but total DM intake was increased substantially with 100 g/day of lupin seed supplement. At higher levels of supplementation some substitution did occur, although the response was variable. Methane production was reduced by increasing the level of lupin seed in the ration, but ME and heat (both expressed in relation to DE) and energy balance (expressed in relation to ME) could each be effectively described by single rectilinear relationships, suggesting that the energy value of lupin seed was similar if used as a production ration or as a supplement. Energy values of lupin seed fed alone compared favourably with published values for other leguminous seeds and some cereal grains. Net availability of ME for gain was estimated to be 61%. Urinary N loss, in terms of apparently digested N or available energy, was very high when lupin seed was fed alone, indicating that protein retention was low compared with legume forages of similar N and cereal grain (e.g. oats). Therefore, although leguminous seeds have rely high levels of protein and obvious potential as energy and N supplements, it may not be valid to presume they are ipso facto important sources of amino acids for ruminants. High energy availability and a low potential for protein deposition would imply a significant diversion of energy into fat with such diets.
机译:通过测量4-6只成年we羊的能量,氮(N)和碳平衡,评估了羽扇豆种子作为谷物干草的补充和生产日粮的唯一组成部分。将七种不同的羽扇豆种子和去皮的小麦干草的饮食依次喂给四只绵羊。干草的限量供应为800克/天,有或没有100克羽扇豆种子/天,有和无2粒羽扇豆种子(100克/天,400克/天)时可以自由采食。此外,仅以羽扇豆种子的价格在接近维持的状态下自由采食了6只绵羊。小麦干草的干物质(DM)含量为7.7 g N / kg DM和572 g细胞壁有机质(CWOM),其总能量(GE)值为18.1 MJ / kg DM。 GE的可消化性为49%,在任意摄入水平下,其代谢能(ME)值估计为6.4 MJ / kg DM。单独饲喂的羽扇豆种子的相应值为49 g N,199 g CWOM,20.1 MJ GE,86%可消化能量和15.7 MJ ME / kg。小麦干草的随意摄入量低于维持能量所需的摄入量,但每天添加100克羽扇豆种子可大大增加DM的总摄入量。在较高的补充水平下,尽管反应是可变的,但确实发生了一些取代。通过增加日粮中羽扇豆种子的含量可以减少甲烷的产生,但是ME和热量(均相对于DE表示)和能量平衡(相对于ME表示)均可通过单个直线关系有效地描述,这表明如果将其用作生产配给品或补充品,则羽扇豆种子的能量值相似。单独饲喂的羽扇豆种子的能量值与其他豆类种子和一些谷物的公布值相比具有优势。 ME的净可用收益估计为61%。当单独饲喂羽扇豆种子时,从表观消化的氮或可利用能量的角度来看,尿中的氮损失非常高,这表明与类似氮素和谷类谷物(例如燕麦)的豆类饲草相比,蛋白质的保留率很低。因此,尽管豆科种子依靠高水平的蛋白质和作为能量和N补充剂的明显潜力,但假定它们是反刍动物氨基酸的重要来源可能是无效的。高能量利用率和低蛋白沉积潜力意味着通过这种饮食将能量大量转化为脂肪。

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    《Animal Production Science》 |1994年第3期|p.331-337|共7页
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