葡萄糖处理对豆粕、全脂大豆和大豆籽粒瘤胃干物质和粗蛋白降解特性的影响

Pinar Sacakli, Sakir Doğan Tuncer, Bekir Hakan Koksal, Zehra Selcuk, Kadir Emre Bugdayci
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摘要

对于高产奶牛和肉牛来说,瘤胃蛋白质的高降解率尤其不可取,因为这些动物对蛋白质的需求量很高,而未被瘤胃微生物降解并因此进入小肠的蛋白质量(即所谓的 UDP = 未降解蛋白质)至关重要。本研究使用患有瘤胃瘘管的美利奴公羊(n = 4)来测定葡萄糖处理豆粕(SBM)、全脂大豆(FFSB)和大豆种子(SBS)对干物质(DM)和粗蛋白(CP)的瘤胃降解性的影响。将所有这些饲料磨碎,加水稀释并加热(2 小时;100 摄氏度),不添加或添加 2% 或 3% 葡萄糖(每公斤干饲料添加 20 或 30 克葡萄糖)。瘤胃降解性的测定采用尼龙袋技术(培养时间:2-48 小时)。总的来说,葡萄糖处理降低了三种豆制品中蛋白质的瘤胃降解性。在 FFSB 中,CP 消失率在培养 8 小时后开始下降,而在 SBM(+ 3% 葡萄糖)和 SBS(+ 2 或 3% 葡萄糖)中,CP 消失率的下降与时间无关。此外,葡萄糖处理显著降低了所有饲料的 DM 和 CP 的有效降解率(Pe),当葡萄糖含量增加时,降解率的降低更为明显。当添加 3% 的葡萄糖时,CP 的有效降解率分别降低了 6%(FFSB)、16%(SBM)和 18%(SBS)。葡萄糖补充剂(包括水和热处理)所产生的效果可以解释为葡萄糖在这些条件下的还原活性。
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The effect of glucose treatment on ruminal dry matter and crude protein degradability characteristics of soybean meal, full fat soybean and soybean seed.

A high ruminal protein degradation is especially undesirable in high producing dairy cows and beef cattle, since these animals have high requirements of protein and the amount of protein that is not degraded by ruminal microorganisms and therefore enters the small intestine (so-called UDP = undegraded protein) is crucial. In this study, Merino rams with ruminal fistulas were used (n = 4) to determine the effect of glucose treatment of soybean meal (SBM), full fat soybean (FFSB) and soybean seed (SBS) on the ruminal degradability of dry matter (DM) and crude protein (CP). All these feedstuffs were grinded, diluted with water and heated (2 h; 100 degrees C) either without or with supplementation of 2 or 3% glucose (20 or 30 g glucose per kg dry feed). For the determination of the ruminal degradability nylon bag technique was used (incubation times: 2-48 h). In general ruminal degradability of protein in all three soy products was reduced by glucose treatment. In FFSB CP disappearance started to decrease after 8 h of incubation, whereas in SBM (+ 3% glucose) and SBS (+ 2 or 3% glucose) reduction of CP disappearance were time-independent. Further, effective degradability (Pe) of DM and CP of all feedstuffs were significantly reduced by glucose treatment, with the reduction being more pronounced when the glucose level was increased. When adding 3% of glucose, the Pe for CP was reduced by 6 (FFSB), 16 (SBM) and 18% (SBS), respectively. Explanation for the observed effects of a glucose supplementation (incl. water and heat treatment) is the reductive activity of glucose within these conditions.

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