反刍动物全混合日粮营养物质消化率及代谢能预测。

Jeannette Boguhn, H Kluth, O Steinhöfel, Martina Peterhänsel, M Rodehutscord
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引用次数: 17

摘要

本研究的目的是在常规方法的基础上确定预测总混合饲料(TMR)代谢能的方程。奶牛30 TMR的代谢能含量是根据从羊身上获得的可消化粗营养物质来确定的。粗蛋白质、粗脂肪、粗纤维、NDF和ADF的TMR浓度(单位为g/kg DM)分别为118 ~ 234、26 ~ 48、131 ~ 250、281 ~ 488和173 ~ 304。产气量为40.7 ~ 54.1 ml/200 mg DM,酶解有机物为652 ~ 800 g/kg DM。有机物消化率为68.6 ~ 84.0,粗脂肪消化率为55.6 ~ 84.3,粗纤维消化率为55.0 ~ 77.8,NDF消化率为57.6 ~ 77.0,ADF消化率为53.1 ~ 79.6。代谢能变化范围为9.6 ~ 11.9 MJ/kg DM,代谢能变化范围为5.7 ~ 7.4 MJ/kg DM。代谢能含量与粗纤维和酶解有机质浓度及有机质消化率高度相关。基于粗纤维和粗脂肪的多元回归方程预测代谢能具有合理的拟合优度(r2 = 0.81;S (y.x) = 2.4%)。添加中性和酸性洗涤纤维等其他营养物质,产气量都没有提高产品的贴合度。包合酶降解有机物的预测效果最好(r2 = 0.90;S (y.x) = 1.7%)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Nutrient digestibility and prediction of metabolizable energy in total mixed rations for ruminants.

The aim of the present study was to determine equations that predict ME in total mixed rations (TMR) based on routine methods. The ME content of 30 TMR for dairy cows was determined based on digestible crude nutrients obtained with wether sheep. Concentrations in the TMR (in g/kg DM) varied between 118 and 234 for crude protein, 26 and 48 for crude lipid, 131 and 250 for crude fibre, 281 and 488 for NDF, and 173 and 304 for ADF. Gas production ranged from 40.7 to 54.1 ml/200 mg DM, and enzymatically degraded organic matter from 652 to 800 g/kg DM. Digestibility [%] ranged from 68.6 to 84.0 for organic matter, from 55.6 to 84.3 for crude lipid, from 55.0 to 77.8 for crude fibre, from 57.6 to 77.0 for NDF and from 53.1 to 79.6 for ADF. ME ranged from 9.6 to 11.9 MJ/kg DM, and NEL from 5.7 to 7.4 MJ/kg DM. ME content was highly correlated with the concentration of both crude fibre and enzymatically degradable organic matter as well as with organic matter digestibility. A multiple regression equation based on crude fibre and crude lipid predicted ME with a reasonable goodness of fit (r2 = 0.81; s(y.x) = 2.4%). The inclusion of other nutrients, of neutral and acid detergent fibre, neither of gas production did improve the goodness of fit. The best prediction was achieved with inclusion of enzymatically degraded organic matter (r2 = 0.90; s(y.x) = 1.7%).

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