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本文引用的文献

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Effects of holes in plastic film on the storage losses in total mixed ration silage in round bales.塑料薄膜孔洞对圆捆全混合日粮青贮饲料储存损失的影响
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2
Chemical composition, fermentative losses, and microbial counts of total mixed ration silages inoculated with different Lactobacillus species.接种不同乳酸菌属的全混合日粮青贮的化学成分、发酵损失和微生物计数。
J Anim Sci. 2019 Apr 3;97(4):1634-1644. doi: 10.1093/jas/skz030.
3
Effects of altering total mixed ration conservation method when feeding dry-rolled versus steam-flaked hulled rice on lactation and digestion in dairy cows.改变全混合日粮的保存方式对奶牛泌乳和消化的影响:干压 versus 蒸汽压片处理的带壳糙米。
J Dairy Sci. 2018 Jun;101(6):5092-5101. doi: 10.3168/jds.2017-13802. Epub 2018 Mar 8.
4
A 100-Year Review: Total mixed ration feeding of dairy cows.一个世纪的回顾:奶牛的全混合日粮饲养。
J Dairy Sci. 2017 Dec;100(12):10143-10150. doi: 10.3168/jds.2017-12967.
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Ruminal metabolism of grass silage soluble nitrogen fractions.瘤胃对草青贮可溶性氮部分的代谢。
J Dairy Sci. 2018 Jan;101(1):279-294. doi: 10.3168/jds.2016-12316. Epub 2017 Nov 2.
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Short communication: Influence of various proteolytic sources during fermentation of reconstituted corn grain silages.简报:再水合玉米颗粒青贮发酵过程中不同蛋白源的影响。
J Dairy Sci. 2017 Nov;100(11):9048-9051. doi: 10.3168/jds.2017-12943. Epub 2017 Sep 13.
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Effects of microbial enzymes on starch and hemicellulose degradation in total mixed ration silages.微生物酶对全混合日粮青贮饲料中淀粉和半纤维素降解的影响。
Asian-Australas J Anim Sci. 2017 Feb;30(2):171-180. doi: 10.5713/ajas.16.0046. Epub 2016 Apr 22.
8
Effect of ensiling process of total mixed ration on fermentation profile, nutrient loss and in situ ruminal degradation characteristics of diet.全混合日粮青贮过程对日粮发酵特性、养分损失及瘤胃原位降解特性的影响
Anim Sci J. 2017 Jan;88(1):134-139. doi: 10.1111/asj.12610. Epub 2016 Apr 25.
9
Dynamics Associated with Prolonged Ensiling and Aerobic Deterioration of Total Mixed Ration Silage Containing Whole Crop Corn.含有全株玉米的全混合日粮青贮饲料长时间青贮及有氧变质相关动力学
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Updating the Cornell Net Carbohydrate and Protein System feed library and analyzing model sensitivity to feed inputs.更新康奈尔净碳水化合物和蛋白质系统饲料库并分析模型对饲料输入的敏感性。
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蛋白质源和脂肪补充对育肥牛用全混合日粮青贮饲料保存和饲料价值的影响。

Effects of protein source and lipid supplementation on conservation and feed value of total mixed ration silages for finishing beef cattle.

机构信息

Department of Animal Science, State University of Maringá, Maringá, PR, Brazil.

出版信息

J Anim Sci. 2021 Feb 1;99(2). doi: 10.1093/jas/skab032.

DOI:10.1093/jas/skab032
PMID:33530108
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC7887555/
Abstract

The objective of this study was to examine the conservation process and feed value of total mixed ration (TMR) silages. In exp. 1, we evaluated the fermentation pattern and aerobic stability of TMR silages containing different protein and lipid supplementations. In exp. 2, we compared the performance of finishing beef heifers fed those TMR silages. In both experiments, treatments were as follows: ensiled TMR with urea (U); ensiled TMR without a protein supplement at ensiling, but soybean meal supplemented at feeding to balance diet crude protein (CP) in exp. 2 (SMnf; where the acronym nf indicates nonfermented); ensiled TMR with soybean meal (SM); and ensiled TMR with rolled soybean grain (SG). Thirty-two Nellore heifers (313 ± 8.8 kg shrunk body weight [SBW]) were blocked by initial SBW, housed in individual pens, and enrolled in exp. 2 for 82 d. In exp. 1, treatment without a protein supplement (SMnf) had a lower content of CP, soluble CP, NH3-N, pH, and Clostridium count compared with U (P ≤ 0.03). Lactic acid concentrations tended to be reduced for SMnf compared with U (P = 0.09). Ethanol concentration was reduced in SG compared with SM (P < 0.01). 1,2-Propanediol concentration was increased in SMnf compared with U (P < 0.01), reduced in SM compared with SMnf (P = 0.02), and increased in SG compared with SM (P = 0.02). Dry matter (DM) loss during fermentation was low and similar among treatments (~3.7%). All silages remained stable during 10 d of aerobic exposure after feed out. Considering fermentation traits, such as pH (≤4.72), NH3-N (<10% of N, except for U treatment), butyric acid (<0.05 % DM), and DM losses (<3.70% DM), all silages can be considered well conserved. In exp. 2, diets were isonitrogenous because soybean meal was added to SMnf before feeding. Compared with SM, cattle fed SG made more meals per day (P = 0.04) and tended to have a decreased intermeal interval (P = 0.09). DM intake, average daily gain, final SBW, hot carcass weight, Biceps femoris fat thickness, and serum levels of triglycerides and cholesterol were increased for SG compared with SM (P ≤ 0.05). In brief, TMR silages exhibited an adequate fermentation pattern and high aerobic stability. The supplementation of true protein did not improve animal performance, whereas the addition of soybean grain as a lipid source improved the performance of finishing cattle fed TMR silages.

摘要

本研究旨在探讨全混合日粮(TMR)青贮的保存过程和饲料价值。实验 1 中,我们评估了不同蛋白和脂肪添加物的 TMR 青贮的发酵模式和有氧稳定性。实验 2 中,我们比较了饲喂这些 TMR 青贮的育肥肉牛的性能。在这两个实验中,处理如下:青贮 TMR 中添加尿素(U);青贮 TMR 在青贮时不添加蛋白补充物,但在实验 2 中用豆粕补充以平衡日粮粗蛋白(CP)(SMnf;其中缩写 nf 表示未发酵);青贮 TMR 中添加豆粕(SM);以及青贮 TMR 中添加膨化大豆粒(SG)。32 头内罗尔公牛(313±8.8kg 去水活重[SBW])按初始 SBW 分组,单独饲养,并在实验 2 中进行 82d 试验。实验 1 中,与 U 相比,无蛋白添加物(SMnf)的 CP、可溶 CP、NH3-N、pH 值和梭菌计数较低(P≤0.03)。与 U 相比,SMnf 的乳酸浓度趋于降低(P=0.09)。与 SM 相比,SG 的乙醇浓度降低(P<0.01)。1,2-丙二醇浓度在 SMnf 中比 U 增加(P<0.01),在 SM 中比 SMnf 减少(P=0.02),在 SG 中比 SM 增加(P=0.02)。发酵过程中的干物质(DM)损失较低,各处理间相似(~3.7%)。所有青贮料在饲喂后 10d 的有氧暴露中均保持稳定。考虑到发酵特性,如 pH(≤4.72)、NH3-N(除 U 处理外,<10%的 N)、丁酸(<0.05%DM)和 DM 损失(<3.70%DM),所有青贮料都可以认为保存良好。实验 2 中,由于在饲喂前将豆粕添加到 SMnf 中,日粮的氮含量相同。与 SM 相比,饲喂 SG 的牛每天采食的饲料量增加(P=0.04),采食间隔时间趋于缩短(P=0.09)。与 SM 相比,SG 组牛的干物质采食量、平均日增重、终去水活重、热胴体重、股二头肌脂肪厚度以及血清甘油三酯和胆固醇水平增加(P≤0.05)。总之,TMR 青贮料表现出适宜的发酵模式和较高的有氧稳定性。添加真蛋白并没有改善动物的性能,而添加大豆粒作为脂肪来源则提高了饲喂 TMR 青贮料的育肥牛的性能。