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含柯拉索单宁提取物的奶牛日粮粗蛋白的体外微生物蛋白质合成、瘤胃降解及瘤胃后消化率

In vitro microbial protein synthesis, ruminal degradation and post-ruminal digestibility of crude protein of dairy rations containing Quebracho tannin extract.

作者信息

Castro-Montoya J, Westreicher-Kristen E, Henke A, Diaby M, Susenbeth A, Dickhoefer U

机构信息

Institute of Agricultural Sciences in the Tropics, Animal Nutrition and Rangeland Management in the Tropics and Subtropics, Hohenheim University, Stuttgart, Germany.

Institute of Animal Nutrition and Physiology, Christian-Albrechts-Universität zu Kiel, Kiel, Germany.

出版信息

J Anim Physiol Anim Nutr (Berl). 2018 Feb;102(1):e77-e86. doi: 10.1111/jpn.12704. Epub 2017 Apr 26.

Abstract

This study evaluated the effects of Quebracho tannin extract (QTE) on in vitro ruminal fermentation, chemical composition of rumen microbes, ruminal degradation and intestinal digestibility of crude protein (iCPd). Three treatments were tested, the control (basal diet without QTE), the basal diet with 15 g QTE/kg dry matter (DM) and the basal diet with 30 g QTE/kg DM. The basal diet contained (g/kg DM): 339 grass silage, 317 maize silage and 344 concentrate. In vitro gas production kinetic was determined using the Hohenheim gas test (Experiment 1). The Ankom RF technique, a batch system with automatic gas pressure recordings, was used to determine in vitro production of short-chain fatty acids (SCFA) and ammonia-nitrogen concentration (NH -N), as well as nitrogen and purine bases content in liquid-associated microbes (LAM) and in a residue of undegraded feed and solid-associated microbes (Feed+SAM) (Experiment 2). Ruminal degradation and iCPd were determined using the nylon bag technique and the mobile nylon bag technique, respectively (Experiment 3). Gas production (Experiment 1), total SCFA and NH -N (Experiment 2) decreased with increasing QTE levels. Microbial mass and composition of LAM were not affected by QTE, but total mass of Feed+SAM linearly increased, likely due to decreased substrate degradation with increasing QTE levels. The total amount of N in microbial mass and undegraded feed after the in vitro incubation increased with increasing QTE levels, suggesting a potential greater N flow from the rumen to the duodenum. In contrast to in vivo studies with the same QTE, no effects were detected on ruminal effective degradability and iCPd, when using the nylon bag techniques. Based on the in vitro procedures, QTE increased the supply of N post-rumen; however, some evidence of a decreased fibre degradation were also observed. Therefore, the benefit of adding QTE to diets of cattle is still questionable.

摘要

本研究评估了白坚木单宁提取物(QTE)对体外瘤胃发酵、瘤胃微生物化学成分、瘤胃降解及粗蛋白肠道消化率(iCPd)的影响。试验设置了三个处理组,分别为对照组(基础日粮不含QTE)、基础日粮添加15 g QTE/kg干物质(DM)组和基础日粮添加30 g QTE/kg DM组。基础日粮包含(g/kg DM):339青贮草、317玉米青贮和344精料补充料。采用霍恩海姆产气试验测定体外产气动力学(试验1)。使用安科姆RF技术(一种具有自动气压记录功能的批次系统)测定体外短链脂肪酸(SCFA)产量、氨氮浓度(NH₃-N)以及与液体相关微生物(LAM)和未降解饲料及与固体相关微生物残渣(饲料+SAM)中的氮和嘌呤碱含量(试验2)。分别采用尼龙袋技术和移动尼龙袋技术测定瘤胃降解率和iCPd(试验3)。产气(试验1)、总SCFA和NH₃-N(试验2)随QTE水平升高而降低。QTE对LAM的微生物量和组成没有影响,但饲料+SAM的总质量呈线性增加,这可能是由于随着QTE水平升高底物降解减少所致。体外培养后微生物量和未降解饲料中的总氮量随QTE水平升高而增加,表明从瘤胃到十二指肠的氮流量可能更大。与使用相同QTE的体内研究不同,采用尼龙袋技术时未检测到对瘤胃有效降解率和iCPd的影响。基于体外试验程序,QTE增加了瘤胃后氮的供应;然而,也观察到了纤维降解减少的一些证据。因此,在牛日粮中添加QTE的益处仍值得怀疑。

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