首页> 美国卫生研究院文献>Journal of Animal Science >PSI-14 Humic substances alter ammonia production and the microbial populations within a RUSITEC fed a mixed hay – concentrate diet.
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PSI-14 Humic substances alter ammonia production and the microbial populations within a RUSITEC fed a mixed hay – concentrate diet.

机译:PSI-14腐殖质会改变氨的产生并在RUSITEC中饲喂混合干草和浓缩饲料的微生物。

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摘要

The aim of this study was to examine the effects of humic substances on fermentation characteristics and microbial communities using the rumen stimulation technique (RUSITEC). The experiment was conducted as a completely randomized design over a 15-d period with 3 treatments duplicated in 2 runs with 2 replicates per run. Treatments consisted of a control diet (forage:concentrate; 60:40) without humic substances or humic substances added at either 1.5 g/d or 3.0 g/d. Dry matter disappearance, pH, fermentation parameters and gas production were measured from d 8 to 15. Samples for microbial profiling were taken on d 5, 10 and 15 using the digested feed bags for solid-associated microbes (SAM) and fermenter fluid for liquid-associated microbes (LAM). The inclusion of humic substances had no effect ( ≥ 0.19) on DM disappearance, pH or the concentrations of VFA. The production of NH was linearly decreased ( = 0.04) with increasing levels of humic substances in the diet. There was no effect ( ≥ 0.43) of humic substances on total gas, CO or CH production. The number of OTUs was significantly reduced in the 3.0 g/d treatment compared to the control on d 10 and 15; however, the microbial community structure was largely unaffected ( > 0.05). In the SAM samples, the genera XPB1014 group, and were reduced in the 3.0 g/d treatment and , and were increased at d 5, 10, or 15. Within the LAM samples, R-7 and were the most differentially abundant genera between the control and 3.0 g/d HS treatment samples ( < 0.05). This study highlights the potential use of humic substances as a natural feed additive which may play a role in nitrogen metabolism without negatively affecting the ruminal microbiota.
机译:这项研究的目的是使用瘤胃刺激技术(RUSITEC)研究腐殖质对发酵特性和微生物群落的影响。实验是在15天的时间内以完全随机的设计进行的,其中3种治疗重复2次,每次重复2次。处理方法为不添加腐殖质或以1.5 g / d或3.0 g / d添加腐殖质的对照饮食(草料:浓缩; 60:40)。在第8到15天测量干物质的消失,pH,发酵参数和产气量。在第5、10和15天,使用消化后的用于固体伴生微生物的进料袋和用于液体的发酵液对微生物进行分析。 -相关微生物(LAM)。包含腐殖质对DM消失,pH或VFA浓度没有影响(≥0.19)。随着日粮中腐殖质含量的增加,NH的产生呈线性下降(= 0.04)。腐殖质对总气体,CO或CH的产生没有影响(≥0.43)。与第10天和第15天的对照组相比,在3.0 g / d处理中,OTU的数量显着减少。然而,微生物群落结构在很大程度上不受影响(> 0.05)。在SAM样品中,XPB1014属,在3.0 g / d处理中降低,在d 5、10或15时增加,在LAM样品中,R-7和R7是之间差异最大的属。对照和3.0 g / d HS处理样品(<0.05)。这项研究强调了将腐殖质作为天然饲料添加剂的潜在用途,该腐殖质可能在氮代谢中发挥作用,而不会对瘤胃微生物群产生负面影响。

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