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首页> 外文期刊>Archives of Animal Nutrition >Effect of cellobiose supplementation and dietary soluble fibre content on in vitro caecal fermentation of carbohydrate-rich substrates in rabbits
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Effect of cellobiose supplementation and dietary soluble fibre content on in vitro caecal fermentation of carbohydrate-rich substrates in rabbits

机译:纤维二糖补充剂和膳食可溶性纤维含量对兔富含碳水化合物的含碱基菌的体外粘性发酵的影响

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The in vitro caecal fermentation of five substrates low in starch and protein content [d-(+)-glucose (GLU), d-cellobiose (CEL), sugar beet pectin (PEC), sugar beet pulp (SBP) and wheat straw (WS)] was investigated using soft faeces from rabbits receiving different levels of cellobiose and soluble fibre as inoculum. A total of 24 rabbits were supplemented 3 levels of cellobiose in the drinking water (0.0, 7.5, 15.0g/l) and fed two experimental diets containing either low soluble fibre (LSF) or high soluble fibre (HSF) levels (84.0 and 130g/kg dry matter). All substrates were subjected to a two-step pepsin/pancreatin in vitro pre-digestion, and the whole residue was used as substrate for the in vitro incubations. Gas production was measured until 144h, and volatile fatty acid (VFA) production was determined at 24h incubation. Experimental treatments did not affect SBP fermentation and had only a subtle influence on fermentation of WS and GLU. In contrast, cellobiose supplementationxdonors' diet interactions were detected for most gas production parameters for CEL. Both the fractional gas production (k) and maximal gas production rates were linearly increased (p0.042) and the initial delay in the onset of gas production (Lag) linearly decreased (p&0.001) by cellobiose supplementation with the HSF inoculum, with no differences between the 7.5 and 15.0 doses. In contrast, with the LSF inoculum cellobiose supplementation only affected k values, which were quadratically increased (p=0.043) and had maximal values for the 7.5 dose. A quadratic effect (p0.018) of cellobiose supplementation was observed for total VFA production at 24h when CEL and PEC were fermented, obtaining the maximal VFA production for the 7.5 dose of cellobiose. Total VFA production for CEL was greater with LSF than with HSF inoculum (20.7 vs. 12.9mmol/l; p=0.014), but the opposite was found for WS (3.97 vs. 6.21mmol/l; p=0.005). The use of LSF inoculum for CEL fermentation sharply reduced acetate (p=0.001) and increased butyrate proportions (p0.001) compared with the HSF inoculum. A positive relationship between total VFA caecal concentrations in rabbits receiving the same experimental treatments and in vitro values was only observed when WS was used as substrate (r=0.90; p=0.015; n=6). The results suggest that experimental factors influenced the fermentative activity of caecal digesta, but the observed response differed with the incubated substrate, being the CEL the most affected.
机译:在淀粉和蛋白质含量中的五个底物中的体外粘性发酵[D - (+) - 葡萄糖(Glu),D-纤维糖(CEL),糖束果胶(PEC),甜菜纸浆(SBP)和小麦秸秆(使用来自兔子的软粪便研究了接受不同水平的纤维二糖和可溶性纤维作为接种物的研究。饮用水中共有3种兔子在饮用水中(0.0,7.5,15.0g / L),并喂食含有低可溶性纤维(LSF)或高可溶性纤维(HSF)水平的实验饮食(84.0和130g / kg干物质)。将所有底物均进行两步百合素/胰岛素体外消化,并且整个残余物用作体外孵育的底物。测量气体生产直至144h,并在24h温育时测定挥发性脂肪酸(VFA)产生。实验治疗不影响SBP发酵,对WS和Glu发酵进行微妙的影响。相比之下,对CEL的大多数天然气生产参数检测了Cellobiose补充剂的饮食相互作用。分数气体生产(K)和最大气体生产率均线性增加(P0.042)和气体生产(滞后)发作的初始延迟通过纤维生成的纤维素(P& 0.001)用HSF inoculum进行了线性降低(P& 0.001) ,7.5和15.0剂之间没有差异。相反,随着LSF接种纤维二糖补充,只​​有受影响的K值,其二次增加(P = 0.043)并且具有7.5剂量的最大值。当发酵时,在24小时内,观察到纤维二糖补充的二次效果(P0.018),在发酵时,获得7.5剂量纤维素的最大VFA产生。对于LSF而不是HSF接种物(20.7与12.9mmol / L; P = 0.014),但对于WS(3.97与6.21mmol / L; p = 0.005)发现相反的vFa生产总值越大与HSF接种物相比,使用对CELF接种物进行醋酸纤维(P = 0.001)并增加丁酸盐比例(P0.001)。当使用WS用作底物时,才观察到接受相同实验处理和体外值的兔中总VFA粘颈浓度之间的阳性关系(r = 0.90; p = 0.015; n = 6)。结果表明,实验因素影响了粘颈椎间的发酵活性,但观察到的反应与培养的底物不同,是最受影响的含量。

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