首页> 美国卫生研究院文献>Asian-Australasian Journal of Animal Sciences >Effect of Soybean Meal and Soluble Starch on Biogenic Amine Production and Microbial Diversity Using In vitro Rumen Fermentation
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Effect of Soybean Meal and Soluble Starch on Biogenic Amine Production and Microbial Diversity Using In vitro Rumen Fermentation

机译:体外瘤胃发酵过程中豆粕和可溶性淀粉对生物胺产生和微生物多样性的影响

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摘要

This study was conducted to investigate the effect of soybean meal (SM) and soluble starch (SS) on biogenic amine production and microbial diversity using in vitro ruminal fermentation. Treatments comprised of incubation of 2 g of mixture (expressed as 10 parts) containing different ratios of SM to SS as: 0:0, 10:0, 7:3, 5:5, 3:7, or 0:10. In vitro ruminal fermentation parameters were determined at 0, 12, 24, and 48 h of incubation while the biogenic amine and microbial diversity were determined at 48 h of incubation. Treatment with highest proportion of SM had higher (p<0.05) gas production than those with higher proportions of SS. Samples with higher proportion of SS resulted in lower pH than those with higher proportion of SM after 48 h of incubation. The largest change in NH3-N concentration from 0 to 48 h was observed on all SM while the smallest was observed on exclusive SS. Similarly, exclusive SS had the lowest NH3-N concentration among all groups after 24 h of incubation. Increasing methane (CH4) concentrations were observed with time, and CH4 concentrations were higher (p<0.05) with greater proportions of SM than SS. Balanced proportion of SM and SS had the highest (p<0.05) total volatile fatty acid (TVFA) while propionate was found highest in higher proportion of SS. Moreover, biogenic amine (BA) was higher (p<0.05) in samples containing greater proportions of SM. Histamines, amine index and total amines were highest in exclusive SM followed in sequence mixtures with increasing proportion of SS (and lowered proportion of SM) at 48 h of incubation. Nine dominant bands were identified by denaturing gradient gel electrophoresis (DGGE) and their identity ranged from 87% to 100% which were mostly isolated from rumen and feces. Bands R2 (uncultured bacterium clone RB-5E1) and R4 (uncultured rumen bacterium clone L7A_C10) bands were found in samples with higher proportions of SM while R3 (uncultured Firmicutes bacterium clone NI_52), R7 (Selenomonas sp. MCB2), R8 (Selenomonas ruminantium gene) and R9 (Selenomonas ruminantium strain LongY6) were found in samples with higher proportions of SS. Different feed ratios affect rumen fermentation in terms of pH, NH3-N, CH4, BA, volatile fatty acid and other metabolite concentrations and microbial diversity. Balanced protein and carbohydrate ratios are needed for rumen fermentation.
机译:进行了这项研究,以研究豆粕(SM)和可溶性淀粉(SS)对使用体外瘤胃发酵的生物胺生产和微生物多样性的影响。处理包括孵育2 g包含不同比例的SM与SS的混合物(以10份表示):0:0、10:0、7:3、5:5、3:7或0:10。在孵育0、12、24和48 h时确定体外瘤胃发酵参数,而在孵育48 h时确定生物胺和微生物多样性。 SM比例最高的处理比SS比例高的处理具有更高的(p <0.05)产气量。孵育48小时后,SS含量较高的样品产生的pH值低于SM含量较高的样品。在所有SM上,NH3-N浓度从0到48小时变化最大,而在专用SS上观察到最小。同样,孵育24小时后,专用SS的NH3-N浓度最低。随着时间的推移,观察到甲烷(CH4)浓度增加,且SM含量高于SS时,CH4浓度更高(p <0.05)。 SS和SS的平衡比例具有最高(p <0.05)的总挥发性脂肪酸(TVFA),而丙酸酯的比例最高,而SS比例最高。此外,在含有较大比例SM的样品中,生物胺(BA)较高(p <0.05)。组胺,胺指数和总胺在排他性SM中最高,其次是在48 h孵育中SS比例增加(SM比例降低)的顺序混合物。通过变性梯度凝胶电泳(DGGE)鉴定了九个显性条带,它们的同一性范围为87%至100%,这些条带主要是从瘤胃和粪便中分离出来的。在具有较高比例SM的样品中发现R2带(未培养的细菌克隆RB-5E1)和R4(未培养的瘤胃细菌克隆L7A_C10),而R3(未培养的Firmicutes细菌克隆NI_52),R7(Selenomonas sp。MCB2),R8(Selenomonas)反刍动物基因)和R9(反刍类反刍动物LongY6菌株)的样本中SS含量较高。不同的进料比会影响瘤胃发酵的pH,NH3-N,CH4,BA,挥发性脂肪酸和其他代谢产物浓度以及微生物多样性。瘤胃发酵需要平衡的蛋白质和碳水化合物比率。

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