Effects of protozoa on methane production in rumen and hindgut of calves around time of weaning.

U Schönhusen, R Zitnan, S Kuhla, W Jentsch, M Derno, J Voigt
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引用次数: 26

Abstract

Effects of the presence or absence of ciliate protozoa on methanogenesis in the rumen and hindgut were investigated in young calves during a 7-week period. Ten Holstein calves, aged 7 days, were divided in two groups (n = 5) and fed an increasing amount of a commercial milk replacer and small amounts of a calves starter. One group was inoculated with ciliate fauna on two occasions, week 5 and 6, while the second remained ciliate-free. The absence of protozoa in the rumen decreased rumen empty weight (-23%, P < 0.01), and rumen pool size of N (-36%, P < 0.01) and crude fat (-37%, P < 0.05). Rumen bacteria of non-faunated calves contained a higher proportion of total amino acid-N per 16 g N (+3%, P < 0.01) and D-alanine-N per 16 g N (+13%, P < 0.05) compared to faunated calves. Further results contain a reference for a higher bacterial mass in the ciliate-free rumen with an increased number of bacteria adherent to rumen mucosa. The CH4 production in the rumen increased exponentially with the increase in protozoa population size (R2 = 0.68). In presence of 46 x 10(4) protozoa per ml rumen fluid, the in vitro CH4 production of rumen fluid per mol total VFA was about 34% higher in faunated than in non-faunated calves (P < 0.001). Hydrogen (2H) recovery of rumen fermentation was positively correlated (R2 = 0.55) to the CH4 production rate. Methanogens were attached on rumen mucosa. Methanogenesis, induced by rumen mucosa attached bacteria, was stimulated by ruminal protozoa. In the absence of protozoa in the rumen, the acetate-propionate ratio and butyrate proportion of VFA were reduced. In vivo, in the absence of protozoa not only the whole animal CH4 production (-30%, P < 0.05) but also the digestibility of carbohydrates (-4%, P < 0.05) was reduced. Thereby no difference was observed in the intake of ME per kg DM between the groups. In conclusion, the methanogenesis in the rumen, but not in hindgut, is associated with the development of the ruminal protozoa population. The level of methanogenesis (mol/mol VFA) in the hindgut amounts to 20% of the ruminal methanogenesis.

原生动物对断奶前后犊牛瘤胃和后肠甲烷产量的影响。
研究了纤毛虫原生动物存在与否对犊牛瘤胃和后肠甲烷生成的影响,为期7周。选取10头7日龄荷斯坦犊牛,随机分为两组(n = 5),分别递增量饲喂商品代乳剂和少量犊牛发酵剂。第一组在第5周和第6周两次接种纤毛虫,第二组不接种纤毛虫。瘤胃中原生动物的缺失使瘤胃空重(-23%,P < 0.01)、氮池大小(-36%,P < 0.01)和粗脂肪池大小(-37%,P < 0.05)降低。瘤胃细菌中氨基酸-N / 16 g N含量为+3% (P < 0.01), d-丙氨酸-N / 16 g N含量为+13% (P < 0.05)。进一步的结果为无纤毛瘤胃中较高的细菌质量和瘤胃粘膜粘附细菌数量的增加提供了参考。瘤胃CH4产量随原虫数量的增加呈指数增长(R2 = 0.68)。在每ml瘤胃液中存在46 × 10(4)个原生动物的情况下,断奶犊牛瘤胃液中每mol总VFA的体外CH4产量比未断奶犊牛高34% (P < 0.001)。瘤胃发酵氢(2H)回收率与CH4产率呈正相关(R2 = 0.55)。瘤胃粘膜上附着产甲烷菌。瘤胃原生动物刺激瘤胃粘膜附着菌诱导的甲烷生成。瘤胃缺乏原生动物时,VFA的乙酸丙酸比和丁酸比降低。在体内,原生动物的缺失不仅降低了全动物CH4产量(-30%,P < 0.05),而且降低了碳水化合物的消化率(-4%,P < 0.05)。因此,各组之间每千克DM的代谢能摄入量没有差异。综上所述,瘤胃产甲烷与瘤胃原虫种群的发育有关,而与后肠产甲烷无关。后肠产甲烷量(mol/mol VFA)占瘤胃产甲烷量的20%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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