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瘤胃内袋式消化技术的微生物学评估

Microbiological evaluation of the intraruminal in sacculus digestion technique.

作者信息

Meyer J H, Mackie R I

出版信息

Appl Environ Microbiol. 1986 Mar;51(3):622-9. doi: 10.1128/aem.51.3.622-629.1986.

Abstract

The influence of nature of the feed sample, feeding frequency and pore size on the influx of bacteria and protozoa into synthetic fiber bags suspended in the rumens of sheep fed different diets was studied. Counts of total culturable bacteria in bags with a pore size of 10 microns were less than 30% of the ruminal counts for animals that were fed the lucerne hay and high-roughage diets. The maximum count (62 and 82% of the ruminal count) for these specific diets was obtained by using bags with a pore size of 53 microns. Protozoal counts in bags with pore sizes of 30 and 53 microns were equal to or higher than the ruminal counts for the lucerne hay and high-roughage diets but less than half of the ruminal count for the low-roughage diet. An interaction between incubation time, feeding frequency of the host animals, and the microbial populations developing inside the bags was also demonstrated. The results clearly show that the microbial population inside the bag differed from that of the surrounding ruminal ingesta and that caution must be taken in interpreting results on feed evaluation and especially on rates of degradation when using the in sacculus technique. Factors influencing the influx of bacteria and protozoa into bags with different pore sizes and containing a variety of substrates are discussed together with suggestions for the use of this technique.

摘要

研究了饲料样本性质、饲喂频率和孔径对细菌和原生动物流入悬浮在饲喂不同日粮的绵羊瘤胃中的合成纤维袋的影响。对于饲喂苜蓿干草和高粗饲料日粮的动物,孔径为10微米的袋子中可培养细菌总数不到瘤胃细菌数的30%。对于这些特定日粮,使用孔径为53微米的袋子可获得最大细菌数(瘤胃细菌数的62%和82%)。孔径为30和53微米的袋子中的原生动物数等于或高于苜蓿干草和高粗饲料日粮的瘤胃原生动物数,但不到低粗饲料日粮瘤胃原生动物数的一半。还证明了孵育时间、宿主动物的饲喂频率与袋子内生长的微生物种群之间存在相互作用。结果清楚地表明,袋子内的微生物种群与周围瘤胃内容物不同,在解释饲料评价结果,尤其是使用瘤胃袋技术时的降解率结果时必须谨慎。讨论了影响细菌和原生动物流入具有不同孔径且含有多种底物袋子中的因素,并对该技术的使用提出了建议。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/73fa/238929/5b53d249c710/aem00138-0175-a.jpg

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