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在日粮中添加适量纤维可增加远端肠道微生物群的多样性和代谢能力,而不改变生长育肥猪的纤维消化率和生长速度。

Adding Appropriate Fiber in Diet Increases Diversity and Metabolic Capacity of Distal Gut Microbiota Without Altering Fiber Digestibility and Growth Rate of Finishing Pig.

作者信息

Pu Guang, Li Pinghua, Du Taoran, Niu Qing, Fan Lijuan, Wang Huan, Liu Hang, Li Kaijun, Niu Peipei, Wu Chengwu, Zhou Wuduo, Huang Ruihua

机构信息

Institute of Swine Science, Nanjing Agricultural University, Nanjing, China.

Huaian Academy, Nanjing Agricultural University, Huaian, China.

出版信息

Front Microbiol. 2020 Apr 9;11:533. doi: 10.3389/fmicb.2020.00533. eCollection 2020.

Abstract

The digestion ability of pigs to dietary fiber is derived from their intestinal microbiota, especially hindgut microbiota. However, tolerance of pigs to high dietary fiber and the changes of microbiota profile with fiber levels are still unclear. To investigate the changes of gut microbiota with dietary fiber and its relationship with fiber digestibility, we conducted comparative analyses of growth rate, apparent fiber digestibility, gut microbiota and volatile fatty acid (VFA) profiles in Chinese Suhuai pigs feeding diets with different defatted rice bran (DFRB) fiber levels. We found that dietary fiber level had no effect on the growth rate of Suhuai pigs. Although the apparent digestibility of Cellulose, insoluble dietary fiber (IDF) and total dietary fiber (TDF) decreased with dietary fiber level, we found that the apparent digestibility of Cellulose, IDF and TDF of Suhuai pigs was not changed when provided with diet containing 19.10% TDF (as feed basis). The pigs provided with diet containing 19.10% TDF had higher microbial richness, proportions of several fiber-degrading bacteria taxa at genus level and predicted microbial functions (such as carbohydrate metabolism, energy metabolism) in cecum compared to those fed with basal diet. In addition, the fiber-induced increasing of fiber-degrading bacteria promoted the VFAs metabolism, which potentially helped Suhuai pigs to maintain growth rate. However, as TDF reached to 24.11% (as feed basis), the apparent digestibility of fiber decreased and the positive effect on intestine microbiota in caecum were absent. Together, our data suggest that appropriate fiber level could increase the diversity and metabolic capacity of distal gut microbiota to improve the utilization efficiency of fiber resources without altering the growth rate of pigs.

摘要

猪对膳食纤维的消化能力源自其肠道微生物群,尤其是后肠微生物群。然而,猪对高膳食纤维的耐受性以及微生物群谱随纤维水平的变化仍不清楚。为了研究肠道微生物群随膳食纤维的变化及其与纤维消化率的关系,我们对饲喂不同脱脂米糠(DFRB)纤维水平日粮的中国苏淮猪的生长速率、表观纤维消化率、肠道微生物群和挥发性脂肪酸(VFA)谱进行了比较分析。我们发现膳食纤维水平对苏淮猪的生长速率没有影响。尽管纤维素、不溶性膳食纤维(IDF)和总膳食纤维(TDF)的表观消化率随膳食纤维水平降低,但我们发现当提供含19.10%TDF(以饲料为基础)的日粮时,苏淮猪的纤维素、IDF和TDF的表观消化率没有变化。与饲喂基础日粮的猪相比,饲喂含19.10%TDF日粮的猪盲肠中微生物丰富度更高,属水平上几种纤维降解细菌类群的比例更高,预测的微生物功能(如碳水化合物代谢、能量代谢)更强。此外,纤维诱导的纤维降解细菌增加促进了VFA代谢,这可能有助于苏淮猪维持生长速率。然而,当TDF达到24.11%(以饲料为基础)时,纤维的表观消化率下降,对盲肠肠道微生物群的积极作用消失。总之,我们的数据表明,适当的纤维水平可以增加远端肠道微生物群的多样性和代谢能力,以提高纤维资源的利用效率,而不会改变猪的生长速率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6d5c/7160236/ecc266317711/fmicb-11-00533-g001.jpg

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