Niu Qing, Pu Guang, Fan Lijuan, Gao Chen, Lan Tingxu, Liu Chenxi, Du Taoran, Kim Sung Woo, Niu Peipei, Zhang Zongping, Li Pinghua, Huang Ruihua
Institute of Swine Science, Nanjing Agricultural University, Nanjing 210095, China.
Huaian Academy of Nanjing Agricultural University, Huaian, 223005, China.
Curr Issues Mol Biol. 2022 Sep 30;44(10):4557-4569. doi: 10.3390/cimb44100312.
Dietary fiber plays an important role in porcine gut health and welfare. Fiber is degraded by microbial fermentation in the intestine, and most gut microbiota related to fiber digestibility in pigs are worth pursuing. The aim of this study was to identify gut microbiota associated with the apparent total tract digestibility (ATTD) of neutral detergent fiber (NDF) and of acid detergent fiber (ADF) in pigs. Large phenotypic variations in the ATTD of NDF and of ADF were separately found among 274 Suhuai pigs. Microbial community structures were significantly different between high and low fiber digestibility groups. Fourteen genera separately dominated the communities found in the high ATTD (H-AD) of NDF and ADF samples and were in very low abundance in the low ATTD (L-AD) of NDF and ADF samples. In conclusion, norank_f__Bacteroidales_S24-7_group (p < 0.05), Ruminococcaceae_UCG-005 (p < 0.05), unclassified_f__Lachnospiraceae (p < 0.05), Treponema_2 (p < 0.01), and Ruminococcaceae_NK4A214_group (p < 0.01) were the main genera of gut microbiota affecting the ATTD of NDF in pigs. Christensenellaceae_R-7_group (p < 0.01), Treponema_2 (p < 0.05), Ruminococcaceae_NK4A214_group (p < 0.05), Ruminococcaceae_UCG-002 (p < 0.05), and [Eubacterium]_coprostanoligenes_group (p < 0.05) were the main genera of gut microbiota affecting the ATTD of ADF in pigs. The most important functions of the above different potential biomarkers were: carbohydrate transport and metabolism, general function prediction only, amino acid transport and metabolism, cell wall/membrane/envelope biogenesis, translation, transcription, replication, energy production and conversion, signal transduction mechanisms, and inorganic ion transport and metabolism. The most important metabolic pathways of the above different potential biomarkers were: membrane transport, carbohydrate metabolism, amino acid metabolism, replication and repair, translation, cell motility, energy metabolism, poorly characterized, nucleotide metabolism, metabolism of cofactors and vitamins, and cellular processes and signaling.
膳食纤维在猪的肠道健康和福利中起着重要作用。纤维在肠道中通过微生物发酵降解,与猪纤维消化率相关的大多数肠道微生物群都值得研究。本研究的目的是鉴定与猪中性洗涤纤维(NDF)和酸性洗涤纤维(ADF)的表观全肠道消化率(ATTD)相关的肠道微生物群。在274头苏淮猪中分别发现NDF和ADF的ATTD存在较大的表型变异。高纤维消化率组和低纤维消化率组之间的微生物群落结构存在显著差异。14个属分别在NDF和ADF样品的高ATTD(H-AD)中占主导地位,而在NDF和ADF样品的低ATTD(L-AD)中丰度极低。总之,无分类阶元的拟杆菌目S24-7群(p<0.05)、瘤胃球菌科UCG-005(p<0.05)、未分类的毛螺菌科(p<0.05)、密螺旋体属2(p<0.01)和瘤胃球菌科NK4A214群(p<0.01)是影响猪NDF的ATTD的主要肠道微生物属。克里斯滕森菌科R-7群(p<0.01)、密螺旋体属2(p<0.05)、瘤胃球菌科NK4A214群(p<0.05)、瘤胃球菌科UCG-002(p<0.05)和真杆菌属粪甾醇生成菌群(p<0.05)是影响猪ADF的ATTD的主要肠道微生物属。上述不同潜在生物标志物的最重要功能是:碳水化合物转运和代谢、仅一般功能预测、氨基酸转运和代谢、细胞壁/膜/包膜生物合成、翻译、转录、复制、能量产生和转换、信号转导机制以及无机离子转运和代谢。上述不同潜在生物标志物的最重要代谢途径是:膜转运、碳水化合物代谢、氨基酸代谢、复制和修复、翻译、细胞运动、能量代谢、特征不明、核苷酸代谢、辅因子和维生素代谢以及细胞过程和信号传导。