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饲喂不同水平马拉马()豆粕日粮的罗斯308肉鸡盲肠微生物群落、功能多样性和代谢途径

Caecal microbial communities, functional diversity, and metabolic pathways in Ross 308 broiler chickens fed with diets containing different levels of Marama () bean meal.

作者信息

Montso Peter Kotsoana, Mnisi Caven Mguvane, Ayangbenro Ayansina Segun

机构信息

Food Security and Safety Focus Area, Faculty of Natural and Agricultural Sciences, North-West University, Mmabatho, South Africa.

Department of Animal Science, School of Agricultural Sciences, Faculty of Natural and Agricultural Sciences, North-West University, Mmabatho, South Africa.

出版信息

Front Microbiol. 2022 Oct 20;13:1009945. doi: 10.3389/fmicb.2022.1009945. eCollection 2022.

Abstract

The caecum of a chicken harbors complex microbial communities that play vital roles in feed digestion, nutrient absorption, and bird health. Understanding the caecal microbial communities could help improve feed utilization efficiency and chicken product quality and, ultimately, deliver sustainable poultry production systems. Thus, this study assessed the caecal microbial communities and their functional diversity and metabolic pathways in broilers reared on diets containing different levels of marama () bean meal (MBM). A total of 350, day-old male Ross 308 broiler chicks were randomly allocated to five dietary treatments formulated as follows: a soybean-based standard broiler diet (Con_BC); Con_BC in which soybean products were substituted with 7 (M7_BC), 14 (M14_BC), 21 (M21_BC), and 28% (M28_BC) MBM. The dietary treatments were distributed to 35 replicate pens (10 birds each). After 42 days of feeding, the birds were slaughtered and thereafter caecal samples were collected from each replicate pen. Subsequently, the samples were pooled per treatment group for metagenomics sequence analysis. The results revealed that the bacteria domain (99.11%), with Bacteroides, Firmicutes and Proteobacteria being the most prominent phyla (48.28, 47.52, and 4.86%, respectively). Out of 846 genera obtained, the most abundant genera were , , , , , , and At the genus level, the alpha-diversity showed significant ( < 0.05) difference across all treatment groups. Based on the SEED subsystem, 28 functional categories that include carbohydrates (14.65%), clustering-based subsystems (13.01%), protein metabolism (10.12%) were obtained. The KO analysis revealed 183 endogenous pathways, with 100 functional pathways associated with the metabolism category. Moreover, 15 pathways associated with carbohydrates were observed. The glycolysis/gluconeogenesis, galactose metabolism, pyruvate metabolism (15.32, 12.63, and 11.93%) were the most abundant pathways. Moreover, glycoside hydrolases (GH1, GH5, and GH13) were the most prominent carbohydrates-active enzymes. Therefore, results presented in this study suggest that dietary MB meal can improve microbial communities and their functional and metabolic pathways, which may help increase poultry production.

摘要

鸡的盲肠中栖息着复杂的微生物群落,这些群落在饲料消化、营养吸收和禽类健康方面发挥着至关重要的作用。了解盲肠微生物群落有助于提高饲料利用效率和鸡肉产品质量,并最终实现可持续的家禽生产系统。因此,本研究评估了以不同水平的马拉马()豆粕(MBM)为日粮饲养的肉鸡的盲肠微生物群落及其功能多样性和代谢途径。总共350只1日龄的罗斯308雄性肉鸡雏鸡被随机分配到五种日粮处理组,配方如下:以大豆为基础的标准肉鸡日粮(Con_BC);用7%(M7_BC)、14%(M14_BC)、21%(M21_BC)和28%(M28_BC)的MBM替代大豆产品的Con_BC。日粮处理组分配到35个重复栏(每个栏10只鸡)。饲养42天后,宰杀鸡,然后从每个重复栏中采集盲肠样本。随后,将每个处理组的样本合并进行宏基因组序列分析。结果显示,细菌域(99.11%),其中拟杆菌门、厚壁菌门和变形菌门最为突出(分别为48.28%、47.52%和4.86%)。在获得的846个属中,最丰富的属是 、 、 、 、 、 和 。在属水平上,所有处理组的α多样性显示出显著差异( <0.05)。基于SEED子系统,获得了28个功能类别,包括碳水化合物(14.65%)、基于聚类的子系统(13.01%)、蛋白质代谢(10.12%)。KO分析揭示了183条内源性途径,其中100条功能途径与代谢类别相关。此外,观察到15条与碳水化合物相关的途径。糖酵解/糖异生、半乳糖代谢、丙酮酸代谢(分别为15.32%、12.63%和11.93%)是最丰富的途径。此外,糖苷水解酶(GH1、GH5和GH13)是最突出的碳水化合物活性酶。因此,本研究结果表明,日粮中的MB粕可以改善微生物群落及其功能和代谢途径,这可能有助于提高家禽产量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7d17/9630332/60899cb495c2/fmicb-13-1009945-g001.jpg

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