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鸸鹋(Dromaius novaehollandiae)十二指肠、空肠和回肠中的微生物多样性和代谢功能。

Microbial diversity and metabolic function in duodenum, jejunum and ileum of emu (Dromaius novaehollandiae).

机构信息

Avian Research Centre, Faculty of Land and Food Systems, University of British Columbia, 2357 Main Mall, Vancouver, BC, V6T 1Z4, Canada.

School of Public Health, Li Ka Shing, Faculty of Medicine, HKU-Pasteur Research Pole, University of Hong Kong, Pok Fu Lam, Hong Kong SAR, China.

出版信息

Sci Rep. 2023 Mar 18;13(1):4488. doi: 10.1038/s41598-023-31684-8.

Abstract

Emus (Dromaius novaehollandiae), a large flightless omnivorous ratite, are farmed for their fat and meat. Emu fat can be rendered into oil for therapeutic and cosmetic use. They are capable of gaining a significant portion of its daily energy requirement from the digestion of plant fibre. Despite of its large body size and low metabolic rate, emus have a relatively simple gastroinstetinal (GI) tract with a short mean digesta retention time. However, little is known about the GI microbial diversity of emus. The objective of this study was to characterize the intraluminal intestinal bacterial community in the different segments of small intestine (duodenum, jejunum, and ileum) using pyrotag sequencing and compare that with the ceca. Gut content samples were collected from each of four adult emus (2 males, 2 females; 5-6 years old) that were free ranged but supplemented with a barley-alfalfa-canola based diet. We amplified the V3-V5 region of 16S rRNA gene to identify the bacterial community using Roche 454 Junior system. After quality trimming, a total of 165,585 sequence reads were obtained from different segments of the small intestine (SI). A total of 701 operational taxonomic units (OTUs) were identified in the different segments of small intestine. Firmicutes (14-99%) and Proteobacteria (0.5-76%) were the most predominant bacterial phyla in the small intestine. Based on species richness estimation (Chao1 index), the average number of estimated OTUs in the small intestinal compartments were 148 in Duodenum, 167 in Jejunum, and 85 in Ileum, respectively. Low number of core OTUs identified in each compartment of small intestine across individual birds (Duodenum: 13 OTUs, Jejunum: 2 OTUs, Ileum: 14 OTUs) indicated unique bacterial community in each bird. Moreover, only 2 OTUs (Escherichia and Sinobacteraceae) were identified as core bacteria along the whole small intestine. PICRUSt analysis has indicated that the detoxification of plant material and environmental chemicals seem to be performed by SI microbiota, especially those in the jejunum. The emu cecal microbiome has more genes than SI segments involving in protective or immune response to enteric pathogens. Microbial digestion and fermentation is mostly in the jejunum and ceca. This is the first study to characterize the microbiota of different compartments of the emu intestines via gut samples and not fecal samples. Results from this study allow us to further investigate the influence of the seasonal and physiological changes of intestinal microbiota on the nutrition of emus and indirectly influence the fatty acid composition of emu fat.

摘要

鸸鹋(Dromaius novaehollandiae),一种大型的、不能飞行的杂食性平胸鸟类,因其脂肪和肉而被养殖。鸸鹋脂肪可以提炼成油,用于治疗和美容。它们能够从植物纤维的消化中获得其每日能量需求的很大一部分。尽管鸸鹋体型较大,代谢率较低,但它们的胃肠道(GI)相对简单,食糜停留时间较短。然而,人们对鸸鹋的 GI 微生物多样性知之甚少。本研究的目的是使用焦磷酸测序来描述不同小肠段(十二指肠、空肠和回肠)的腔内肠道细菌群落,并将其与盲肠进行比较。从 4 只成年鸸鹋(2 只雄性,2 只雌性;5-6 岁)的每个个体中收集肠道内容物样本,这些鸸鹋自由放养,但补充了以大麦-苜蓿-油菜为基础的饮食。我们使用罗氏 454 Junior 系统扩增了 16S rRNA 基因的 V3-V5 区域,以鉴定细菌群落。经过质量修剪后,从小肠的不同部位获得了总计 165,585 个序列读段。在不同的小肠段共鉴定出 701 个操作分类单元(OTUs)。厚壁菌门(14-99%)和变形菌门(0.5-76%)是小肠中最主要的细菌门。基于物种丰富度估计(Chao1 指数),估计每个小肠肠段的估计 OTU 数分别为十二指肠 148 个、空肠 167 个和回肠 85 个。每个个体的小肠各段之间识别的核心 OTU 数量较少(十二指肠:13 OTUs,空肠:2 OTUs,回肠:14 OTUs),表明每个个体的细菌群落具有独特性。此外,只有 2 个 OTUs(埃希氏菌和辛诺伯氏科)被鉴定为整个小肠的核心细菌。PICRUSt 分析表明,植物材料和环境化学物质的解毒似乎是由 SI 微生物群完成的,尤其是空肠中的微生物群。鸸鹋盲肠微生物组的基因比小肠各段参与针对肠道病原体的保护或免疫反应的基因更多。微生物消化和发酵主要发生在空肠和盲肠。这是首次通过肠道样本而不是粪便样本来描述鸸鹋肠道不同部位的微生物群的研究。本研究的结果使我们能够进一步研究肠道微生物群季节性和生理变化对鸸鹋营养的影响,并间接影响鸸鹋脂肪的脂肪酸组成。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6cea/10024708/c2b611fe537d/41598_2023_31684_Fig1_HTML.jpg

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