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本文引用的文献

1
Worm burden-dependent disruption of the porcine colon microbiota by Trichuris suis infection.猪结肠微生物群受猪鞭虫感染的依赖虫负荷破坏。
PLoS One. 2012;7(4):e35470. doi: 10.1371/journal.pone.0035470. Epub 2012 Apr 20.
2
Characterization of the rumen microbiota of pre-ruminant calves using metagenomic tools.利用宏基因组学工具研究反刍前犊牛瘤胃微生物组。
Environ Microbiol. 2012 Jan;14(1):129-39. doi: 10.1111/j.1462-2920.2011.02543.x. Epub 2011 Sep 12.
3
Comparative fecal metagenomics unveils unique functional capacity of the swine gut.比较粪便宏基因组学揭示了猪肠道独特的功能能力。
BMC Microbiol. 2011 May 15;11:103. doi: 10.1186/1471-2180-11-103.
4
An innate bactericidal oleic acid effective against skin infection of methicillin-resistant Staphylococcus aureus: a therapy concordant with evolutionary medicine.一种先天杀菌的油酸,可有效对抗耐甲氧西林金黄色葡萄球菌的皮肤感染:一种与进化医学一致的治疗方法。
J Microbiol Biotechnol. 2011 Apr;21(4):391-9.
5
Solid-phase microextraction and the human fecal VOC metabolome.固相微萃取与人类粪便挥发性有机物代谢组。
PLoS One. 2011 Apr 8;6(4):e18471. doi: 10.1371/journal.pone.0018471.
6
Effects of α-ketoglutarate on energy status in the intestinal mucosa of weaned piglets chronically challenged with lipopolysaccharide.α-酮戊二酸对慢性脂多糖应激断奶仔猪肠黏膜能量状态的影响。
Br J Nutr. 2011 Aug;106(3):357-63. doi: 10.1017/S0007114511000249. Epub 2011 Feb 23.
7
Prevalence of gastrointestinal nematodes in growing pigs in Kabale District in Uganda.乌干达卡巴莱区生长猪胃肠道线虫的流行情况
Trop Anim Health Prod. 2011 Mar;43(3):567-72. doi: 10.1007/s11250-010-9732-x. Epub 2010 Nov 19.
8
Gut microbial gene expression in mother-fed and formula-fed piglets.母源喂养和配方奶喂养仔猪的肠道微生物基因表达。
PLoS One. 2010 Aug 27;5(8):e12459. doi: 10.1371/journal.pone.0012459.
9
FragGeneScan: predicting genes in short and error-prone reads.FragGeneScan:预测短读和易错读中的基因。
Nucleic Acids Res. 2010 Nov;38(20):e191. doi: 10.1093/nar/gkq747. Epub 2010 Aug 30.
10
Chronic gastrointestinal inflammation induces anxiety-like behavior and alters central nervous system biochemistry in mice.慢性胃肠道炎症会导致小鼠出现类似焦虑的行为,并改变中枢神经系统的生物化学特性。
Gastroenterology. 2010 Dec;139(6):2102-2112.e1. doi: 10.1053/j.gastro.2010.06.063. Epub 2010 Jun 27.

猪结肠微生物群受猪旋毛虫感染的变化。

Alterations in the porcine colon microbiota induced by the gastrointestinal nematode Trichuris suis.

机构信息

USDA/ARS/ANRI, Bovine Functional Genomics Laboratory, Beltsville, Maryland, USA.

出版信息

Infect Immun. 2012 Jun;80(6):2150-7. doi: 10.1128/IAI.00141-12. Epub 2012 Apr 9.

DOI:10.1128/IAI.00141-12
PMID:22493085
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3370577/
Abstract

Helminth parasites ensure their survival by regulating host immunity through mechanisms that dampen inflammation. These properties have recently been exploited therapeutically to treat human diseases. The biocomplexity of the intestinal lumen suggests that interactions between the parasite and the intestinal microbiota would also influence inflammation. In this study, we characterized the microbiota in the porcine proximal colon in response to Trichuris suis (whipworm) infection using 16S rRNA gene-based and whole-genome shotgun (WGS) sequencing. A 21-day T. suis infection in four pigs induced a significant change in the composition of the proximal colon microbiota compared to that of three parasite-naive pigs. Among the 15 phyla identified, the abundances of Proteobacteria and Deferribacteres were changed in infected pigs. The abundances of approximately 13% of genera were significantly altered by infection. Changes in relative abundances of Succinivibrio and Mucispirillum, for example, may relate to alterations in carbohydrate metabolism and niche disruptions in mucosal interfaces induced by parasitic infection, respectively. Of note, infection by T. suis led to a significant shift in the metabolic potential of the proximal colon microbiota, where 26% of all metabolic pathways identified were affected. Besides carbohydrate metabolism, lysine biosynthesis was repressed as well. A metabolomic analysis of volatile organic compounds (VOCs) in the luminal contents showed a relative absence in infected pigs of cofactors for carbohydrate and lysine biosynthesis, as well as an accumulation of oleic acid, suggesting altered fatty acid absorption contributing to local inflammation. Our findings should facilitate development of strategies for parasitic control in pigs and humans.

摘要

寄生虫通过抑制炎症的机制来调节宿主免疫,从而确保自身的生存。这些特性最近已被用于治疗人类疾病。肠道腔的生物复杂性表明,寄生虫和肠道微生物群之间的相互作用也会影响炎症。在这项研究中,我们使用基于 16S rRNA 基因和全基因组鸟枪法(WGS)测序,研究了猪近端结肠中微生物群对猪鞭虫(旋毛虫)感染的反应。在感染的 4 头猪中,21 天的 T. suis 感染与 3 头未感染寄生虫的猪相比,显著改变了近端结肠微生物群的组成。在所鉴定的 15 个门中,变形菌门和脱硫菌门的丰度在感染猪中发生了变化。大约 13%的属的丰度因感染而显著改变。例如,Succinivibrio 和 Mucispirillum 的相对丰度的变化可能分别与寄生虫感染引起的碳水化合物代谢改变和粘膜界面小生境破坏有关。值得注意的是,T. suis 的感染导致了近端结肠微生物群代谢潜力的显著变化,其中鉴定的所有代谢途径中有 26%受到影响。除碳水化合物代谢外,赖氨酸生物合成也受到抑制。对腔内容物中挥发性有机化合物(VOCs)的代谢组学分析表明,感染猪体内碳水化合物和赖氨酸生物合成的辅因子相对缺乏,以及油酸的积累,表明脂肪酸吸收的改变导致局部炎症。我们的研究结果应该有助于制定猪和人类寄生虫控制的策略。