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来自微生物群的不同信号促进斑马鱼肠道分化的不同方面。

Distinct signals from the microbiota promote different aspects of zebrafish gut differentiation.

作者信息

Bates Jennifer M, Mittge Erika, Kuhlman Julie, Baden Katrina N, Cheesman Sarah E, Guillemin Karen

机构信息

Institute of Neuroscience, University of Oregon, Eugene, OR 97403, USA.

出版信息

Dev Biol. 2006 Sep 15;297(2):374-86. doi: 10.1016/j.ydbio.2006.05.006. Epub 2006 May 11.

Abstract

All animals exist in intimate associations with microorganisms that play important roles in the hosts' normal development and tissue physiology. In vertebrates, the most populous and complex community of microbes resides in the digestive tract. Here, we describe the establishment of the gut microbiota and its role in digestive tract differentiation in the zebrafish model vertebrate, Danio rerio. We find that in the absence of the microbiota, the gut epithelium is arrested in aspects of its differentiation, as revealed by the lack of brush border intestinal alkaline phosphatase activity, the maintenance of immature patterns of glycan expression and a paucity of goblet and enteroendocrine cells. In addition, germ-free intestines fail to take up protein macromolecules in the distal intestine and exhibit faster motility. Reintroduction of a complex microbiota at later stages of development or mono-association of germ-free larvae with individual constituents of the microbiota reverses all of these germ-free phenotypes. Exposure of germ-free zebrafish to heat-killed preparations of the microbiota or bacterial lipopolysaccharide is sufficient to restore alkaline phosphatase activity but not mature patterns of Gal alpha1,3Gal containing glycans, indicating that the host perceives and responds to its associated microbiota by at least two distinct pathways.

摘要

所有动物都与微生物存在密切关联,这些微生物在宿主的正常发育和组织生理学中发挥着重要作用。在脊椎动物中,数量最多且最复杂的微生物群落存在于消化道中。在此,我们描述了斑马鱼模式脊椎动物(Danio rerio)肠道微生物群的建立及其在消化道分化中的作用。我们发现,在没有微生物群的情况下,肠道上皮细胞的分化会在某些方面停滞,这表现为缺乏刷状缘肠碱性磷酸酶活性、维持未成熟的聚糖表达模式以及杯状细胞和肠内分泌细胞数量稀少。此外,无菌肠道在远端肠道无法摄取蛋白质大分子,且运动速度更快。在发育后期重新引入复杂的微生物群或使无菌幼虫与微生物群的单个成分进行单菌定植,可逆转所有这些无菌表型。将无菌斑马鱼暴露于微生物群的热灭活制剂或细菌脂多糖中足以恢复碱性磷酸酶活性,但不能恢复含Galα1,3Gal聚糖的成熟模式,这表明宿主通过至少两条不同途径感知并响应其相关的微生物群。

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