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The Intestine of Drosophila melanogaster: An Emerging Versatile Model System to Study Intestinal Epithelial Homeostasis and Host-Microbial Interactions in Humans

机译:果蝇黑素礁的肠道:一种新兴的多功能模型系统,用于研究人类的肠上皮稳态和宿主微生物相互作用

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摘要

In all metazoans, the intestinal tract is an essential organ to integrate nutritional signaling, hormonal cues and immunometabolic networks. The dysregulation of intestinal epithelium functions can impact organism physiology and, in humans, leads to devastating and complex diseases, such as inflammatory bowel diseases, intestinal cancers, and obesity. Two decades ago, the discovery of an immune response in the intestine of the genetic model system, Drosophila melanogaster, sparked interest in using this model organism to dissect the mechanisms that govern gut (patho) physiology in humans. In 2007, the finding of the intestinal stem cell lineage, followed by the development of tools available for its manipulation in vivo, helped to elucidate the structural organization and functions of the fly intestine and its similarity with mammalian gastrointestinal systems. To date, studies of the Drosophila gut have already helped to shed light on a broad range of biological questions regarding stem cells and their niches, interorgan communication, immunity and immunometabolism, making the Drosophila a promising model organism for human enteric studies. This review summarizes our current knowledge of the structure and functions of the Drosophila melanogaster intestine, asserting its validity as an emerging model system to study gut physiology, regeneration, immune defenses and host-microbiota interactions.
机译:在所有美唑烷中,肠道是整合营养信号,荷尔蒙提示和免疫测量网络的基本器官。肠上皮功能的失调可以影响生物体生理学,在人类中,导致毁灭性和复杂的疾病,例如炎症性肠病,肠道癌症和肥胖症。二十年前,发现遗传模型系统的肠道免疫反应,果蝇黑素酰亚胺醛酸,引发了利用这种模型生物的兴趣,将管道(Patho)生理学中的机制解剖。 2007年,寻找肠道干细胞谱系,随后开发可用于其体内操纵的工具,有助于阐明飞肠肠的结构组织和功能及其与哺乳动物胃肠系统的相似性。迄今为止,果蝇肠道的研究已经帮助阐明了关于干细胞及其耐药性的广泛的生物学问题,同期沟通,免疫和免疫素质,使果蝇是人类肠道研究的有希望的模型生物体。本综述总结了我们目前对果蝇的结构和功能的知识,使其有效性作为新出现的模型系统,以研究肠病生理,再生,免疫防御和宿主微生物A相互作用。

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