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马氏管的发育、分子和运输生物学。

The developmental, molecular, and transport biology of Malpighian tubules.

机构信息

Department of Biomedical Sciences, Cornell University, Ithaca, New York 14853, USA.

出版信息

Annu Rev Entomol. 2010;55:351-74. doi: 10.1146/annurev-ento-112408-085512.

Abstract

Molecular biology is reaching new depths in our understanding of the development and physiology of Malpighian tubules. In Diptera, Malpighian tubules derive from ectodermal cells that evaginate from the primitive hindgut and subsequently undergo a sequence of orderly events that culminates in an active excretory organ by the time the larva takes its first meal. Thereafter, the tubules enlarge by cell growth. Just as modern experimental strategies have illuminated the development of tubules, genomic, transcriptomic, and proteomic studies have uncovered new tubule functions that serve immune defenses and the breakdown and renal clearance of toxic substances. Moreover, genes associated with specific diseases in humans are also found in flies, some of which, astonishingly, express similar pathophenotypes. However, classical experimental approaches continue to show their worth by distinguishing between -omic possibilities and physiological reality while providing further detail about the rapid regulation of the transport pathway through septate junctions and the reversible assembly of proton pumps.

摘要

分子生物学在理解马氏管的发育和生理学方面不断取得新的进展。在双翅目昆虫中,马氏管由从原始后肠外突的外胚层细胞衍生而来,随后经历一系列有序的事件,最终在幼虫第一次进食时形成一个活跃的排泄器官。此后,通过细胞生长使小管增大。正如现代实验策略阐明了小管的发育过程一样,基因组学、转录组学和蛋白质组学研究揭示了新的小管功能,这些功能有助于免疫防御以及有毒物质的分解和肾脏清除。此外,与人类特定疾病相关的基因也在果蝇中被发现,其中一些基因令人惊讶地表现出相似的病理表型。然而,经典的实验方法继续通过区分组学可能性和生理现实来显示其价值,同时进一步详细说明通过隔膜连接的运输途径的快速调节以及质子泵的可逆组装。

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