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液泡与真菌生物学

Vacuoles and fungal biology.

作者信息

Veses Veronica, Richards Andrea, Gow Neil A R

机构信息

The Aberdeen Fungal Group, School of Medical Sciences, Institute of Medical Sciences, University of Aberdeen, Aberdeen AB25 2ZD, United Kingdom.

出版信息

Curr Opin Microbiol. 2008 Dec;11(6):503-10. doi: 10.1016/j.mib.2008.09.017. Epub 2008 Nov 3.

Abstract

Fungal vacuoles have long been recognised as versatile organelles, involved in many aspects of protein turnover, cellular homeostasis, membrane trafficking, signalling and nutrition. Recent research has also revealed an expanding repertoire of physiological functions for fungal vacuoles that are vital for fungal growth, differentiation, symbiosis and pathogenesis. Vacuole-mediated long-distance nutrient transporting systems have been shown to facilitate mycelial foraging and long-distance communication in saprophytes and mycorrhizal fungi. Some hyphae of plant and human fungal pathogens can grow under severely nutrient-limited conditions by expanding the vacuolar space rather than synthesising new cytoplasm and organelles. Autophagy has been recognised as a crucial process in plant pathogens for the initiation of appressorium formation. These studies demonstrate the importance of fungal vacuoles as organelles that are essential for many of the attributes that define the activities and roles of fungi in their natural environments.

摘要

真菌液泡长期以来一直被认为是多功能细胞器,参与蛋白质周转、细胞内稳态、膜运输、信号传导和营养等多个方面。最近的研究还揭示了真菌液泡不断扩展的生理功能,这些功能对真菌的生长、分化、共生和致病至关重要。液泡介导的长距离营养运输系统已被证明有助于腐生真菌和菌根真菌的菌丝觅食和长距离通讯。一些植物和人类真菌病原体的菌丝可以通过扩大液泡空间而不是合成新的细胞质和细胞器,在严重营养限制的条件下生长。自噬已被认为是植物病原体中附着胞形成起始的关键过程。这些研究表明真菌液泡作为细胞器的重要性,对于定义真菌在其自然环境中的活动和作用的许多特性而言,真菌液泡是必不可少的。

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