Burgaud Gaëtan, Le Calvez Thomas, Arzur Danielle, Vandenkoornhuyse Philippe, Barbier Georges
Laboratoire Universitaire de Biodiversité, et Ecologie Microbienne (EA3882), IFR 148, Université Européenne de Bretagne, ESMISAB, 29280 Plouzané, France.
Environ Microbiol. 2009 Jun;11(6):1588-600. doi: 10.1111/j.1462-2920.2009.01886.x. Epub 2009 Feb 23.
As now very few studies have been carried out on deep-sea marine fungi, this field remains relatively unknown. However, their presence inside benthic microbial eukaryotes at deep-sea vents was recently pointed out from molecular microbial ecology studies. We report here an attempt to describe the culturable part of mycological communities in deep-sea vent ecosystems that is an important step in understanding their diversity, abundance and function. Physiological characterization revealed strains that are more or less adapted to deep-sea conditions. Those results suggest the presence of true marine organisms and other more ubiquitous. Phylogenetical characterization highly correlated to physiological data revealed the presence of fungi that have been previously described and unknown ones until now, belonging to new taxonomic groups. This survey encourages for further work in order to complete descriptions and also to describe the ecological role of these organisms in such extreme environments.
由于目前对深海海洋真菌的研究非常少,这个领域仍然相对不为人知。然而,最近分子微生物生态学研究指出它们存在于深海热液喷口的底栖微生物真核生物中。我们在此报告了一项描述深海热液喷口生态系统中可培养真菌群落的尝试,这是了解其多样性、丰度和功能的重要一步。生理特征分析揭示了或多或少适应深海环境的菌株。这些结果表明存在真正的海洋生物以及其他更普遍存在的生物。与生理数据高度相关的系统发育特征分析揭示了先前已描述的真菌以及迄今未知的属于新分类群的真菌的存在。这项调查鼓励开展进一步的工作,以完善描述并阐明这些生物在如此极端环境中的生态作用。