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地卷衣作为未鉴定培养担子酵母的来源。

Peltigera lichens as sources of uncharacterized cultured basidiomycete yeasts.

作者信息

Pérez Yosbany, Almendras Katerin, Millanes Ana M, Serey Nayla, Yurkov Andrey, Lizana Natalia, Nesci Andrea, Fessia Aluminé, Orlando Julieta

机构信息

Instituto Milenio Biodiversidad de Ecosistemas Antárticos y Subantárticos (BASE), 7800003, Santiago, Chile.

Laboratorio de Ecología Microbiana, Departamento de Ciencias Ecológicas, Facultad de Ciencias, Universidad de Chile, 7800003, Santiago, Chile.

出版信息

IMA Fungus. 2024 Dec 4;15(1):39. doi: 10.1186/s43008-024-00170-9.

Abstract

Lichens represent one of the most successful examples of symbiosis. They are constituted by the association between a dominant fungus (i.e., the mycobiont), one or more photosynthetic partners (algae or cyanobacteria), and harbor an array of associated microorganisms, including bacteria and fungi. The associated fungal communities in lichens, known as the "lichen mycobiome", are composed of both ascomycetes and basidiomycetes, including filamentous and yeast taxa. Recently, basidiomycete yeasts have received considerable attention as a much-overlooked source of diversity within the lichen mycobiome, with hypothesized roles in lichen symbiosis. This study surveyed the diversity of cultivable basidiomycete yeasts associated with Peltigera lichens across southern Chile. A phylogenetic study based on sequences of 179 yeast isolates allowed the identification of 29 taxa from 13 genera in the classes Agaricostilbomycetes, Cystobasidiomycetes, Microbotryomycetes, and Tremellomycetes, with the latter being the most represented. This research revealed several yeast species, including members of the genera Boekhoutia and Goffeauzyma, in lichens for the first time, thereby expanding our understanding of lichen-associated fungal diversity. In addition, four new cultivable species isolated from Peltigera are formally described. These are Boekhoutia peltigerae sp. nov., Cystobasidium chilense sp. nov., Genolevuria patagonica sp. nov. and Pseudotremella navarinensis sp. nov. These results highlight the role of lichens as reservoirs of uncharacterized basidiomycete yeasts.

摘要

地衣是共生关系中最成功的例子之一。它们由一种占主导地位的真菌(即菌共生体)、一个或多个光合伙伴(藻类或蓝细菌)相互结合而成,并拥有一系列相关微生物,包括细菌和真菌。地衣中相关的真菌群落,即“地衣真菌微生物组”,由子囊菌和担子菌组成,包括丝状和酵母类群。最近,担子菌酵母作为地衣真菌微生物组中一个被严重忽视的多样性来源受到了相当多的关注,人们推测其在地衣共生中发挥作用。本研究调查了智利南部与肺衣属地衣相关的可培养担子菌酵母的多样性。基于179个酵母分离株序列的系统发育研究,从伞菌纲、囊担子菌纲、微酵母纲和银耳纲中的13个属中鉴定出29个分类单元,其中银耳纲的代表最多。这项研究首次在地衣中发现了几种酵母物种,包括布氏酵母属和戈氏酵母属的成员,从而扩展了我们对与地衣相关的真菌多样性的理解。此外,还正式描述了从肺衣属中分离出的四个新的可培养物种。它们分别是新种佩氏布氏酵母、新种智利囊担子菌、新种巴塔哥尼亚基因酵母和新种纳瓦林假银耳。这些结果突出了地衣作为未被描述的担子菌酵母库的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4c5b/11616168/7a55876b4279/43008_2024_170_Fig1_HTML.jpg

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