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来自西班牙一个高盐泻湖的(子囊菌门)科的一个新属以及该属的界定 。

A New Genus of the (Ascomycota) Family from a Hypersaline Lagoon in Spain and the Delimitation of the Genus .

作者信息

Barnés-Guirado María, Stchigel Alberto Miguel, Cano-Lira José Francisco

机构信息

Mycology Unit, Medical School, Universitat Rovira i Virgili, C/Sant Llorenç 21, 43201 Reus, Spain.

出版信息

J Fungi (Basel). 2024 Mar 22;10(4):236. doi: 10.3390/jof10040236.

Abstract

The Saladas de Sástago-Bujaraloz is an endorheic and arheic complex of lagoons located in the Ebro Basin and protected by the Ramsar Convention on Wetlands. Due to the semi-arid climate of the region and the high salinity of their waters, these lagoons constitute an extreme environment. We surveyed the biodiversity of salt-tolerant and halophilic fungi residents of the Laguna de Pito, a lagoon belonging to this complex. Therefore, we collected several samples of water, sediments, and soil of the periphery. Throughout the study, we isolated 21 fungal species, including a strain morphologically related to the family . However, this strain did not morphologically match any of genera within this family. After an in-depth morphological characterization and phylogenetic analysis using a concatenated sequence dataset of four phylogenetically informative molecular markers (the internal transcribed spacer region (ITS) of the nuclear ribosomal DNA (nrDNA); the D1-D2 domains of the 28S gene of the nuclear ribosomal RNA (LSU); and a fragment of the translation elongation factor 1-alpha () and the β-tubulin (2) genes), we established the new genus , with as its species. Additionally, as a result of our taxonomic study, we reclassified the paraphyletic genus into three different genera: , gen. nov., and gen. nov., with (formerly ) and (formerly ) as the type species of their respective genera. Furthermore, we propose new combinations, including (formerly ) and (formerly ).

摘要

萨斯塔戈 - 布哈拉洛兹盐沼是位于埃布罗盆地的一组内陆无流且干旱的泻湖,受《拉姆萨尔湿地公约》保护。由于该地区的半干旱气候及其水域的高盐度,这些泻湖构成了一个极端环境。我们对属于该盐沼群的皮托湖中的耐盐和嗜盐真菌的生物多样性进行了调查。因此,我们采集了该湖的水、沉积物以及周边土壤的多个样本。在整个研究过程中,我们分离出了21种真菌,其中包括一个在形态上与该科相关的菌株。然而,该菌株在形态上与该科内的任何属都不匹配。在使用四个系统发育信息丰富的分子标记(核糖体DNA(nrDNA)的内部转录间隔区(ITS);核糖体RNA(LSU)的28S基因的D1 - D2结构域;以及翻译延伸因子1 - α()和β - 微管蛋白(2)基因的片段)的串联序列数据集进行深入的形态学特征分析和系统发育分析后,我们建立了新属,其物种为。此外,作为我们分类学研究的结果,我们将并系属重新分类为三个不同的属:、新属和新属,以(原)和(原)作为各自属的模式种。此外,我们提出了新的组合,包括(原)和(原)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6564/11051006/dba7e36af7cc/jof-10-00236-g001.jpg

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