Buaya Anthony, Thines Marco
Senckenberg Biodiversity and Climate Research Centre (SBiK-F), Frankfurt am Main, Germany.
Department of Biological Sciences, Institute of Ecology, Evolution and Diversity, Goethe University Frankfurt am Main, Frankfurt am Main, Germany.
Mycobiology. 2024 Apr 10;52(2):117-123. doi: 10.1080/12298093.2024.2333611. eCollection 2024.
There is increasing evidence that holocarpic oomycetes, i.e., those converting their entire vegetative thallus into zoospores upon maturation, are a phylogenetically diverse group in both freshwater and marine ecosystems. Most of the known holocarpic oomycete species diverge before the main split of and and are, thus, termed as early-diverging oomycetes. In environmental sequencing studies, it was revealed that of the early-diverging genera especially , , and are widespread. As in these studies especially the Arctic Ocean seemed to harbor many undiscovered species, sampling was conducted at the Blávík research station on Fáskrúðsfjörður in the East Fjords of Iceland, where there is both an influence from the Arctic Ocean and the North Atlantic. During the screening for infected diatoms, a parasitoid was found in the marine diatom genus , which is one of the most abundant genera in arctic ecosystems. Molecular phylogenetics and morphological characterization revealed that the parasitoid belonged to the genus and corresponded to one of the lineages previously found in single-cell sequencing. Thus, the current study both contributes to the knowledge of the genus and the increasing diversity of the genus suggests that the many linages found in environmental sequencing which can still not be associated with known species might represent actual species to be discovered in future studies.
越来越多的证据表明,全果卵菌纲,即那些在成熟时将整个营养菌体转化为游动孢子的卵菌纲,在淡水和海洋生态系统中都是一个系统发育多样的类群。大多数已知的全果卵菌纲物种在[两个分类单元名称未给出]的主要分化之前就已经分化,因此被称为早期分化卵菌纲。在环境测序研究中发现,早期分化的属中,特别是[三个属名称未给出]分布广泛。由于在这些研究中,尤其是北冰洋似乎蕴藏着许多未被发现的物种,因此在冰岛东峡湾法斯克吕德峡湾的布拉维克研究站进行了采样,该地区受到北冰洋和北大西洋的双重影响。在筛选受感染的硅藻时,在海洋硅藻属[属名未给出]中发现了一种寄生生物,该属是北极生态系统中最丰富的属之一。分子系统发育学和形态学特征表明,这种寄生生物属于[属名未给出]属,与之前单细胞测序中发现的一个谱系相对应。因此,当前的研究既有助于了解[属名未给出]属,而且该属不断增加的多样性表明,在环境测序中发现的许多仍无法与已知物种相关联的谱系可能代表着未来研究中有待发现的实际物种。