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采用综合方法对来自俄罗斯远东地区的 Ehrenberg(舟形藻目,硅藻纲)两个新物种的描述。

Description of Two New Species of Ehrenberg (Naviculales, Bacillariophyceae) from the Russian Far East Using an Integrative Approach.

作者信息

Bagmet Veronika B, Abdullin Shamil R, Nikulin Vyacheslav Yu, Nikulin Arthur Yu, Gorpenchenko Tatiana Y, Gontcharov Andrey A

机构信息

Federal Scientific Center of the East Asia Terrestrial Biodiversity, Far Eastern Branch of the Russian Academy of Sciences, 159, 100-Letia Vladivostoka Prospect, Vladivostok 690022, Russia.

出版信息

Plants (Basel). 2024 Aug 5;13(15):2160. doi: 10.3390/plants13152160.

Abstract

(Naviculales, Bacillariaceae) are widespread, mostly in fresh-water habitats, and account for 343 species. They are described mainly on the basis of morphology and morphometric traits. These characteristics vary during life cycles and may overlap between species, making their identification difficult. We isolated two strains of naviculoid diatoms and examined them using an integrative approach (phylogenetic, morphological, ultrastructural data, and life cycle). Phylogenetic analyses based on chloroplast L gene data showed affinity of the new strains to the genus . Our algae share morphological features typical of but differ from similar species in minimal valve length measurements, valve apex shape, and minimal number of striae in 10 μm. Two strains are distinct from each other in maximal valve length and width, partially valve shape, the number of areolae in 10 μm, and cingulum structure. It was revealed that the strains reproduce via isogamy. Three species delimitation methods (ASAP, PTP, and GMYC) also confirmed that the two closely related new strains represent distinct species. Based on molecular data and phenotypic traits examined within the framework of an integrative approach, we describe two new isolates as sp. nov. and sp. nov.

摘要

(舟形藻目,杆菌藻科)分布广泛,主要生活在淡水生境中,共有343个物种。它们主要根据形态学和形态测量特征来描述。这些特征在生命周期中会发生变化,并且可能在物种之间重叠,这使得它们的鉴定变得困难。我们分离出两株舟形硅藻菌株,并采用综合方法(系统发育、形态学、超微结构数据和生命周期)对其进行研究。基于叶绿体L基因数据的系统发育分析表明,新菌株与该属具有亲缘关系。我们的藻类具有该属典型的形态特征,但在最小瓣膜长度测量、瓣膜顶端形状以及每10μm的条纹最少数量方面与相似物种不同。两株菌株在最大瓣膜长度和宽度、部分瓣膜形状、每10μm的网孔数量以及环带结构方面彼此不同。研究发现这些菌株通过同配生殖进行繁殖。三种物种界定方法(ASAP、PTP和GMYC)也证实这两个密切相关的新菌株代表不同的物种。基于在综合方法框架内研究的分子数据和表型特征,我们将两个新分离株描述为新物种[具体物种名1] sp. nov. 和[具体物种名2] sp. nov.

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dee4/11314381/e3fdfee6e5c7/plants-13-02160-g001.jpg

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