Suppr超能文献

分子证据表明,在 Fuscidea 属中,有 Apatococcus,包括新种 A. fuscideae,作为其共生藻。

Molecular Evidence of Apatococcus, including A. fuscideae sp. nov., as Photobiont in the Genus Fuscidea.

机构信息

Department of Natural History, University Museum, University of Bergen, Allégaten 41, P.O. Box 7800, N-5020 Bergen, Norway.

The Arboretum and Botanical Gardens, Department of Natural History, University Museum, University of Bergen, Allégaten 41, P.O. Box 7800, N-5020 Bergen, Norway.

出版信息

Protist. 2017 Aug;168(4):425-438. doi: 10.1016/j.protis.2017.06.002. Epub 2017 Jun 29.

Abstract

The knowledge of the taxonomy and classification of algae (including lichenized) has recently increased rapidly, but there are still many gaps. We aimed to 1) identify the Fuscidea photobionts by locating their taxonomic positions in the green algal classification, and 2) to resolve their interspecific relationships. The lichenized algae were examined based on morphological observations of axenic isolates as well as molecular studies of 18S and ITS nrDNA sequences. Analysis of the secondary structure of the ITS2 operon complemented these investigations. We found that the Fuscidea photobionts were placed within the Trebouxiophyceae, related to Apatococcus lobatus (Chodat) J.B.Petersen. Phylogenetic analyses revealed one clade nesting free-living and lichenized Apatococcus F.Brand which comprised six different lineages in the ITS phylogeny. The lichenized alga associated with the investigated Fuscidea species, except for F. lightfootii (Sm.) Coppins & James, represents a hitherto unknown lineage within Apatococcus. Fuscidea lightfootii was lichenized with a separate lineage within Apatococcus, together with free-living members, which were already known from Genbank sequences. All retrieved groups within Apatococcus were rather different in their ITS sequences, thus most likely corresponding to different species. The most common photobiont of Fuscidea species, Apatococcus fuscideae A.Beck & Zahradn., was described as new to science.

摘要

藻类(包括地衣化的)的分类学知识最近迅速增加,但仍存在许多空白。我们的目标是:1)通过在绿藻分类中定位其分类位置来识别 Fuscidea 的光生物,2)解决它们的种间关系。地衣化藻类是基于无菌分离物的形态观察以及 18S 和 ITS nrDNA 序列的分子研究来检查的。ITS2 操纵子的二级结构分析补充了这些调查。我们发现,Fuscidea 的光生物被放置在 Trebouxiophyceae 中,与 Apatococcus lobatus(Chodat)J.B.Petersen 有关。系统发育分析显示,一个分支嵌套着自由生活和地衣化的 Apatococcus F.Brand,其中包含六个不同的 ITS 系统发育谱系。与研究的 Fuscidea 物种相关的地衣化藻类,除了 F. lightfootii(Sm.)Coppins & James 之外,代表了 Apatococcus 中的一个未知谱系。Fuscidea lightfootii 与 Apatococcus 中的一个单独谱系地衣化,与已知的自由生活成员一起,这些成员已经从 Genbank 序列中得知。Apatococcus 中的所有检索到的群体在 ITS 序列上都有很大的不同,因此很可能对应于不同的物种。Fuscidea 物种最常见的光生物,Apatococcus fuscideae A.Beck & Zahradn.,被描述为新的科学。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验