Suppr超能文献

一种通过多相方法鉴定的广泛分布的蓝细菌:泛生共线藻属(Koinonema)及新物种泛生共线藻(Koinonema pervagatum)的提议(颤藻目)

A widespread cyanobacterium supported by polyphasic approach: proposition of Koinonema pervagatum gen. & sp. nov. (Oscillatoriales).

作者信息

Buch Bruna, Martins Mariéllen Dornelles, Branco Luis Henrique Z

机构信息

Zoology and Botany Department, São José do Rio Preto campus (IBILCE), São Paulo State University (UNESP), R. Cristóvão Colombo, S. J. Rio Preto, SP, 2265 - BR15054-000, Brazil.

出版信息

J Phycol. 2017 Oct;53(5):1097-1105. doi: 10.1111/jpy.12568. Epub 2017 Aug 23.

Abstract

Several new genera originally classified as the genus Phormidium, a polyphyletic and taxonomically complex genus within the Oscillatoriales, were recently described. The simple morphology of Phormidium does not reflect its genetic diversity and the delimitation of a natural group is not possible with traditional classification systems based on morphology alone. Therefore, this study used morphological, ecological, and molecular approaches to evaluate four populations morphologically similar to Ammassolinea, Kamptonema, and Ancylothrix (simple, curved, and gradually attenuated at the ends trichome), found in subtropical and tropical Brazilian regions. 16S rRNA gene sequences grouped all the strains in a highly supported clade with other two European strains isolated from thermal springs surrounding areas. The 16S-23S ITS secondary structure corroborated the phylogenetic analysis with all the strains having similar structures. Consequently, a genetically well-defined and cryptic new genus, Koinonema gen. nov., is proposed containing the aquatic, mesophilic, and morphologically homogeneous new species, Koinonema pervagatum sp. nov.

摘要

最近描述了几个最初被归类为席藻属的新属,席藻属是颤藻目内一个多系且分类复杂的属。席藻简单的形态并不能反映其遗传多样性,仅基于形态学的传统分类系统无法界定自然类群。因此,本研究采用形态学、生态学和分子方法,对在巴西亚热带和热带地区发现的四个形态上与阿马索林藻属、弯丝藻属和弯丝藻属相似的种群(简单、弯曲且末端藻丝逐渐变细)进行评估。16S rRNA基因序列将所有菌株与从温泉周边地区分离出的另外两个欧洲菌株归为一个得到高度支持的分支。16S - 23S ITS二级结构证实了系统发育分析,所有菌株具有相似结构。因此,提出了一个遗传上明确且隐秘的新属,新属名为共线藻属,包含水生、嗜温且形态均一的新物种,新物种名为泛生共线藻。

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