首页> 外文期刊>Journal of phycology >Polyphasic approach using multilocus analyses supports the establishment of the new aerophytic cyanobacterial genus Pycnacronema (Coleofasciculaceae, Oscillatoriales)
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Polyphasic approach using multilocus analyses supports the establishment of the new aerophytic cyanobacterial genus Pycnacronema (Coleofasciculaceae, Oscillatoriales)

机译:使用多层分析的多相方法支持建立新的散毛蓝杆菌属Pycnacronema(Coleofasciculaceae,振荡器)

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摘要

A new Phormidium-like genus was found during an investigation of Oscillatoriales diversity in Brazil. Eight aerophytic populations from south and southeastern regions were isolated in monospecific cultures and submitted to polyphasic evaluation. The populations presented homogeneous morphology with straight trichomes, not attenuated, and apical cell with thickened cell wall. Phylogenetic analyses based on 16S rRNA gene sequences showed that these populations, plus the Brazilian strain Phomidium sp. B-Tom from GenBank, formed a highly supported and distinctive clade, which corresponds to the new genus Pycnacronema, comprising six new species: P. brasiliensis (type species), P. arboriculum, P. conicum, P. marmoreum, P. rubrum, and P. savannensis. These results were confirmed and supported by rpoC1 and rbcL genes evaluated independently and by the concatenated analysis of 16S rRNA, rpoC1 and rbcL genes (for all species but P. savannensis). Secondary structures of the D1-D1 ', box-B, and V3 regions of the internal transcribed spacer were informative at specific level, being conserved in P. brasiliensis and variable among the other strains, also confirming the phylogenetic analyses. The generic name and specific epithets of the new taxa are proposed under the provisions of the International Code of Nomenclature of algae, fungi, and plants.
机译:在巴西的振荡器多样性的调查期间发现了一种新的阴分积样属。南部和东南地区的八个雾化种群被分离在单兴文化中,并提交给多洋评估。该群体用直粒细胞,未减弱和具有增厚细胞壁的顶端细胞呈现均匀形态。基于16S rRNA基因序列的系统发育分析表明,这些群体加上巴西菌株Phomidium sp。来自Genbank的B-TOM形成了高度支持和独特的思想家,其对应于新的PycnaC​​ronema,包含六种新种类:P.Brasiliensis(型物种),P.Arboriculum,P.Conicum,P.Marmoreum,P.Marmoreum,P.Marmoreum和p. savannensis。通过独立评估的RPOC1和RBCL基因确认并支持这些结果,并通过16S rRNA,RPOC1和RBCL基因的连贯分析(对于所有物种但P. Savannensis)进行倾斜分析。内部转录间隔件的D1-D1',Box-B和V3区域的二次结构在特定水平上提供信息性,在其他菌株中保存在P.Bariliensis和可变性中,也证实了系统发育分析。根据藻类,真菌和植物的国际命令守则准则的规定提出了新分类群的通用名称和特定绰号。

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