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Annotated 18S and 28S rDNA reference sequences of taxa in the planktonic diatom family Chaetocerotaceae

机译:浮游硅藻科Chaetocerotaceae的分类单元带注释的18S和28S rDNA参考序列

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摘要

The species-rich diatom family Chaetocerotaceae is common in the coastal marine phytoplankton worldwide where it is responsible for a substantial part of the primary production. Despite its relevance for the global cycling of carbon and silica, many species are still described only morphologically, and numerous specimens do not fit any described taxa. Nowadays, studies to assess plankton biodiversity deploy high throughput sequencing metabarcoding of the 18S rDNA V4 region, but to translate the gathered metabarcodes into biologically meaningful taxa, there is a need for reference barcodes. However, 18S reference barcodes for this important family are still relatively scarce. We provide 18S rDNA and partial 28S rDNA reference sequences of 443 morphologically characterized chaetocerotacean strains. We gathered 164 of the 216 18S sequences and 244 of the 413 28S sequences of strains from the Gulf of Naples, Atlantic France, and Chile. Inferred phylogenies showed 84 terminal taxa in seven principal clades. Two of these clades included terminal taxa whose rDNA sequences contained spliceosomal and Group IC1 introns. Regarding the commonly used metabarcode markers in planktonic diversity studies, all terminal taxa can be discriminated with the 18S V4 hypervariable region; its primers fit their targets in all but two species, and the V4-tree topology is similar to that of the 18S. Hence V4-metabarcodes of unknown Chaetocerotaceae are assignable to the family. Regarding the V9 hypervariable region, most terminal taxa can be discriminated, but several contain introns in their primer targets. Moreover, poor phylogenetic resolution of the V9 region affects placement of metabarcodes of putative but unknown chaetocerotacean taxa, and hence, uncertainty in taxonomic assignment, even of higher taxa.
机译:物种丰富的硅藻科(Chaetocerotaceae)在全世界的沿海海洋浮游植物中很常见,在那里它占初级生产的很大一部分。尽管它与碳和二氧化硅的全球循环有关,但许多物种仍仅从形态上进行描述,并且许多标本不适合任何所描述的分类单元。如今,评估浮游生物多样性的研究部署了18S rDNA V4区域的高通量测序元条形码,但要将收集的元条形码转换成具有生物学意义的分类单元,需要参考条形码。但是,该重要系列的18S参考条形码仍然相对稀缺。我们提供443形态特征化的鞘翅类鲸鱼菌株的18S rDNA和28S rDNA部分参考序列。我们收集了那不勒斯湾,法国大西洋和智利的216个18S序列中的164个和413 28S序列中的244个。推断的系统发育显示七个主要进化枝中有84个末端分类单元。这些进化枝中的两个包括末端类群,其rDNA序列包含剪接体和IC1组内含子。关于浮游生物多样性研究中常用的元条形码标记,可以用18S V4高变区来区分所有末端分类群。它的引物适合除两个物种外的所有靶标,并且V4树形拓扑类似于18S。因此,未知科的V4元条形码可分配给该科。关于V9高变区,可以区分大多数末端类群,但是有几个在其引物靶标中包含内含子。此外,V9区域的较差的系统发育分辨率会影响假定的但未知的七尾鲸科类群的元条形码的放置,从而影响分类分配的不确定性,甚至更高的分类单元。

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