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De novo assembly and characterization of the transcriptome of the newly described dinoflagellate Ansanella granifera: Spotlight on flagellum-associated genes

机译:新描述的丁络石酸盐植物植物植物细胞转录组的DE Novo组装和表征:鞭毛相关基因的聚光灯

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Many dinoflagellates are known to cause red tides and often outgrow non-motile diatoms and motile small flagellates through active vertical migration between well-lit surface and eutrophic deep waters and/or by locating and ingesting prey cells. Their flagella play important roles in these two critical behaviors. However, the structural and functional genes of dinoflagellate flagella are very little known. Thus, a de novo assembly and characterization of the transcriptome of the fast-swimming dinoflagellate Ansanella granifera were conducted and its flagellum genes were compared with those of other dinoflagellates, motile small flagellates, and non-motile protist species. Based on assembled data using Trinity/CLC combined strategy, 83,652 transcripts of A. granifera were identified. The assembled consensus sequences were annotated to the NCBI non-redundant (nr), InterProScan, Gene Ontology (GO), and KEGG pathway analyses. Moreover, 71 structural and 35 functional flagellum associated genes expressed were identified. The number of expressed flagellar structural and functional genes of A. granifera was not markedly different from those of other dinoflagellates or motile small flagellates, but much greater than those of non-motile species. Furthermore, in both phylogenetic trees based on the outer dynein arm (ODA1, ODA9, and DLC1) and inner dynein arm (1DA4, 1DA7, and BOPS) flagellum genes of dinoflagellates, the problem of the long-branch attraction artifacts of Oxyrrhis marina which has been reported in the phylogenetic trees based on ribosomal DNA was removed. Moreover, in both phylogenetic trees based on the ODA and IDA flagellum genes, the species in the order Peridiniales or Gymnodiniales were revealed to belong to a big Glade of each order. Therefore, the phylogenetic tree based on the flagellum genes is likely to give a clue to resolve the problem of separation in a big Glade of a dinoflagellate order which has also been reported in the phylogenetic trees based on ribosomal DNA. (C) 2017 Elsevier B.V. All rights reserved.
机译:已知许多Dinoflagellates通过在良好的表面和富营养的深水和/或通过定位和摄取猎物细胞之间的主动垂直迁移,通常使非运动硅藻和运动小鞭毛和运动小鞭毛。他们的鞭毛在这两个关键行为中发挥着重要作用。然而,Dinoflagellate鞭毛的结构和功能基因非常熟知。因此,进行了Novo组装和快速游泳型DinoflagelateAnsanella Granifera的转录组的组装和表征,并将其鞭毛基因与其他丁曲素物,运动小鞭块和非运动蛋白质物种进行比较。基于使用Trinity / CLC组合策略的组装数据,确定了83,652种成粒子。将组装的共识序列注释给NCBI非冗余(NR),Interproscan,基因本体学(GO)和Kegg途径分析。此外,鉴定了71种结构和35个功能性鞭毛相关基因。表达的鞭毛结构和A.Granifera的功能基因的数量并没有明显不同于其他丁基曲素或运动小鞭块,但远大于非运动物种。此外,在基于外部Dynein臂(ODA1,ODA9和DLC1)和内部Dynein臂(1DA4,1DA7和BOPS)的恐龙植物的鞭毛基因的系统发育树中,牛津船长的长分支吸引伪影的问题已经在基于核糖体DNA的系统发育树中报道了已经除去核糖核酸树。此外,在基于ODA和IDA鞭毛基因的系统发育树中,揭示了脑神经内或微观程度的物种,揭示了每个订单的大林林。因此,基于鞭毛基因的系统发育树可能会产生用于解决在基于核糖核酸树脂的系统发育树中报道的Dinoflagelate阶的大沼泽中分离问题的线索。 (c)2017 Elsevier B.v.保留所有权利。

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