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新的吞噬性裸藻物种(新属Decastava;栖居裂滴虫;长形内吸管虫)、热休克蛋白90内含子以及推测的裸藻热休克蛋白90前体信使核糖核酸插入编辑

New phagotrophic euglenoid species (new genus Decastava; Scytomonas saepesedens; Entosiphon oblongum), Hsp90 introns, and putative euglenoid Hsp90 pre-mRNA insertional editing.

作者信息

Cavalier-Smith Thomas, Chao Ema E, Vickerman Keith

机构信息

Department of Zoology, University of Oxford, South Parks Road, Oxford OX1 3PS, UK.

Department of Zoology, University of Oxford, South Parks Road, Oxford OX1 3PS, UK.

出版信息

Eur J Protistol. 2016 Oct;56:147-170. doi: 10.1016/j.ejop.2016.08.002. Epub 2016 Aug 28.

Abstract

We describe three new phagotrophic euglenoid species by light microscopy and 18S rDNA and Hsp90 sequencing: Scytomonas saepesedens; Decastava edaphica; Entosiphon oblongum. We studied Scytomonas and Decastava ultrastructure. Scytomonas saepesedens feeds when sessile with actively beating cilium, and has five pellicular strips with flush joints and Calycimonas-like microtubule-supported cytopharynx. Decastava, sister to Keelungia forming new clade Decastavida on 18S rDNA trees, has 10 broad strips with cusp-like joints, not bifurcate ridges like Ploeotia and Serpenomonas (phylogenetically and cytologically distinct genera), and Serpenomonas-like feeding apparatus (8-9 unreinforced microtubule pairs loop from dorsal jaw support to cytostome). Hsp90 and 18S rDNA trees group Scytomonas with Petalomonas and show Entosiphon as the earliest euglenoid branch. Basal euglenoids have rigid longitudinal strips; derived clade Spirocuta has spiral often slideable strips. Decastava Hsp90 genes have introns. Decastava/Entosiphon Hsp90 frameshifts imply insertional RNA editing. Petalomonas is too heterogeneous in pellicle structure for one genus; we retain Scytomonas (sometimes lumped with it) and segregate four former Petalomonas as new genus Biundula with pellicle cross section showing 2-8 smooth undulations and typified by Biundula (=Petalomonas) sphagnophila comb. n. Our taxon-rich site-heterogeneous rDNA trees confirm that Heteronema is excessively heterogeneous; therefore we establish new genus Teloprocta for Heteronema scaphurum.

摘要

我们通过光学显微镜以及18S rDNA和Hsp90测序描述了三种新的吞噬性裸藻物种:栖腐绵藻;土壤十体藻;长形内吸管藻。我们研究了绵藻属和十体藻属的超微结构。栖腐绵藻在固着时通过活跃摆动的纤毛进食,有五条具齐平连接的表膜条带以及类似萼花藻属的微管支撑的胞咽。十体藻属在18S rDNA树状图上是基隆藻属的姐妹群,形成新的十体藻目,有十条具尖状连接的宽条带,不像褶边藻属和蛇形藻属(在系统发育和细胞学上不同的属)那样有分叉的脊,并且有类似蛇形藻属的摄食器官(8 - 9对无加强的微管从背侧颌支撑环至胞口)。Hsp90和18S rDNA树状图将绵藻属与花瓣藻属归为一类,并显示内吸管藻属为最早的裸藻分支。基部裸藻有刚性纵向条带;衍生分支螺旋藻属有螺旋状且常可滑动的条带。十体藻属的Hsp90基因有内含子。十体藻属/内吸管藻属的Hsp90移码暗示插入性RNA编辑。花瓣藻属在表膜结构上过于异质,不宜作为一个属;我们保留绵藻属(有时与之合并),并将四个原花瓣藻属物种分离为新的双波藻属,其表膜横截面显示2 - 8个平滑波动,以泥炭藓双波藻(=花瓣藻属)为模式种。我们丰富的分类单元且位点异质的rDNA树状图证实异线藻属过于异质;因此我们为舟形异线藻建立新的端尾藻属。

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