Max Planck Institute for Terrestrial Microbiology, Department of Biogeochemistry, Karl-von-Frisch-Straße, 35043 Marburg, Germany.
Environ Microbiol. 2010 Aug;12(8):2120-32. doi: 10.1111/j.1462-2920.2009.02080.x. Epub 2009 Oct 23.
The surface of many termite gut flagellates is colonized with a dense layer of bacteria, yet little is known about the evolutionary relationships of such ectosymbionts and their hosts. Here we investigated the molecular phylogenies of devescovinid flagellates (Devescovina spp.) and their symbionts from a wide range of dry-wood termites (Kalotermitidae). From species-pure flagellate suspensions isolated with micropipettes, we obtained SSU rRNA gene sequences of symbionts and host. Phylogenetic analysis showed that the Devescovina spp. present in many species of Kalotermitidae form a monophyletic group, which includes also the unique devescovinid flagellate Caduceia versatilis. All members of this group were consistently associated with a distinct lineage of Bacteroidales, whose location on the cell surface was confirmed by fluorescence in situ hybridization. The well-supported congruence of the phylogenies of devescovinids and their ectosymbionts documents a strict cospeciation. In contrast, the endosymbionts of the same flagellates ('Endomicrobia') were clearly polyphyletic and must have been acquired independently by horizontal transfer from other flagellate lineages. Also the Bacteroidales ectosymbionts of Oxymonas flagellates present in several Kalotermitidae belonged to several distantly related lines of descent, underscoring the general perception that the evolutionary history of flagellate-bacteria symbioses in the termite gut is complex.
许多白蚁肠道鞭毛虫的表面都有一层密集的细菌定植,但对于这些外共生体及其宿主的进化关系却知之甚少。在这里,我们研究了广泛分布的干木白蚁(Kalotermitidae)中Devescovinidae 鞭毛虫及其共生体的分子系统发育。我们用微吸管从物种纯鞭毛虫悬浮液中获得了共生体和宿主的 SSU rRNA 基因序列。系统发育分析表明,存在于许多 Kalotermitidae 物种中的 Devescovina spp. 形成一个单系群,其中还包括独特的 Devescovinidae 鞭毛虫 Caduceia versatilis。该组的所有成员都与一个独特的黄杆菌目(Bacteroidales)分支一致相关,其在细胞表面的位置通过荧光原位杂交得到了证实。Devescovinidae 和它们的外共生体的系统发育的高度一致性证明了严格的协同进化。相比之下,相同鞭毛虫的内共生体(“内微生物”)明显是多系的,必须通过水平转移从其他鞭毛虫谱系中独立获得。同样,几种 Kalotermitidae 中存在的 Oxymonas 鞭毛虫的黄杆菌目外共生体也属于几个远缘谱系,这突显了人们普遍认为的白蚁肠道鞭毛虫-细菌共生体的进化历史是复杂的。