Heimerl Thomas, Flechsler Jennifer, Pickl Carolin, Heinz Veronika, Salecker Benjamin, Zweck Josef, Wanner Gerhard, Geimer Stefan, Samson Rachel Y, Bell Stephen D, Huber Harald, Wirth Reinhard, Wurch Louie, Podar Mircea, Rachel Reinhard
LOEWE Research Center for Synthetic Microbiology (SYNMIKRO), Philipps University of MarburgMarburg, Germany.
Plant Development and Electron Microscopy, Biocenter LMUMunich, Germany.
Front Microbiol. 2017 Jun 13;8:1072. doi: 10.3389/fmicb.2017.01072. eCollection 2017.
Based on serial sectioning, focused ion beam scanning electron microscopy (FIB/SEM), and electron tomography, we depict in detail the highly unusual anatomy of the marine hyperthermophilic crenarchaeon, . Our data support a complex and dynamic endomembrane system consisting of cytoplasmic protrusions, and with secretory function. Moreover, we reveal that the cytoplasm of the putative archaeal ectoparasite can get in direct contact with this endomembrane system, complementing and explaining recent proteomic, transcriptomic and metabolomic data on this inter-archaeal relationship. In addition, we identified a matrix of filamentous structures and/or tethers in the voluminous inter-membrane compartment (IMC) of , which might be responsible for membrane dynamics. Overall, this unusual cellular compartmentalization, ultrastructure and dynamics in an archaeon that belongs to the recently proposed TACK superphylum prompts speculation that the eukaryotic endomembrane system might originate from Archaea.
基于连续切片、聚焦离子束扫描电子显微镜(FIB/SEM)和电子断层扫描技术,我们详细描绘了海洋嗜热泉古菌的高度独特的解剖结构。我们的数据支持了一个由细胞质突起组成且具有分泌功能的复杂动态内膜系统。此外,我们发现假定的古菌外寄生虫的细胞质可与该内膜系统直接接触,这补充并解释了近期关于这种古菌间关系的蛋白质组学、转录组学和代谢组学数据。此外,我们在的大量膜间区室(IMC)中鉴定出丝状结构和/或系链的基质,这可能与膜动态有关。总体而言,这种属于最近提出的TACK超群的古菌中不寻常的细胞区室化、超微结构和动态引发了关于真核内膜系统可能起源于古菌的推测。