| Literature DB >> 27273537 |
Toshiyuki Takahashi1, Tomoki Nishida2, Chieko Saito1, Hidehiro Yasuda2, Hisayoshi Nozaki1.
Abstract
The coccoid glaucophyte genus Glaucocystis is characterized by having a thick cell wall, which has to date prohibited examination of the native ultrastructural features of the protoplast periphery. Recently, however, the three-dimensional (3-D) ultrastructure of the protoplast periphery was revealed in two divergent Glaucocystis species, with the world's most powerful ultra-high voltage electron microscope (UHVEM). The two species exhibit morphological diversity in terms of their 3-D ultrastructural features. However, these two types do not seem to encompass actual ultrastructural diversity in the genetically diverse genus Glaucocystis. Here, we report a new type of peripheral 3-D ultrastructure resolved in "G. incrassata" SAG 229-2 cells by 3-D modeling based on UHVEM tomography using high-pressure freezing and freeze-substitution fixation. The plasma membrane and underlying flattened vesicles in "G. incrassata" SAG 229-2 exhibited grooves at intervals of 200-600 nm, and the flattened vesicles often overlapped one another at the protoplast periphery. This 3-D ultrastructure differs from those of the two types previously reported in other species of Glaucocystis. The possibility of classification of Glaucocystis species based on the 3-D ultrastructure of the protoplast periphery is discussed.Entities:
Keywords: Glaucocystis; diversity; morphology; tomography; ultra-high voltage electron microscopy; ultrastructure; “Glaucocystis incrassata” SAG 229-2
Mesh:
Year: 2016 PMID: 27273537 DOI: 10.1111/jpy.12412
Source DB: PubMed Journal: J Phycol ISSN: 0022-3646 Impact factor: 2.923