Literature DB >> 15997335

Symbiotic Chlorella sp. of the ciliate Paramecium bursaria do not prevent acidification and lysosomal fusion of host digestive vacuoles during infection.

Yuuki Kodama1, Masahiro Fujishima.   

Abstract

Each symbiotic Chlorella sp. of the ciliate Paramecium bursaria is enclosed in a perialgal vacuole derived from the host digestive vacuole, and thereby the alga is protected from digestion by lysosomal fusion. Algae-free cells can be reinfected with algae isolated from algae-bearing cells by ingestion into digestive vacuoles. To examine the timing of acidification and lysosomal fusion of the digestive vacuoles and of algal escape from the digestive vacuole, algae-free cells were mixed with isolated algae or yeast cells stained with pH indicator dyes at 25+/-1 degrees C for 1.5 min, washed, chased, and fixed at various time points. Acidification of the vacuoles and digestion of Chlorella sp. began at 0.5 and 2 min after mixing, respectively. All single green Chlorella sp. that had been present in the host cytoplasm before 0.5 h after mixing were digested by 0.5 h. At 1 h after mixing, however, single green algae reappeared in the host cytoplasm, arising from those digestive vacuoles containing both nondigested and partially digested algae, and the percentage of such cells increased to about 40% at 3 h. At 48 h, the single green algae began to multiply by cell division, indicating that these algae had succeeded in establishing endosymbiosis. In contrast to previously published studies, our data show that an alga can successfully escape from the host's digestive vacuole after acidosomal and lysosomal fusion with the vacuole has occurred, in order to produce endosymbiosis.

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Year:  2005        PMID: 15997335     DOI: 10.1007/s00709-005-0087-5

Source DB:  PubMed          Journal:  Protoplasma        ISSN: 0033-183X            Impact factor:   3.356


  22 in total

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Journal:  Mol Microbiol       Date:  1999-03       Impact factor: 3.501

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Journal:  Exp Cell Res       Date:  1981-02       Impact factor: 3.905

5.  A Salmonella virulence protein that inhibits cellular trafficking.

Authors:  K Uchiya; M A Barbieri; K Funato; A H Shah; P D Stahl; E A Groisman
Journal:  EMBO J       Date:  1999-07-15       Impact factor: 11.598

6.  Flow cytometry as a strategy to study the endosymbiosis of algae in Paramecium bursaria.

Authors:  B I Gerashchenko; N Nishihara; T Ohara; H Tosuji; T Kosaka; H Hosoya
Journal:  Cytometry       Date:  2000-11-01

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Authors:  M W Karakashian
Journal:  Symp Soc Exp Biol       Date:  1975

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Authors:  W Reisser
Journal:  Arch Microbiol       Date:  1976-04-01       Impact factor: 2.552

9.  Salmonella induces the formation of filamentous structures containing lysosomal membrane glycoproteins in epithelial cells.

Authors:  F Garcia-del Portillo; M B Zwick; K Y Leung; B B Finlay
Journal:  Proc Natl Acad Sci U S A       Date:  1993-11-15       Impact factor: 11.205

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Journal:  J Cell Biol       Date:  1973-02       Impact factor: 10.539

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  15 in total

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Authors:  Yuuki Kodama; Masahiro Fujishima
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4.  Simultaneous Evaluation of Life Cycle Dynamics between a Host Paramecium and the Endosymbionts of Paramecium bursaria Using Capillary Flow Cytometry.

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Authors:  Chihong Song; Kazuyoshi Murata; Toshinobu Suzaki
Journal:  Sci Rep       Date:  2017-04-27       Impact factor: 4.379

6.  Variation and asymmetry in host-symbiont dependence in a microbial symbiosis.

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Review 8.  Now for something completely different: Prototheca, pathogenic algae.

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9.  Infectivity of Chlorella species for the ciliate Paramecium bursaria is not based on sugar residues of their cell wall components, but on their ability to localize beneath the host cell membrane after escaping from the host digestive vacuole in the early infection process.

Authors:  Yuuki Kodama; Masahiro Fujishima
Journal:  Protoplasma       Date:  2007-07-03       Impact factor: 3.186

10.  Crucial Role of Legionella pneumophila TolC in the Inhibition of Cellular Trafficking in the Protistan Host Paramecium tetraurelia.

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