Symbiotic Chlorella variabilis incubated under constant dark conditions for 24 hours loses the ability to avoid digestion by host lysosomal enzymes in digestive vacuoles of host ciliate Paramecium bursaria

Author:

Kodama Yuuki1,Fujishima Masahiro2

Affiliation:

1. Department of Biological Science, Faculty of Life and Environmental Sciences, Shimane University, Matsue, Japan

2. Department of Environmental Science and Engineering, Graduate School of Science and Engineering, Yamaguchi University, Yamaguchi, Japan

Abstract

Abstract Endosymbiosis between symbiotic Chlorella and alga-free Paramecium bursaria cells can be induced by mixing them. To establish the endosymbiosis, algae must acquire temporary resistance to the host lysosomal enzymes in the digestive vacuoles (DVs). When symbiotic algae isolated from the alga-bearing paramecia are kept under a constant dark conditions for 24 h before mixing with the alga-free paramecia, almost all algae are digested in the host DVs. To examine the cause of algal acquisition to the host lysosomal enzymes, the isolated algae were kept under a constant light conditions with or without a photosynthesis inhibitor 3-(3,4-dichlorophenyl)-1,1-dimethylurea for 24 h, and were mixed with alga-free paramecia. Unexpectedly, most of the algae were not digested in the DVs irrespective of the presence of the inhibitor. Addition of 1 mM maltose, a main photosynthetic product of the symbiotic algae or of a supernatant of the isolated algae kept for 24 h under a constant light conditions, did not rescue the algal digestion in the DVs. These observations reveal that unknown factors induced by light are a prerequisite for algal resistance to the host lysosomal enzymes.

Funder

Japan Society for the Promotion of Science

Publisher

Oxford University Press (OUP)

Subject

Applied Microbiology and Biotechnology,Ecology,Microbiology

Reference56 articles.

1. Nitrogen nutrition of endosymbiotic Chlorella spec;Albers;Endocytobiosis Cell Res,1985

2. Studies of the nitrogen supply of endosymbiotic chlorellae in green Paramecium bursaria;Albers;Plant Sci Lett,1982

3. The seasonal variation of pH and dissolved oxygen (DO2) concentration in Asa lake Ilorin, Nigeria;Araoye;Int J Phys Sci,2009

4. The growth and division of single mitochondrion and other organelles during the cell cycle of Chlorella, studied by quantitative stereology and three dimensional reconstitution;Atkinson;Protoplasma,1974

5. Transfer of photosynthetically produced carbohydrate from endosymbiotic Chlorellae to Paramecium bursaria;Brown;J Protozool,1974

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