2005Journal of PhycologyRequires access

INDUCTION OF VACUOLATED SPHEROPLASTS AND ISOLATION OF VACUOLES IN CYANOBACTERIA1

Ping Yi, Yi‐jun Zhao, Hou‐liang Guo

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Abstract

There is still a great deal of debate about whether cyanobacteria contain vacuoles. This might in part reflect our limited ability to isolate vacuoles. We found and isolated vacuoles from different cyanobacteria during spheroplast preparation. Lysozyme treatment induced two kinds of spheroplasts: vacuolated spheroplasts and nonvacuolated spheroplasts. Upon breakage in distilled water, vacuolated spheroplasts released transparent, spherical, and colorless vacuoles with diameters ranging from 2.3 to 16 μm. Large vacuoles could be generated by fusion of two or three small vacuoles. Additionally, large vacuoles also could engulf small ones or other cellular bodies. The isolated vacuoles could tolerate hypotonic condition, and some could be drawn into a thread. Nonvacuolated spheroplasts released few vacuoles after breaking apart. This successful confirmation and isolation of vacuoles will allow studies of the origin and function of cyanobacterial vacuoles.

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What this paper is about

There is still a great deal of debate about whether cyanobacteria contain vacuoles. This might in part reflect our limited ability to isolate vacuoles. We found and isolated vacuoles from different cyanobacteria during spheroplast preparation. Lysozyme treatment induced two kinds of spheroplasts: vacuolated spheroplasts and nonvacuolated spheroplasts. Upon breakage in distilled water, vacuolated spheroplasts released transparent, spherical, and colorless vacuoles with diameters ranging from 2.3 to 16 μm. Large vacuoles could be generated by fusion of two or three small vacuoles. Additionally, large vacuoles also could engulf small ones or other cellular bodies. The isolated vacuoles could tolerate hypotonic condition, and some could be drawn into a thread. Nonvacuolated spheroplasts released few vacuoles after breaking apart. This successful confirmation and isolation of vacuoles will allow studies of the origin and function of cyanobacterial vacuoles.

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Available abstract

There is still a great deal of debate about whether cyanobacteria contain vacuoles. This might in part reflect our limited ability to isolate vacuoles. We found and isolated vacuoles from different cyanobacteria during spheroplast preparation. Lysozyme treatment induced two kinds of spheroplasts: vacuolated spheroplasts and nonvacuolated spheroplasts. Upon breakage in distilled water, vacuolated spheroplasts released transparent, spherical, and colorless vacuoles with diameters ranging from 2.3 to 16 μm. Large vacuoles could be generated by fusion of two or three small vacuoles. Additionally, large vacuoles also could engulf small ones or other cellular bodies. The isolated vacuoles could tolerate hypotonic condition, and some could be drawn into a thread. Nonvacuolated spheroplasts released few vacuoles after breaking apart. This successful confirmation and isolation of vacuoles will allow studies of the origin and function of cyanobacterial vacuoles.

Key concepts: Vacuole, Spheroplast, Biology, Protoplast, Biochemistry, Cytoplasm, Escherichia coli, Gene

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