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- W933089120 abstract "This chapter outlines studies carried out on primary structures of cyanobacterial proteins and methods used to compare them with the corresponding proteins in eukaryotic and eubacterial cells. This has shed some light on their evolutionary relationships and on the possible origin of chloroplasts. Chloroplasts themselves are semiautonomous organelles with their own prokaryotic type ribosomes and DNA. They have 70 S type ribosomes with the appropriate prokaryotic antibiotic specificities and N-formylated methionine tRNA as the initiator of protein synthesis. A polyphyletic origin of chloroplasts has been proposed on the basis of the similarity in type of chlorophyll and presence of phycobiliproteins in cyanobacteria, Rhodophyta, and Cryptophyta. Cyanobacteria are prokaryotic organisms, and like other prokaryotes, they lack internal compartmentalization of their cells including the membrane-bound nucleus characteristic of eukaryotic cells. They do not undergo mitotic division. Photosynthesis and respiration is carried out on membrane systems in prokaryotes not in separate organelles." @default.
- W933089120 created "2016-06-24" @default.
- W933089120 creator A5053808626 @default.
- W933089120 date "1988-01-01" @default.
- W933089120 modified "2023-10-15" @default.
- W933089120 title "[13] Protein sequences as taxonomic probes of cyanobacteria" @default.
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- W933089120 doi "https://doi.org/10.1016/0076-6879(88)67016-9" @default.
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