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  • Cell organelles  (1)
  • Endosymbiotic evolution  (1)
  • 1
    Electronic Resource
    Electronic Resource
    Springer
    Journal of molecular evolution 36 (1993), S. 121-126 
    ISSN: 1432-1432
    Keywords: Aphid ; Intracellular symbiont ; groE operon ; Nucleotide sequence ; Codon usage ; Directional mutation ; A/T pressure ; Selection ; Cell organelles
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology
    Notes: Summary As a result of the nucleotide sequence analysis of an aphid endosymbiont's operon homologous to theEscherichia coli groE, we noted that directional base substitutions tending toward an increase of A + T content represent an obvious evolutionary trend in this prokaryotic operon, housed for a long period by an eukaryotic cell. This result, when taken together with previous reports, raised the possibility that genomic DNA of prokaryotes residing in an eukaryotic cell is subject to A/T-biased directional mutation pressure and/or both negative and positive selection operating under conditions specific to the intracellular environments.
    Type of Medium: Electronic Resource
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  • 2
    ISSN: 1432-1432
    Keywords: Aphids ; Endosymbiosis ; Symbionin ; Chaperonin 60 ; Chaperonin 10 ; Immunoblotting ; Immunohistochemistry ; Primary symbiont ; Secondary symbiont ; Endosymbiotic evolution
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology
    Notes: Summary All aphids harbor symbiotrophic prokaryotes (“primary symbionts”) in a specialized-abdominal cell, the bacteriocyte. Chaperonin 60 (Cpn60, symbionin) and chaperonin 10 (Cpn10), which are high and low molecular weight heatshock proteins, were sought in tissues of more than 60 aphid species. The endosymbionts were compared immunologically and histologically. It was demonstrated that (1) there are two types of aphids in terms of the endosymbiotic system: some with only primary symbionts and others with, in addition, secondary symbionts; (2) the primary symbionts of various aphids are quite similar in morphology whereas the secondary symbionts vary; and (3) irrespective of the aphid species, Cpn60 is abundant in both the primary and secondary symbionts, while Cpn10 is abundant in the secondary symbionts but present in small amounts in the primary ones. Based on these results, we suggest that the primary symbionts have been derived from a prokaryote that was acquired by the common ancestor of aphids whereas the secondary symbionts have been acquired by various aphids independently after divergence of the aphid species. In addition, we point out the possibility that the prokaryotes under intracellular conditions have been subject to some common evolutionary pressures, and as a result, have come to resemble cell organelles.
    Type of Medium: Electronic Resource
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