Pathogenicity of mollicutes for insects: possible use in biological control

Annales De Microbiologie
|January 1, 1984
PubMed

Insights

Spiroplasmas, a type of insect-dwelling mollicute, can be pathogenic, with Spiroplasma apis reducing honey-bee longevity. Their pathogenicity is influenced by host and environment, requiring further study for biological control potential.

Area of Science:

  • Insect microbiology
  • Mollicutes pathogenicity
  • Phylogenetics

Background:

  • Acholeplasmas, spiroplasmas, and other sterol-requiring mycoplasmas inhabit insects, but only spiroplasmas are known pathogens.
  • Plant pathogenic mycoplasma-like organisms reside intracellularly in insects, while spiroplasmas are found in the gut lumen or hemolymph.

Purpose of the Study:

  • To explore the ecology of spiroplasma pathogenicity in insects.
  • To understand how habitat and host interactions influence spiroplasma virulence.
  • To evaluate the potential of insect mollicutes for biological control.

Main Methods:

  • Review of recent data on spiroplasma ecology and pathogenicity.
  • Analysis of spiroplasma isolation from various insect hosts and habitats.
  • Consideration of factors affecting spiroplasma virulence, such as host passage and seasonality.

Main Results:

  • Spiroplasma apis (Group I-2) reduces honey-bee longevity, especially with co-infections.
  • Spiroplasmas from unique habitats, like flowers, show host specificity.
  • Group IV spiroplasmas are found in flower-visiting insects across four orders.
  • Social, predatory, or aggregating insects are more susceptible to spiroplasma infections.
  • Co-infections with other mollicutes can occur in spiroplasma-harboring insects.
  • Spiroplasma presence in adult insects is seasonal.

Conclusions:

  • Spiroplasma pathogenicity is dynamic, influenced by host, environment, and co-infections.
  • Habitat adaptation is evident in spiroplasmas, with floral isolates targeting specific insects.
  • Further research on host range is crucial for assessing biological control applications of insect mollicutes.

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