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Published on: December 11, 2012
Pathogenicity of mollicutes for insects: possible use in biological control
Abstract:
Acholeplasmas, spiroplasmas and other non-helical sterol-requiring mycoplasmas of unknown phylogenetic affinity inhabit insects. Of these, only spiroplasmas are known to be pathogenic. Group I-2 spiroplasmas, or Spiroplasma apis, especially in combination with other organisms, reduce honey-bee longevity. Plant pathogenic mycoplasma-like organisms are often found intracellularly in insects. Spiroplasmas are found predominantly in the gut lumen or haemolymph (or both) of their insect hosts. Pathogenicity of mycoplasmas is usually altered by extended passage in unusual hosts, in only one of two alternate hosts, or in culture media. Enhancement of experimental pathogenicity may occur with extended cultural passages, but maintenance of natural pathogenicity must be accomplished by continuous exposure to the usual host. Recent data provide new information on the ecology of pathogenicity. Spiroplasmas from unique habitats also tend to be unique. Spiroplasmas isolated from flowers appear to be adapted to insect species that frequent floral surfaces. Group IV spiroplasmas have been isolated from members of 4 holometabolous insect orders (including Lepidoptera), all of which visit flowers. Social or predatory insects, or insects with an "aggregation" phase in their life histories, also appear to be prone to spiroplasma infection. Some insect species which harbor spiroplasmas also carry infections of other mollicutes, some of which involve the haemolymph. Appearance of spiroplasmas in adult insects in nature is strongly affected by seasonality. Extensive tests of the host ranges of the new insect mollicutes will be required before their suitability for biological control can be evaluated.
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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