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Spiroplasmas: infectious agents of plants, arthropods and vertebrates

J M Bové1

  • 1Laboratoire de Biologie Cellulaire et Moléculaire, Université Victor Segalen Bordeaux 2 et I.N.R.A., Villenave d'Ornon, France.

Insights

Spiroplasmas, helical mollicutes, cause plant and insect diseases. Genetic studies using transposon mutagenesis reveal insights into Spiroplasma citri pathogenicity and motility, advancing research on these microorganisms.

Area of Science:

  • Microbiology
  • Plant Pathology
  • Insect Pathology

Background:

  • Spiroplasmas are helical, motile mollicutes discovered through studies on plant diseases like corn stunt and citrus stubborn.
  • Spiroplasma citri and Spiroplasma kunkelii are key phytopathogenic species, restricted to plant phloem and transmitted by leafhoppers.
  • Numerous spiroplasma species have since been identified in insects, ticks, and plants, with varying pathogenicities.

Purpose of the Study:

  • To investigate the genetic basis of spiroplasma pathogenicity and motility.
  • To apply transposon mutagenesis for studying Spiroplasma citri virulence factors.
  • To explore the role of spiroplasma motility in host interactions and disease development.

Main Methods:

  • Transposon Tn 4001 mutagenesis was employed on Spiroplasma citri.
  • Mutants were analyzed for their ability to multiply in leafhopper vectors and plants.
  • Non-motile mutants were generated and complemented with wild-type genes to restore motility.

Main Results:

  • A Tn 4001 mutant unable to use fructose was non-phytopathogenic despite multiplying in plants.
  • Another mutant failed to multiply in leafhoppers, indicating impaired transmission.
  • A non-motile mutant was successfully complemented, restoring motility and marking a first for mollicutes.

Conclusions:

  • Genetic manipulation, particularly transposon mutagenesis and gene complementation, provides powerful tools for studying spiroplasma pathogenicity.
  • Understanding the genetic underpinnings of spiroplasma motility and metabolism is crucial for deciphering their disease mechanisms.
  • These advancements open new avenues for research into spiroplasma-plant and spiroplasma-insect interactions.

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