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Symbiosis in Sustainable Agriculture: Can Olive Fruit Fly Bacterial Microbiome Be Useful in Pest Management?

Journal

MICROORGANISMS
Volume 7, Issue 8, Pages -

Publisher

MDPI
DOI: 10.3390/microorganisms7080238

Keywords

animal-microorganism interactions; symbiotic; pest management; bacterial microbiome; olive pest; Bactrocera oleae

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Funding

  1. Fundacao para a Ciencia e Tecnologia (FCT-Portugal) [PTDC/ASP-PLA/30650/2017]
  2. Fundação para a Ciência e a Tecnologia [PTDC/ASP-PLA/30650/2017] Funding Source: FCT

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The applied importance of symbiosis has been gaining recognition. The relevance of symbiosis has been increasing in agriculture, in developing sustainable practices, including pest management. Insect symbiotic microorganisms' taxonomical and functional diversity is high, and so is the potential of manipulation of these microbial partners in suppressing pest populations. These strategies, which rely on functional organisms inhabiting the insect, are intrinsically less susceptible to external environmental variations and hence likely to overcome some of the challenges posed by climate change. Rates of climate change in the Mediterranean Basin are expected to exceed global trends for most variables, and this warming will also affect olive production and impact the interactions of olives and their main pest, the obligate olive fruit fly (Bactrocera oleae). This work summarizes the current knowledge on olive fly symbiotic bacteria towards the potential development of symbiosis-based strategies for olive fruit fly control. Particular emphasis is given to Candidatus Erwinia dacicola, an obligate, vertically transmitted endosymbiont that allows the insect to cope with the olive-plant produced defensive compound oleuropein, as a most promising target for a symbiosis disruption approach.

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