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The habitat disruption induces immune-suppression and oxidative stress in honey bees. | LitMetric

AI Article Synopsis

  • Honey bees are vital for pollinating many crops globally, but their use in greenhouses can harm their habitats and health.
  • The introduction of honey bee colonies in greenhouses in Japan has led to significant colony collapses, highlighting the need to manage these populations carefully.
  • Research shows that greenhouse environments can alter honey bees' gene expressions, leading to immune suppression and increased stress from pathogens, contributing to their decline.

Article Abstract

The honey bee is a major insect used for pollination of many commercial crops worldwide. Although the use of honey bees for pollination can disrupt the habitat, the effects on their physiology have never been determined. Recently, honey bee colonies have often collapsed when introduced in greenhouses for pollination in Japan. Thus, suppressing colony collapses and maintaining the number of worker bees in the colonies is essential for successful long-term pollination in greenhouses and recycling of honey bee colonies. To understand the physiological states of honey bees used for long-term pollination in greenhouses, we characterized their gene expression profiles by microarray. We found that the greenhouse environment changes the gene expression profiles and induces immune-suppression and oxidative stress in honey bees. In fact, the increase of the number of Nosema microsporidia and protein carbonyl content was observed in honey bees during pollination in greenhouses. Thus, honey bee colonies are likely to collapse during pollination in greenhouses when heavily infested with pathogens. Degradation of honey bee habitat by changing the outside environment of the colony, during pollination services for example, imposes negative impacts on honey bees. Thus, worldwide use of honey bees for crop pollination in general could be one of reasons for the decline of managed honey bee colonies.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3287300PMC
http://dx.doi.org/10.1002/ece3.21DOI Listing

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