AI Article Synopsis

  • Interspecific transmission of pathogens among wild bees is primarily influenced by honey bee (Apis mellifera) colonies, which act as reservoirs for these pathogens, leading to significant concerns for wild bee populations in Italy due to limited data availability.
  • A study sampled 3,372 bees across 11 Italian regions, finding that 68.4% were infected with at least one pathogen, with DWV, BQCV, N. ceranae, and CBPV being the most common.
  • The research identified that factors such as meteorological conditions and agricultural practices have a larger impact on pathogen spread than apiary density, highlighting the need for conservation efforts to protect wild bee health and populations.

Article Abstract

The interspecific transmission of pathogens can occur frequently in the environment. Among wild bees, the main spillover cases are caused by pathogens associated with Apis mellifera, whose colonies can act as reservoirs. Due to the limited availability of data in Italy, it is challenging to accurately assess the impact and implications of this phenomenon on the wild bee populations. In this study, a total of 3372 bees were sampled from 11 Italian regions within the BeeNet project, evaluating the prevalence and the abundance of the major honey bee pathogens (DWV, BQCV, ABPV, CBPV, KBV, Nosema ceranae, Ascosphaera apis, Crithidia mellificae, Lotmaria passim, Crithidia bombi). The 68.4% of samples were positive for at least one pathogen. DWV, BQCV, N. ceranae and CBPV showed the highest prevalence and abundance values, confirming them as the most prevalent pathogens spread in the environment. For these pathogens, Andrena, Bombus, Eucera and Seladonia showed the highest mean prevalence and abundance values. Generally, time trends showed a prevalence and abundance decrease from April to July. In order to predict the risk of infection among wild bees, statistical models were developed. A low influence of apiary density on pathogen occurrence was observed, while meteorological conditions and agricultural management showed a greater impact on pathogen persistence in the environment. Social and biological traits of wild bees also contributed to defining a higher risk of infection for bivoltine, communal, mining and oligolectic bees. Out of all the samples tested, 40.5% were co-infected with two or more pathogens. In some cases, individuals were simultaneously infected with up to five different pathogens. It is essential to increase knowledge about the transmission of pathogens among wild bees to understand dynamics, impact and effects on pollinator populations. Implementing concrete plans for the conservation of wild bee species is important to ensure the health of wild and human-managed bees within a One-Health perspective.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10907577PMC
http://dx.doi.org/10.1038/s41598-024-55718-xDOI Listing

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