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Praphawilai, P.

Publications and source records attributed to Praphawilai, P..

2 recordsLinked to original sources

First estimates of the population growth rate of the parasitic honey bee mite Tropilaelaps mercedesae in Apis mellifera colonies

A parasitic mite of honey bee brood (Tropilaelaps mercedesae), is spreading through populations of Apis mellifera honey bees in new regions and poses a major threat to honey bee health. Despite its clear threat, the biology of this mite is poorly understood, with gaps on such fundamental issues as how fast its populations can grow. This leaves the beekeeping world underprepared to plan for its arrival and management. In this study, we documented the growth of T. mercedesae populations in untreated A. mellifera colonies in Thailand and South Korea, and did the same for another parasitic mite (Varroa destructor) when possible. We found that the population growth of T. mercedesae was variable but could reach high levels (daily r of 0.010, 0.036, and 0.057), while the population growth of V. destructor (r = 0.021) matched previous estimates. Our results indicate that T. mercedesae populations can grow rapidly but they do not always attain this potential. Based on our results, humidity should be studied as a potential driver of population growth. If future work can reveal key drivers of T. mercedesae population growth, this would help predict infestations and help design management strategies that exploit the pests biological vulnerabilities.

zoology↗

High Sensitivity of Tropilaelaps mercedesae to Lithium Chloride: A Novel Acaricidal Candidate for Honey Bee Health

The escalating threat of the ectoparasitic mite Tropilaelaps mercedesae requires novel control strategies for honey bee (Apis mellifera) health4. In this study, we provide the first evidence of the acaricidal efficacy of lithium chloride (LiCl) against this emerging parasite. Ex situ contact bioassays quantified the dose-response relationship, revealing a 12-hour LC50 of 45.9 mM. These results indicate that T. mercedesae is intrinsically more than 3.5 times more sensitive to LiCl than the widespread Varroa destructor. We translated these findings to field conditions in a pilot trickling trial on infested A. m. ligustica colonies. Repeated administration of 500 mM lithiated sugar syrup induced characteristic tremors and a sharp increase in mite fall, confirming that the acaricidal effect manifests in situ even in the presence of brood. Our findings identify lithium as a highly effective, naturally occurring candidate for Tropilaelaps management. This warrants larger-scale trials to refine application protocols and evaluate long-term colony safety for sustainable apiculture.

zoology↗