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Updated: May 7, 2026

A Blood-Free Diet to Rear Anopheline Mosquitoes
Published on: January 31, 2020
マダニ、ハイマダニの成虫のための再現可能な無宿主給餌システムの開発
Abdul Ghafar1, Bahar E Mustafa1, Charles Gauci1
1Department of Veterinary Biosciences, Melbourne Veterinary School, The University of Melbourne, Victoria, Australia.
Abstract:
Haemaphysalis longicornis is a parthenogenetic three-host tick that has expanded from East Asia into Australasia and the Americas, where it poses increasing veterinary and public-health concern. Yet, laboratory research has been constrained partly by the absence of a reliable artificial feeding system. Here, we establish and optimise an artificial, host-free in vitro feeding platform for adult H. longicornis, utilising a thin silicone membrane that overcomes the species' short hypostome and limited mouthpart mobility. Across six independent experiments using field-collected parthenogenetic adult females from Australia, 67% (35/52) of ticks attached and 74.3% (26/35) engorged, achieving a mean engorgement weight of 161mg (range: 44.8-275mg), a mean egg mass of 67mg (11.4-137mg) and mean bloodmeal-to-egg conversion efficiency of 40% (range: 16.7-59.9%). All engorged females oviposited and produced viable larvae, with egg hatchability exceeding 92% (mean ~98%) and engorgement weight strongly associating with fecundity (r = 0.82). Feeding was completed within 2-7 days, comparable to, or shorter than, feeding on live hosts; hair extract treatment did not enhance feeding or reproductive performance. This host-free system essentially replicates natural feeding performance under controlled laboratory conditions and supports the complete reproductive cycle of adult H. longicornis without an animal host. It provides a reproducible and ethical platform for acaricide and vaccine discovery and studies of tick physiology and pathogen-vector interactions, establishing a foundation for standardised, scalable and welfare-compliant tick research within a One Health framework.
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