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- W2620683110 abstract "The chewing lice (Mallophaga) are common parasites of different animals. Most of them infest terrestrial and marine birds, including pigeons, doves, swans, cormorants and penguins. Mallophaga have not been found on marine mammals but only on terrestrial ones, including livestock and pets. Their bites damage cattle, sheep, goats, horses and poultry, causing itch and scratch and arousing phthiriasis and dermatitis. Notably, Mallophaga can vector important parasites, such as the filarial heartworm Sarconema eurycerca. Livestock losses due to chewing lice are often underestimated, maybe because farmers notice the presence of the biting lice only when the infestation is too high. In this review, we examined current knowledge on the various strategies available for Mallophaga control. The effective management of their populations has been obtained through the employ of several synthetic insecticides. However, pesticide overuse led to serious concerns for human health and the environment. Natural enemies of Mallophaga are scarcely studied. Their biological control with predators and parasites has not been explored yet. However, the entomopathogenic fungus Metarhizium anisopliae has been reported as effective in vitro and in vivo experiments against Damalinia bovis infestation on cattle. Furthermore, different Bacillus thuringiensis preparations have been tested against Mallophaga, the most effective were B. thuringiensis var. kurstaki, kenyae and morrisoni. Lastly, plant-borne insecticides have been evaluated against Mallophaga. Tested products mainly contained bioactive principles from two Meliaceae, Azadirachta indica, and Carapa guianensis. High efficacy of neem-borne preparations was reported, leading to the development of several products currently marketed. Overall, our review highlighted that our knowledge about Mallophaga vector activity and control is extremely patchy. Their control still relied on the employ of chemical pesticides widely used to fight other primary pests and vectors of livestock, such as ticks, while the development of eco-friendly control tool is scarce. Behavior-based control of Mallophaga, using pheromone-based lures or even the Sterile Insect Technique (SIT) may also represent a potential route for their control, but our limited knowledge on their behavioral ecology and chemical communication strongly limit any possible approach." @default.
- W2620683110 created "2017-06-09" @default.
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- W2620683110 date "2018-01-01" @default.
- W2620683110 modified "2023-10-11" @default.
- W2620683110 title "Control of biting lice, Mallophaga − a review" @default.
- W2620683110 cites W1031071957 @default.
- W2620683110 cites W1521494794 @default.
- W2620683110 cites W1952533461 @default.
- W2620683110 cites W1968866636 @default.
- W2620683110 cites W1973989974 @default.
- W2620683110 cites W1975145839 @default.
- W2620683110 cites W1976245869 @default.
- W2620683110 cites W1982183891 @default.
- W2620683110 cites W1985037968 @default.
- W2620683110 cites W1989122299 @default.
- W2620683110 cites W1991067139 @default.
- W2620683110 cites W1991217374 @default.
- W2620683110 cites W1991406739 @default.
- W2620683110 cites W1993465426 @default.
- W2620683110 cites W1996803196 @default.
- W2620683110 cites W2003401881 @default.
- W2620683110 cites W2004339010 @default.
- W2620683110 cites W2007179056 @default.
- W2620683110 cites W2009604666 @default.
- W2620683110 cites W2010689687 @default.
- W2620683110 cites W2013483828 @default.
- W2620683110 cites W2014654394 @default.
- W2620683110 cites W2018053674 @default.
- W2620683110 cites W2018233082 @default.
- W2620683110 cites W2036888950 @default.
- W2620683110 cites W2042149081 @default.
- W2620683110 cites W2043442942 @default.
- W2620683110 cites W2045169923 @default.
- W2620683110 cites W2046465806 @default.
- W2620683110 cites W2048091661 @default.
- W2620683110 cites W2054628916 @default.
- W2620683110 cites W2058002023 @default.
- W2620683110 cites W2060759646 @default.
- W2620683110 cites W2068677145 @default.
- W2620683110 cites W2075447010 @default.
- W2620683110 cites W2083618397 @default.
- W2620683110 cites W2086008696 @default.
- W2620683110 cites W2087466501 @default.
- W2620683110 cites W2088491294 @default.
- W2620683110 cites W2090084450 @default.
- W2620683110 cites W2090249770 @default.
- W2620683110 cites W2094325895 @default.
- W2620683110 cites W2096485280 @default.
- W2620683110 cites W2100171591 @default.
- W2620683110 cites W2102430115 @default.
- W2620683110 cites W2107356957 @default.
- W2620683110 cites W2111734837 @default.
- W2620683110 cites W2114976720 @default.
- W2620683110 cites W2135547884 @default.
- W2620683110 cites W2149780980 @default.
- W2620683110 cites W2160809207 @default.
- W2620683110 cites W2161395312 @default.
- W2620683110 cites W2167222136 @default.
- W2620683110 cites W2203922287 @default.
- W2620683110 cites W2267503919 @default.
- W2620683110 cites W2289467090 @default.
- W2620683110 cites W2331779628 @default.
- W2620683110 cites W2333551688 @default.
- W2620683110 cites W2335066893 @default.
- W2620683110 cites W2346369827 @default.
- W2620683110 cites W2419341470 @default.
- W2620683110 cites W2509800390 @default.
- W2620683110 cites W2519028445 @default.
- W2620683110 cites W2533216389 @default.
- W2620683110 cites W2604172528 @default.
- W2620683110 cites W2616531222 @default.
- W2620683110 cites W4246915239 @default.
- W2620683110 cites W873187919 @default.
- W2620683110 doi "https://doi.org/10.1016/j.actatropica.2017.05.031" @default.
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- W2620683110 hasPublicationYear "2018" @default.
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