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Crispr Gene-Drive Technologies For Urban Population Engineering

By surpassing the 50% inheritance limit of Mendel’s law of gene segregation, CRISPR-based gene drives have the potential to fight urban vector-borne diseases or suppress urban pests, but contemporary gene drives can spread unchecked and lack an analog output that modulates inheritance between 50–100...

Population Expansion And High Gene Flow In Aedes Fluviatilis (Diptera: Culicidae) In Urban Areas

Aedes fluviatilis is an anthropophilic mosquito abundantly found in urban environments, however, its biology, epidemiological role and genetic characteristics are poorly known. Urbanization processes that resulted in environmental modifications together with climate change benefit certain anthropoph...

TRIALS to ERADICATE INFESTATIONS of the ARGENTINE ANT, LINEPITHEMA HUMILE (HYMENOPTERA: FORMICIDAE), in NEW ZEALAND

The Argentine ant (Linepithema humile) is a highly invasive species, a major urban pest, and capable of impacting native systems. It was first found in New Zealand in 1990, and in March 2000, a population was discovered on a 200-ha island reserve of conservation significance. This led to a call for ...

MANAGING CARPENTER ANT POPULATIONS IN URBAN ENVIRONMENTS
L. D. Hansen | Full Paper | 1996

Impact of carpenter ant infestations in structures ranges from nuisance pests to seriously damaging pests if structural timbers are attacked. Carpenter ants excavate wood to form galleries for their brood and tunnels for foragers. A mature colony consists of a parent or main colony with the queen, w...