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It's not that it eliminated mosquitoes entirely but rather that it effectively eliminated mosquitoes in the genus Aedes.

These are some of the most problematic/disease causing of the mosquitoes but also notably mosquitoes in the Aedes genus are essentially the only mosquitoes that are "hunting" during the day. All the other mosquitoes operate almost exclusively in the evening and at nighttime.

So by eliminating these mosquitoes a major disease vector is eliminated but at the same time it completely eliminates mosquitoes during the day (i.e. the main time when you are out and about trying to enjoy the summer).

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Most mosquitoes are not the blood-sucking kind. It is possible to replace the blood-suckers with other species which still mostly fill the appropriate niches, like the birds' food chains, etc.
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TLDR for this link is that they release male mosquitoes carrying a bacteria called Wolbachia. So this only affects the one species of mosquito they're targeting: Aedes aegypti.
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The article contains the following sentence: "In a randomized trial in Singapore, releases of Wolbachia-infected males cut mosquito populations by 85 percent compared to control areas and dengue infections by roughly 70 percent."

There are different things you can do to mosquitos with different techniques. The article discusses several different techniques. Some eliminate disease-spreading mosquitos, some eliminate the mosquitos. In Singapore, the latter was tried out. It is not the case that Singapore used chemicals.

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How many simultaneous mosquitos in Singapore?

lets say on the order of 1 billion, and let's assume the effectivity doesn't change when considering the 30% unaffected population

it would need to be applied to the surviving 30% repeatedly:

0.3 ^ N = 1 / 1B

so N = log(1B)/log(10/3) = ~17.2 times.

I predict nature protects itself with diversity: some of the male and female wild type will have natural aversion from, attraction to or neutral stance the modified Wolbachia carriers.

I predict that those mosquito family lines that happen to be more Wolbachia-carrier averse become enriched over time.

There is an energetic cost to maintaining a parasitic lifeform, and that energetic term will always favor immunity against the parasite.

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The article discussed alternative methods that have succeeded in being deployed:

> The approach has succeeded at the scale of cities. In a randomized trial in Singapore, releases of Wolbachia-infected males cut mosquito populations by 85 percent compared to control areas and dengue infections by roughly 70 percent.

(mosquitos infected with Wolbachia are both more resistant to diseases, and fail to reproduce in the case of infected male x uninfected female)

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