Logo Lanfrica
  • Home
  • Atlas
  • Insights
  • Docs
  • Sign in

© 2026 Lanfrica. All rights reserved. All copyrights of the resources shown on the Lanfrica website belong to the original copyright holders, unless explicitly stated otherwise.

Data from: Reproductive isolation and local adaptation quantified for a chromosome inversion in a malaria mosquito

Domain:

healthcare

Record type:

dataset
Creator:
Ayala, DiegoGueKir
Publisher:
Dry
Host:avatar
Chromosome inversions have long been thought to be involved in speciation and local adaptation. We have little quantitative information, however, about the effects that inversion polymorphisms have on reproductive isolation and viability. Here we provide the first estimates from any organism for the total amount of reproductive isolation associated with an inversion segregating in natural populations. We sampled chromosomes from 751 mosquitoes of the malaria vector Anopheles funestus along a 1421 km transect in Cameroon that traverses savannah, highland, and rainforest ecological zones. We then developed a series of population genetic models that account for selection, migration, and assortative mating, and fit the models to the data using likelihood. Results from the best-fit models suggest there is strong local adaptation, with relative viabilities of homozygotes ranging from 25% to 130% compared to heterozygotes. Viabilities vary qualitatively between regions: the inversion is underdominant in the savannah, while in the highlands it is overdominant. The inversion is also implicated in strong assortative mating. In the savannah, the two homozygote forms show 92% reproductive isolation, suggesting that this one inversion can generate most of the genetic barriers needed for speciation. KaryotypeCountsField data. Number of Anopheles funestus collected in populations of Cameroon, by the type of arrangement in3Ra. Columns are: The name of the village, Longitude and Latitude (in WGS84 UTM Zone 33 North), the distance in km from the start of the transect, the counts of Standard homozygotes (SS), Heterozygotes (SI), and Inverted Homozygotes (II), and the total of individuals collectedSource CodeCode.zip

Visit

doi.orgdatadryad.org

Tags

Anopheles funestuskaryotype dataChromosomal Evolutionchromosome inversions

Licenses

Creative Commons Zero v1.0 Universalhttps://creativecommons.org/publicdomain/zero/1.0/legalcode

Similar

Supporting data for "A chromosome-scale assembly of the major African malaria vector Anopheles funestus"Data from: Stepwise evolution of a butterfly supergene via duplication and inversionA handmade trap for malaria mosquito surveillance by citizens in RwandaIntegrating routinely collected mosquito vector and human behavioral data for malaria prevention: A case example in central region MalawiData and code from: Multiple sex chromosome drivers in a mammal with three sex chromosomesMosquito detection with low-cost smartphones: data acquisition for malaria research

Supporting data for "A chromosome-scale assembly of the major African malaria vector Anopheles funestus"

Anopheles funestus is one of the three most consequential and widespread vectors of human malaria in

Data from: Stepwise evolution of a butterfly supergene via duplication and inversion

Supergenes maintain adaptive clusters of alleles in the face of genetic mixing. Although us

A handmade trap for malaria mosquito surveillance by citizens in Rwanda

For effective sampling of mosquitoes in malaria surveillance programmes, it is essential to include

Integrating routinely collected mosquito vector and human behavioral data for malaria prevention: A case example in central region Malawi

Abstract Background Integrating huma

Data and code from: Multiple sex chromosome drivers in a mammal with three sex chromosomes

Eukaryotes with separate males and females display a great diversity in the way

Mosquito detection with low-cost smartphones: data acquisition for malaria research

Mosquitoes are a major vector for malaria, causing hundreds of thousands of deaths in the developing