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Genetic diversity of Aedes aegypti and Aedes albopictus from cohabiting fields in Hainan Island and the Leizhou Peninsula, China. | LitMetric

AI Article Synopsis

  • Aedes aegypti and Ae. albopictus are two mosquito species that spread diseases like yellow fever and Zika, with recent data showing a decline in Ae. aegypti and an expansion of Ae. albopictus in China.
  • A genetic analysis conducted in 2021 on these mosquitoes revealed that Ae. albopictus has higher genetic diversity compared to Ae. aegypti, as shown through various metrics and genetic markers.
  • Results also indicated that Ae. aegypti populations show a significant correlation between genetic and geographic distances, whereas this correlation is not seen in Ae. albopictus populations.

Article Abstract

Background: Aedes aegypti and Ae. albopictus are important human arbovirus vectors that can spread arboviral diseases such as yellow fever, dengue, chikungunya and Zika. These two mosquito species coexist on Hainan Island and the Leizhou Peninsula in China. Over the past 40 years, the distribution of Ae. albopictus in these areas has gradually expanded, while Ae. aegypti has declined sharply. Monitoring their genetic diversity and diffusion could help to explain the genetic influence behind this phenomenon and became key to controlling the epidemic of arboviruses.

Methods: To better understand the genetic diversity and differentiation of these two mosquitoes, the possible cohabiting areas on Hainan Island and the Leizhou Peninsula were searched between July and October 2021, and five populations were collected. Respectively nine and 11 microsatellite loci were used for population genetic analysis of Ae. aegypti and Ae. albopictus. In addition, the mitochondrial coxI gene was also selected for analysis of both mosquito species.

Results: The results showed that the mean diversity index (PIC and SI values) of Ae. albopictus (mean PIC = 0.754 and SI = 1.698) was higher than that of Ae. aegypti (mean PIC = 0.624 and SI = 1.264). The same results were also observed for the coxI gene: the genetic diversity of all populations of Ae. albopictus was higher than that of Ae. aegypti (total H = 45 and Hd = 0.89958 vs. total H = 23 and Hd = 0.76495, respectively). UPGMA dendrogram, DAPC and STRUCTURE analyses showed that Ae. aegypti populations were divided into three clusters and Ae. albopictus populations into two. The Mantel test indicated a significant positive correlation between genetic distance and geographic distance for the Ae. aegypti populations (R = 0.0611, P = 0.001), but the correlation was not significant for Ae. albopictus populations (R = 0.0011, P = 0.250).

Conclusions: The population genetic diversity of Ae. albopictus in Hainan Island and the Leizhou Peninsula was higher than that of Ae. aegypti. In terms of future vector control, the most important and effective measure was to control the spread of Ae. albopictus and monitor the population genetic dynamics of Ae. aegypti on Hainan Island and the Leizhou Peninsula, which could theoretically support the further elimination of Ae. aegypti in China.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10486073PMC
http://dx.doi.org/10.1186/s13071-023-05936-5DOI Listing

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