Rapidly evolving genes underlie Aedes aegypti mosquito reproductive resilience during drought

Author:

Venkataraman KrithikaORCID,Shai NadavORCID,Lakhiani PriyankaORCID,Zylka SarahORCID,Zhao JieqingORCID,Herre MargaretORCID,Zeng JoshuaORCID,Neal Lauren A.ORCID,Molina HenrikORCID,Zhao LiORCID,Vosshall Leslie B.ORCID

Abstract

SUMMARYFemale Aedes aegypti mosquitoes impose a severe global public health burden as vectors of multiple viral pathogens. Under optimal environmental conditions, Aedes aegypti females have access to human hosts that provide blood proteins for egg development, conspecific males that provide sperm for fertilization, and freshwater that serves as an egg-laying substrate suitable for offspring survival. As global temperatures rise, Aedes aegypti females are faced with climate challenges like intense droughts and intermittent precipitation, which create unpredictable, suboptimal conditions for egg-laying. Here we show that under drought-like conditions simulated in the laboratory, females retain mature eggs in their ovaries for extended periods, while maintaining the viability of these eggs until they can be laid in freshwater. Using transcriptomic and proteomic profiling of Aedes aegypti ovaries, we identify two previously uncharacterized genes named tweedledee and tweedledum, each encoding a small, secreted protein that both show ovary-enriched, temporally-restricted expression during egg retention. These genes are mosquito-specific, linked within a syntenic locus, and rapidly evolving under positive selection, raising the possibility that they serve an adaptive function. CRISPR-Cas9 deletion of both tweedledee and tweedledum demonstrates that they are specifically required for extended retention of viable eggs. These results highlight an elegant example of taxon-restricted genes at the heart of an important adaptation that equips Aedes aegypti females with “insurance” to flexibly extend their reproductive schedule without losing reproductive capacity, thus allowing this species to exploit unpredictable habitats in a changing world.

Publisher

Cold Spring Harbor Laboratory

Reference103 articles.

1. Aestivation induces changes in the mRNA expression levels and protein abundance of two isoforms of urea transporters in the gills of the African lungfish, Protopterus annectens;Front Physiol,(2017)

2. Effects of experimental terrestrialization on the skin mucus proteome of African lungfish (Protopterus dolloi);Front Immunol,(2018)

3. Genetic Basis of Migratory Behavior in European Warblers

4. Rapid microevolution of migratory behaviour in a wild bird species

5. K. Delmore et al., The evolutionary history and genomics of European blackcap migration. Elife 9, (2020).

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