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Understanding the genetic basis of adaptation to novel environments remains one of the major challenges confronting evolutionary biologists. While newly developed genomic approaches hold considerable promise for addressing this overall question, the relevant tools have not often been available in t...
ORGANISM(S): Drosophila mojavensis 
Although the importance of host plant chemistry in plant-insect interactions is widely accepted, the genetic basis of adaptation to host plants is poorly understood. Here, we investigate transcriptional changes associated with a host plant shift in Drosophila mettleri. While D. mettleri is distribut...
ORGANISM(S): Drosophila mettleri 
Cactus Mouse Reproductive Supression
Rhizosphere soil from prickly pear cactus Raw sequence reads
In the presence of environmental change, natural selection can shape the transcriptome. Under a scenario of environmental change, genotypes that are better able to modulate gene expression to maximize fitness will tend to be favored. Therefore, it is important to examine gene expression at the popul...
ORGANISM(S): Drosophila mojavensis 
2012-06-18 | GSE35937 | GEO
ABSTRACT: The cactus mouse (Peromyscus eremicus) is a desert-specialized rodent that experiences both chronic and acute dehydration in the Southwestern United States. Our previous research has generated substantial transcriptomic data on P. eremicus kidneys, testes, epididymis, and vas deferens in ...
ORGANISM(S): Peromyscus eremicus 
2022-03-02 | PXD006532 | Pride
Understanding the genetic basis of adaptation to novel environments remains one of the major challenges confronting evolutionary biologists. While newly developed genomic approaches hold considerable promise for addressing this overall question, the relevant tools have not often been available in th...
ORGANISM(S): Drosophila mojavensis 
2007-01-24 | GSE5148 | GEO
Canine heartworm is a widespread and potentially fatal mosquito-borne disease caused by infections with the parasitic nematode, Dirofilaria immitis. We have previously shown that systemic activation of the Toll immune pathway via silencing of the negative regulator Cactus in Aedes aegypti blocks par...
ORGANISM(S): Aedes aegypti 
2024-08-27 | PXD036225 | Pride
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