FB2026_03 , released September 17, 2026
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Citation
Dayal Aggarwal, D., Mishra, P., Patel, Y., Singh, M., Sharma, V., Korol, A.B., Michalak, P. (2025). Experimental evolution-induced transcriptome and phenotype responses of Drosophila melanogaster to novel thermal environments.  J. Exp. Biol. 228(19): jeb251365.
FlyBase ID
FBrf0263598
Publication Type
Research paper
Abstract
Thermal stress imposes significant challenges on organisms, influencing cellular functions, morphology and survival. This study investigates the transcriptomic and phenotypic adaptations of Drosophila melanogaster populations subjected to constant high-temperature (HT) and fluctuating-temperature (FT) regimes over 80 generations in experimental evolution settings. RNA sequencing identified 1288 and 1152 differentially expressed genes in HT and FT populations, respectively, relative to the baseline population. Multiple gene ontology (GO) terms, including chromatin organization, nucleosome assembly, nucleic acid binding and polytene chromosome band formation, were enriched under both regimes, suggesting shared adaptive pathways. A weighted gene co-expression network analysis (WGCNA) revealed mitochondrial function and protein homeostasis as central to thermal adaptation, with HT populations showing enrichment of DNA repair and FT populations exhibiting enrichment of RNA processing and translation regulation-related terms. Phenotypic assays demonstrated increased heat tolerance, accelerated development and prolonged longevity in evolved populations, highlighting parallel as well as thermal regime-specific adaptive responses. This study emphasizes the complexity of transcriptomic-phenotypic adaptations to thermal stress in new environments.
PubMed ID
PubMed Central ID
PMC12539207 (PMC) (EuropePMC)
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Secondary IDs
    Language of Publication
    English
    Additional Languages of Abstract
    Parent Publication
    Publication Type
    Journal
    Abbreviation
    J. Exp. Biol.
    Title
    Journal of Experimental Biology
    Publication Year
    1930-
    ISBN/ISSN
    0022-0949
    Data From Reference
    Genes (6)