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Thermal evolution of gene expression profiles in Drosophila subobscura

Authors: Laayouni, Hafid; García-Franco, Francisco; Chávez-Sandoval, Blanca E.; Trotta, Vincenzo; Beltran i Agulló, Sergi; Corominas, Montserrat (Corominas Guiu); Santos Maroño, Mauro;

Thermal evolution of gene expression profiles in Drosophila subobscura

Abstract

AbstractBackgroundDespite its pervasiveness, the genetic basis of adaptation resulting in variation directly or indirectly related to temperature (climatic) gradients is poorly understood. By using 3-fold replicated laboratory thermal stocks covering much of the physiologically tolerable temperature range for the temperate (i.e., cold tolerant) speciesDrosophila subobscurawe have assessed whole-genome transcriptional responses after three years of thermal adaptation, when the populations had already diverged for inversion frequencies, pre-adult life history components, and morphological traits. Total mRNA from each population was compared to a reference pool mRNA in a standard, highly replicated two-colour competitive hybridization experiment using cDNA microarrays.ResultsA total of 306 (6.6%) cDNA clones were identified as 'differentially expressed' (following a false discovery rate correction) after contrasting the two furthest apart thermal selection regimes (i.e., 13°Cvs. 22°C), also including four previously reported candidate genes for thermotolerance inDrosophila(Hsp26,Hsp68,Fst, andTreh). On the other hand, correlated patterns of gene expression were similar in cold- and warm-adapted populations. Analysis of functional categories defined by the Gene Ontology project point to an overrepresentation of genes involved in carbohydrate metabolism, nucleic acids metabolism and regulation of transcription among other categories. Although the location of differently expressed genes was approximately at random with respect to chromosomes, a physical mapping of 88 probes to the polytene chromosomes ofD. subobscurahas shown that a larger than expected number mapped inside inverted chromosomal segments.ConclusionOur data suggest that a sizeable number of genes appear to be involved in thermal adaptation inDrosophila, with a substantial fraction implicated in metabolism. This apparently illustrates the formidable challenge to understanding the adaptive evolution of complex trait variation. Furthermore, some clustering of genes within inverted chromosomal sections was detected. Disentangling the effects of inversions will be obviously required in any future approach if we want to identify the relevant candidate genes.

Country
Spain
Keywords

Drosophila subobscura, Evolution, Adaptation, Biological, Drosòfila, Differential gene expression analysis, QH359-425, Expressió genètica, Animals, RNA, Messenger, Polytene chromosome, Ecology, Evolution, Behavior and Systematics, In Situ Hybridization, Oligonucleotide Array Sequence Analysis, Analysis of Variance, Gene Expression Profiling, Inversion polymorphism, Temperature, Chromosome Mapping, Expressió gènica, Biological Evolution, Thermal adaptation, Latitudinal cline, Drosophila melanogaster, Gene Expression Regulation, Gene expression, Research Article

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popularity
This indicator reflects the "current" impact/attention (the "hype") of an article in the research community at large, based on the underlying citation network.
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influence
This indicator reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically).
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impulse
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