Closely related wild species Aspergillus flavus and its domesticated form Aspergillus oryzae Transcriptome or Gene expression

Copy number polymorphisms of nucleotide tandem repeat (TR) regions, such as microsatellites and minisatellites, are mutationally reversible and highly abundant in eukaryotic genomes. Studies linking TR polymorphism to phenotypic variation have led some to suggest that TR variation modulates and majorly contributes to phenotypic variation, however, studies that assess the genome-wide impact of TR variation on phenotype are lacking. To address this question, we quantified relationships between polymorphism levels in 143 genome-wide promoter region TRs across 16 isolates of the filamentous fungus Aspergillus flavus and its ecotype A. oryzae with expression levels of their downstream genes. We found that only 4.3% of relationships tested were significant these were consistent with models where TRs act as “tuning”, “volume” or optimality” “knobs” of phenotype, but not with “switch” models. Furthermore, the promoter regions of differentially expressed genes between A. oryzae and A. flavus did not show TR enrichment, suggesting that genome-wide differences in molecular phenotype between the two species are not significantly associated with TRs. Although in some cases TR polymorphisms do contribute to transcript abundance variation, these results argue that at least in this case, TRs might not be major modulators of variation in phenotype.

Identifier
Source https://data.blue-cloud.org/search-details?step=~012753D209A8FEB0C100CB1211A7BA85493A870B4A9
Metadata Access https://data.blue-cloud.org/api/collections/753D209A8FEB0C100CB1211A7BA85493A870B4A9
Provenance
Instrument Illumina HiSeq 2000; ILLUMINA
Publisher Blue-Cloud Data Discovery & Access service; ELIXIR-ENA
Contributor Vanderbilt University
Publication Year 2024
OpenAccess true
Contact blue-cloud-support(at)maris.nl
Representation
Discipline Marine Science
Temporal Coverage Begin 2012-12-30T00:00:00Z
Temporal Coverage End 2013-11-11T00:00:00Z