Search bioRxiv⌕ Search

Biology subjects

Aliabadian, M.

Publications and source records attributed to Aliabadian, M..

2 recordsLinked to original sources

An introgressed haplotype decouples phenotype from genome-wide ancestry

Introgression redistributes genetic variation among diverging lineages, shaping evolution-ary trajectories and contributing to phenotypic evolution. Yet how localized introgressed genomic regions persist despite extensive genomic homogenization remains poorly under-stood. Here, we investigate the evolutionary history of the northeastern Iranian great tit (Parus major intermedius), a grey-plumaged member of the great tit complex occurring at the eastern range margin of the green- and yellow-plumaged major lineage, adjacent to the grey-plumaged Central Asian bokharensis lineage, and long regarded as a putative hybrid. We find that P. m. intermedius retains predominantly major-derived genomic ancestry despite its grey plumage, revealing extensive genomic homogenization across the genome. Surprisingly, a single localized introgressed haplotype on chromosome 24 retains bokharensis-derived ancestry, exhibits elevated genomic differentiation relative to the genomic background, and overlaps the carotenoid-processing gene BCO2, a strong candidate underly-ing plumage pigmentation. Our findings provide a genomic explanation for the discordance between phenotype and genome-wide ancestry, demonstrating how localized introgression can preserve genomic regions associated with phenotypic divergence despite extensive genomic homogenization. This system illustrates how individual genomic regions can retain distinct evolutionary histories long after the surrounding genome has largely homogenized.

evolutionary biology↗

DNA barcoding of passerine birds at an ornithological crossroad reveals significant East-West genetic lineage divergence

Exploring genetic diversity is essential for precise species delimitation, especially within taxonomically complex groups like passerine birds. Traditional morphological methods often fail to resolve species boundaries; however, DNA barcoding, particularly through the mitochondrial cytochrome c oxidase subunit I (COI) gene, provides a powerful alternative method for accurate species identification. This study establishes a comprehensive DNA barcode library for Iranian passerine birds, analyzing 537 COI sequences from 94 species across 23 families and 53 genera. We observed a pronounced barcode gap, with average intraspecific divergence at 0.4% and interspecific divergence at 18.6%. Notable intraspecific variation emerged in the Persian nuthatch (Sitta tephronota) and the Lesser whitethroat (Curruca curruca), while the goldfinch (Carduelis carduelis) showed limited genetic differentiation despite marked morphological distinctions. Phylogenetic analysis revealed significant east-west genetic splits in C. curruca and S. tephronota, reflecting geographic and zoogeographic boundaries of Iran. These findings demonstrate the effectiveness of DNA barcoding in elucidating biogeographic patterns, emphasizing the key role of Iran as an ornithological crossroads for avian biodiversity. Moreover, our results suggest that much of the genetic variation in the COI gene arises from synonymous mutations, highlighting the role of purifying selection in shaping mtDNA diversity across species.

zoology↗