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Wink, M.

Publications and source records attributed to Wink, M..

3 recordsLinked to original sources

Phylogenomics and biogeography of the parrot genus Pyrrhura with implications for systematics and conservation

The genus Pyrrhura (Psittacidae: Arini) is one of the most diverse groups of Neotropical parrots. Its species are charismatic, widely kept as pets, and frequently bred outside their native ranges. Yet, nearly half are currently listed as threatened by the IUCN within their natural distributions. Conservation assessments and population estimates often depend on the validity of accepted taxonomic boundaries. However, despite previous systematic efforts, the evolutionary relationships among and within many Pyrrhura species remain poorly resolved, largely due to a recent and rapid radiation. Here, we generated whole-genome sequences for all currently recognized Pyrrhura species, including multiple intraspecific taxa, to reconstruct a robust nuclear phylogeny under the multi-species coalescent model, alongside the most comprehensive mitogenome-based phylogeny of the genus to date. Although both phylogenies supported the monophyly of most currently accepted species, we identified several instances of mito-nuclear discordance, particularly involving the placement of early-diverging lineages, which are best explained by incomplete lineage sorting and historical gene flow. Additionally, we detected three distinct captive lineages that do not cluster with any known wild populations, suggesting substantial overlooked genetic diversity in the worlds captive populations. Ancestral range reconstructions indicate multiple and relatively recent colonization events into the northern and central Andes, likely associated with the uplift of the Andes and the emergence of new ecological niches. Together, our results reveal a complex evolutionary history in Pyrrhura, shaped by rapid radiations, incomplete lineage sorting, and gene flow. We show that integrating nuclear and mitochondrial data with broad geographic and taxonomic sampling, including captive individuals, can uncover overlooked genetic diversity and help to resolve long-standing systematic uncertainties. Finally, we show that several topological discrepancies among previous studies can be attributed to differences in sampling strategies, particularly within the most polytypic Pyrrhura species.

evolutionary biology↗

Genetic Diversity, Taxonomic Insights and Geographic Distribution of Bubo bubo Subspecies in Iran

The Eurasian Eagle Owl (Bubo bubo) exhibits a complex taxonomic structure with multiple subspecies across its broad geographic range, including southwestern Asia. While much is known about the species distribution in Europe and Asia, the taxonomic status and distribution of B. bubo subspecies in Iran remain poorly understood. This study aims to explore the genetic diversity and taxonomic relationships of B. bubo subspecies in Iran through mitochondrial gene analysis, focusing on nucleotide sequences of the cytochrome b (cytb) gene. A total of 36 samples collected from diverse localities across Iran, representing different ecological regions. Phylogenetic analysis revealed two distinct clades: one comprising western Iranian samples clustering with European (mostly from Germany) samples, and the other consisting of eastern and southern Iranian samples that shared haplotypes with populations from China. Notably, the western Iranian clade exhibited a minimal genetic distance from European populations, while the eastern Iranian clade was genetically similar to Chinese B. bubo subspecies, including B. bubo turkomanus. The genetic diversity indices for the Iranian population were relatively low, with three identified haplotypes and low nucleotide and haplotype diversity. Demographic analyses indicated a potential population expansion for the species, supported by a unimodal mismatch distribution and negative neutrality indices, although these results were not statistically significant for the Iranian population. The findings suggest that two subspecies, B. bubo nikolskii and B. bubo interpositus, are likely present in Iran, aligning with recent taxonomic assessments, but further investigation with additional genetic markers is needed to clarify the deeper evolutionary relationships among these populations. This study contributes new insights into the genetic landscape of B. bubo in Iran and the broader Palearctic region, with implications for conservation and future taxonomic revisions. Simple SummaryThis study examines the genetic diversity, taxonomic relationships, and geographic distribution of Bubo bubo subspecies in Iran, utilizing mitochondrial gene analysis, with a particular focus on the cytochrome b (cytb) gene. The research, based on 36 samples from various regions in Iran, reveals two distinct clades: one aligning with European populations and the other sharing haplotypes with Chinese subspecies. While genetic diversity in Iranian populations was relatively low, the findings highlight the presence of B. bubo nikolskii and B. bubo interpositus subspecies in Iran, emphasizing the importance of further genetic investigations for conservation and taxonomic revisions in the Palearctic region.

zoology↗

Rock Buntings in Central Europe: Phylogeographic connectivity and a current inventory in the Upper Middle Rhine valley

The Rock Bunting (Emberiza cia) occurs from the Iberian Peninsula to mountainous regions in Central Asia. In Europe, its centre of distribution lays in the Mediterranean region. A small subpopulation is found in Germany in rocky habitats (often with vineyards) along the rivers Middle Rhine, Nahe, Main, Moselle and Ahr. In this study, the German population of the Rock Bunting was monitored for more than 15 years and a continuous decline was observed. Buntings were mist netted and colour ringed; furthermore, blood samples were collected for a DNA analysis. For 122 samples the variability of nucleotide sequences of the mitochondrial cytochrome b gene and the allele distribution of 12 polymorphic microsatellite markers were investigated. Both mtDNA and nuclear DNA show genetical variability, but no geographic clustering, indicating a connectivity and gene flow between the German subpopulations.

evolutionary biology↗