bioRxiv Science⌕ Search

Biology subjects

Karahan, A.

Publications and source records attributed to Karahan, A..

3 recordsLinked to original sources

Species delimitation analysis indicates cryptic speciation for Terpios gelatinosus (Porifera, Demospongiae) from coastal regions of the northeastern Mediterranean Sea

Sponges, comprising over 9000 recorded species, represent one of the most primitive groups of metazoans. Given the importance of species distribution records and the identification of new species in scientific research, these endeavors play a crucial role in enhancing ecological insights, conserving biodiversity, facilitating a better understanding of the relationships between various groups of organisms, advancing our knowledge of evolution, and potentially expanding biomedical implications. In this study, we used basic morphological data, mitochondrial Cytochrome Oxidase I (COI) gene, and Internal Transcribed Spacer two (ITS2) regions to evaluate the Terpios samples collected from four coastal sites along the northeastern Mediterranean Sea, covering a distance of approximately 450 km. For this purpose, 81 COI and 11 ITS2 records of the order Suberitida were mined from GenBank, and species delimitation analysis was performed using both the Automatic Barcode Gap Discovery method and the Poisson Tree Process (PTP), along with 11 samples from the present study. While we observed slight differences in spicule sizes, the overall morphology of all samples from our study was similar. Within the scope of this research, we report the first-ever presence record of T. gelatinosus in the northeastern Mediterranean Sea. Furthermore, we document evidence pointing to the potential existence of cryptic speciation in the region.

evolutionary biology↗

Species delimitation of eight ascidian (Tunicata) species from the North Eastern Mediterranean

Members of the tunicates, a subphylum of marine filter-feeder chordates, inhabit all marine and oceanic habitats from the subtidal to the abyssal. Considered as the closest relatives to the vertebrates, the tunicates are widely used as model organisms for evo-devo, allorecognition, senescence, and whole-body regeneration studies. Yet, species boundaries are poorly understood due to high morphological and genetic plasticity that characterize many tunicates taxa. Here we study taxonomy and the distribution of eight tunicate species (Botrylloides niger Herdman, 1886/ aff. leachii, Botrylloides israeliense Brunetti, 2009, Botrylloides sp., Botrylloides anceps (Herdman, 1891), Botryllus schlosseri (Pallas, 1766), Didemnum perlucidum Monniot F., 1983, Symplegma brakenhielmi (Michaelsen, 1904) and Polyclinum constellatum Savigny, 1816) sampled from six Turkish North Eastern Mediterranean Sea sites and employed the mitochondrial barcoding marker (COI) for evaluating the relationships among geographically restricted and widely spread ascidian species. Species delimitation analysis was conducted using NCBI and the present study sequences. Morphological examinations were first done in the field and then, styelide colonies were cultured in the laboratory and studied using stereo and light microscopes. A putative new Botrylloides species (Botrylloides sp.) from the Antalya region was revealed, with 99% matching on the COI gene from Saudi Arabia, further awaiting for detailed traditional taxonomy.

genetics↗

Phylogeographic and morphological analysis of Botrylloides niger Herdman, 1886 from the northeastern Mediterranean Sea

Botrylloides niger is an invasive marine filter-feeding invertebrate that is believed to originate from the West Atlantic region. This species of colonial tunicate has been observed on several locations along the coasts of Israel and around the Suez Canal but it has not yet been reported on the coasts of the northeastern Mediterranean Sea (NEMS), suggesting an ongoing Lessepsian migration. However, the extent of this invasion might be concealed by reports of other potentially misidentified species of Botrylloides, given that the strong morphological similarities within this genus renders taxonomical identification particularly challenging. In this study, we performed a phylogeographic and morphological analysis of B. niger in the NEMS. We collected 241 samples from 8 sampling stations covering 824 km of coastlines of NEMS. We reported 14 different morphotypes, of which the orange-brown, orange and brown-striped morphs were the most abundant. Using the mitochondrial cytochrome C oxidase I (COI), one of the four most commonly used DNA barcoding marker, we identified 4 haplotypes with the Konack (H4) and the Mezitli (H3) ones being the most diverged. The COI haplotypes clustered with the reference B. niger sequences from GenBank and separated from sister Botrylloides species with high confidence. We confirmed our identification using the three additional barcoding markers (Histone 3, 18S rRNA and 28S rRNA), which all matched with over 99% similarity to the reference sequences. In addition, we monitored the Kzkalesi station for a year and applied temporal analysis to the colonies collected. The colonies regressed during winter while resettled and expanded during summer. We performed gene flow analysis on our spatial data that identified a possible population subdivision at the sampling site of Side, which might be caused by a local freshwater input. Overall, we here present the first report on the presence of Botrylloides niger in the NEMS, we show that this species is commonly present throughout this region and with a particularly high morphological as well as genomic diversity.

zoology↗