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Abstract

The occurrence of three bamboo aphid species of the genus Takecallis was detected. T. arundicolens (Clarke) and T. arundinariae (Essig) were recorded for the first time in Poland, and new localities for T. nigroantennatus Wieczorek were found. Key diagnostic morphological characteristics to help distinguish these species and DNA barcoding to analyze individuals at the molecular level were provided.
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Authors and Affiliations

Karina Wieczorek
1
Kaja Ball
1
Roma Durak
2
Beata Borowiak-Sobkowiak
3

  1. Institute of Biology, Biotechnology and Environmental Protection, Faculty of Natural Sciences, University of Silesia in Katowice, Katowice, Poland
  2. Institute of Biology, University of Rzeszów, Rzeszów, Poland
  3. Department of Entomology and Environmental Protection, Poznań University of Life Sciences, Poznań, Poland
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Abstract

Brittle stars (Echinodermata: Ophiuroidea) comprise over 2,000 species, all of which inhabit marine environments and can be abundant in the deep sea. Morphological plasticity in number and shape of skeletal parts, as well as variable colors, can complicate correct species identification. Consequently, DNA sequence analysis can play an important role in species identification. In this study we compared the genetic variability of the mitochondrial cytochrome c subunit I gene (COI) and the nuclear small subunit ribosomal DNA (SSU, 18S rDNA) to morphological identification of 66 specimens of 11 species collected from the North Atlantic in Icelandic waters. Also two species delimitation tools, Automatic Barcode Gap Discovery (ABGD) and General Mixed Yule Coalescence Method (GMYC) were performed to test species hypotheses. The analysis of both gene fragments was successful to discriminate between species and provided new insights into some morphological species hypothesis. Although less divergent than COI, it is helpful to use the SSU region as a complementary fragment to the barcoding gene.
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Authors and Affiliations

Pedro Martínez Arbizu
Sahar Khodami
Sabine Stöhr
Silke Laakmann
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Abstract

The family Gobiidae is the largest teleost family, consisting of more than 2,000 species in more than 200 genera. They have adapted to a wide range of habitats, inhabiting mostly marine and brackish waters. Recently invasive Ponto-Caspian gobies have caused significant changes to the structure of fish assemblage throughout the European waters. The aim of the study was to verify the possibility of identifying three species of the genus Gobiidae based on the analysis of the mitochondrial region of the cytochrome oxidase subunit 1 (COI) gene. 339 samples originated from seven countries and 17 different sites were investigated. Qualitative and quantitative assessment of the extracted DNA was conducted by measuring light absorbance and electrophoretic separation. Approximately 650-bp (base pairs) fragments were amplified from the 5' region of the mitochondrial COI with the PCR (polymerase chain reaction) reaction. Sequences of 652 bp were obtained and compared with reference sequences in the National Center for Biotechnology Information (NCBI). Based on the sequence analysis, we determined that in the analysed geographical regions, the goby preliminary identified morphologically as the round goby was represented by three species: round goby ( Neogobius melanostomus), tubenose goby ( Proterorhinus marmoratus), and monkey goby ( Neogobius fluviatilis). The latter two are newly reported for their new habitats. Genetic characterisation of such populations offers the opportunity to assess their genetic stability, which provides agencies managing the aquatic environment in EU countries with a tool for revising the legislation, including regulations relevant for updating the status of native and invasive species in European waters.
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Authors and Affiliations

Jolanta Kiełpińska
1
ORCID: ORCID
Przemysław Czerniejewski
1
ORCID: ORCID
Natalia Adamkowska
2
Eliza Uzunova
3
ORCID: ORCID

  1. West Pomeranian University of Technology in Szczecin, Faculty of Food Sciences and Fisheries, al. Piastów 17, 70-310 Szczecin, Poland
  2. Independent researcher, Grupa Azoty Zakłady Chemiczne “Police” S.A., Police, Poland
  3. Sofia University, Faculty of Biology, Department of General and Applied Hydrobiology, Sofia, Bulgaria

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