Correct species identification is a crucial step in research and the practice of forensic entomology. At the moment the most common and widely used tool for this purpose are taxonomic keys based on morphological characters. During recent decades molecular methods have been used more and more often for species identification. Automated species identification can also be based on wing measurements. This method proved to be reliable in the case of some groups of necrophagous Diptera from various geographical regions. Up to now, this method has not been applied to a wide range of species of European Calliphoridae. We have used 968 specimens representing 15 species and 6 genera. Identification was based on 15 landmarks located at wing vein junctions. Wing shape differed markedly between the studied species. The overall correct classification rate at the level of species was 97.1%. Seven species, including Calliphora vomitoria, Chrysomya albiceps, Phormia regina, Protophormia terraenovae and Lucilia sericata were identified without error. Lucilia caesar and Lucilia illustris, which are considered relatively difficult to distinguish, were correctly classified in 93.0% and 94.1% cases, respectively. The correct classification rate at the level of genera was 99.2%. The results presented here suggest that wing measurements are a promising alternative to other methods of identification of necrophagous Calliphoridae. This method can be particularly useful for identification of large samples of females collected during carrion succession studies. It can also be used to double check identification performed by a taxonomist using traditional methods.
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http://dx.doi.org/10.1016/j.forsciint.2019.01.001 | DOI Listing |
Viruses
December 2024
Smorodintsev Research Institute of Influenza, 197376 Saint Petersburg, Russia.
Human seasonal coronaviruses (hCoVs) are a group of viruses that affect the upper respiratory tract. While seasonal patterns and the annual variability of predominant hCoV species are well-documented, their genetic and species diversity in St. Petersburg and across Russia remains largely unexplored.
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January 2025
Institute of Oceanography and Fisheries, Šetalište Ivana Meštrovića 63, 21000 Split, Croatia.
The marine diatom genus comprises cosmopolitan phytoplankton species commonly present in the Adriatic Sea. Species within the genus have been of significant concern because they produce domoic acid (DA), which can cause amnesic shellfish poisoning (ASP). In this study, we identified species along the Central and Southeastern Adriatic Sea, where monthly sampling carried out from February 2022 to February 2024 allowed for comprehensive species documentation.
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January 2025
College of Forestry, Northeast Forestry University, Harbin 150040, China.
The utilization of nitrogen (N) is crucial for the optimal growth and development of plants. As the dominant form of nitrogen in temperate soil, nitrate (NO) is absorbed from the soil and redistributed to other organs through NO transporters (NRTs). Therefore, exploration of the role of NRTs in response to various NO conditions is crucial for improving N utilization efficiency (NUE).
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January 2025
Laboratory of Biological Oxidations, Department of Biochemistry, State University of Maringa, Maringa 87020-900, PR, Brazil.
The cover crop (L.) R.Br.
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January 2025
Departamento de Ciências Biológicas, Universidade Estadual de Feira de Santana, Av. Transnordestina s.n., Feira de Santana 44036-900, Bahia, Brazil.
series was created by Barneby in 1991, embracing species diagnosed by their small subshrubby habit and the presence of gland-tipped setae and trimerous flowers. Most species are endemic to Northeastern Brazil, and some possess characters deemed diagnostic which nonetheless overlap, making species identification difficult. Our study aimed to test species circumscriptions and sets of characters that could be applied to unequivocally distinguish the species.
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