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Fig. 1 in Two new species and ten new records of Heteroptera from Turkey, including the first record of the potential alien Campylomma miyamotoi in the Western Palaearctic
Fig. 1. Adelphophylus oenderi sp. nov.: A ‒ male; B ‒ female; C ‒ vesica; D ‒ bursa copulatrix. Abbreviation: SR ‒ sclerotized recess. Scale bars: A, B ‒ 1 mm; C ‒ 0.5 mm; D ‒ 0.1 mm.
Fig. 4. A‒B ‒ Maurodactylus kukuensis V. G. Putshkov, 1978 in Two new species and ten new records of Heteroptera from Turkey, including the first record of the potential alien Campylomma miyamotoi in the Western Palaearctic
Fig. 4. A‒B ‒ Maurodactylus kukuensis V. G. Putshkov, 1978: A ‒ male; B ‒ female. C ‒ Pinalitus viscicola (Puton, 1888), male. D ‒ Platycranus (Genistocapsus) alkestis Linnavuori, 1999, male. Scale bars: 1 mm.
Fig. 3. A‒B in Two new species and ten new records of Heteroptera from Turkey, including the first record of the potential alien Campylomma miyamotoi in the Western Palaearctic
Fig. 3. A‒B ‒ Campylomma miyamotoi Yasunaga, 2001: A ‒ male, B ‒ vesica. C ‒ Compsidolon (Compsidolon) elegantulum Reuter, 1899, male. Scale bars: A, C ‒ 1 mm; B ‒ 0.1 mm.
Cyprus Database of Alien Species – CyDAS
<p>This repository includes data and datasets derived and adapted from the Cyprus Database of Alien Species (CyDAS) (https://ris-ky.info/cydas), an openly accessible, online, dynamic platform providing informational resources on alien species on the island of Cyprus. The platform includes information on 1,293 terrestrial, freshwater and marine introduced taxa, with species profiles being constantly updated to keep track of new arrivals. The CyDAS aims to catalogue and supplement our knowledge on the alien species of Cyprus; to develop and enhance early warning and rapid response systems; to raise public awareness of the risks posed by the IAS subset; to strengthen and enhance engagement and public participation in surveys in the field of biological invasions; and to inform IAS policy. CyDAS is a free, online database and we would like to other encourage researchers and decision-makers to provide information on IAS.</p> <p>For further information on the data refer to the READ ME file. Please cite these data according to the assigned DOI as well as according to the citation of the data paper on Scientific Data.</p>
IPBES Invasive Alien Species Assessment: Summary for Policymakers. Figures, tables and captions
<p>Figures, tables and their captions from the Summary for Policymakers of the Thematic Assessment Report on Invasive Alien Species and their Control of the Intergovernmental Science-Policy Platform on Biodiversity and Ecosystem Services.</p>
Fig. 2 in New Japanese Record of Henneguya postexilis (Cnidaria: Myxobolidae) from Gills of Alien Channel Catfish Ictalurus punctatus (Siluriformes: Ictaluridae) in Japan
Fig. 2. Line drawings (composite) of fresh myxospores of Henneguya postexilis. A, Valvular view; B, sutural view. Scale bars: 10 µm.
Fig. 3 in New Japanese Record of Henneguya postexilis (Cnidaria: Myxobolidae) from Gills of Alien Channel Catfish Ictalurus punctatus (Siluriformes: Ictaluridae) in Japan
Fig. 3. Maximum likelihood phylogenetic tree based on 18S rDNA data (1513 bp including gaps) from Henneguya postexilis and other related myxozoans using Myxobolus lepomis as an outgroup. The accession number and scientific name of the newly sequenced species in this study are indicated in bold. The corresponding ISND accession numbers are shown. Arabic numerals at nodes indicate bootstrap values.
Fig. 1 in New Japanese Record of Henneguya postexilis (Cnidaria: Myxobolidae) from Gills of Alien Channel Catfish Ictalurus punctatus (Siluriformes: Ictaluridae) in Japan
Fig. 1. Light photomicrograph of two fixed plasmodia with a gill filament of Ictalurus punctatus (A) and fresh myxospores (B–G) of Henneguya postexilis. Arrowheads indicate each plasmodium. B, D, E, Valvular view; C, F, G, sutural view. Scale bars: A, 200 µm; B–G, 10 µm.
The more microplastic types pollute the soil, the stronger the growth suppression of invasive alien and native plants
<p>The ecological consequences of microplastic pollution for plants remain largely unknown, and the few studies that tested the effects usually focused on a single type of microplastic and a single plant species. However, most plants will be exposed to multiple microplastic types simultaneously, and the effects may vary among species.</p> <p>To test the effects of microplastic diversity on plants, we grew single plants of eight invasive and eight native species in pots with substrate polluted with 0, 1, 3 and 6 types of microplastics.</p> <p>We found that the growth suppression by microplastic pollution became stronger with the number of microplastic types the plants were exposed to. This tended to be particularly the case for invasive species, as their biomass advantage over natives diminished with the number of microplastic types. The biomass responses coincided with a positive effect of the number of microplastic types on root allocation and thickness, which was also stronger for invasive than for native species. In addition, the results of hierarchical diversity-interaction models suggest that the negative impact of microplastic diversity on the total biomass of invasive plant species was influenced by both the identities of the microplastic and certain types of microplastic with strong pairwise interactions. In contrast, the effect on native species was determined solely by the microplastic identities.</p> <p><em>Synthesis: </em>Our multi-species study thus shows for the first time that the negative effects of microplastic pollution on plant growth increase with the number of microplastic types. We also found tentative evidence that the negative impacts of microplastic diversity were more pronounced for invasive plants compared to native plants, and that this might be due to differences in the responses of root allocation and thickness.</p>
Figure 5 in Records about the alien millipede Oxidus gracilis (C. L. Koch, 1847) (Diplopoda: Polydesmida: Paradoxosomatidae) in continental Chile
Figure 5. Ologonosoma sp. from Nahuelbuta locality, Chile. / Ologonosoma sp. de la localidad de Nahuelbuta, Chile.
Figure 3 in Records about the alien millipede Oxidus gracilis (C. L. Koch, 1847) (Diplopoda: Polydesmida: Paradoxosomatidae) in continental Chile
Figure 3. Male right gonopod view under compound microscope, lateral view. Nomenclature by Nguyen et al. (2017): h = postfemoral process; sph = solenophore; sl = solenomere; z = postfemoral spine; l = postfemoral lamina; fe = femorite; co = coxa; pf = prefemorite. Scale: 0.1 mm / Gonópodo derecho del macho visto bajo microscopio compuesto, vista lateral. Nomenclatura por Nguyen et al. (2017): h = proceso postfemoral; sph = solenóforo; sl = solenómero; z = espina postfemoral; l = lámina postfemoral; fe = femorito; co = coxa; pf = prefemorito. (nota: la translación de algunos términos al español es tentativa, debido a que en muchos casos no existe una traducción oficial). Escala: 0,1 mm.
Figures 1-2. Oxidus gracilis. 1. Lateral view, female. 2 in Records about the alien millipede Oxidus gracilis (C. L. Koch, 1847) (Diplopoda: Polydesmida: Paradoxosomatidae) in continental Chile
Figures 1-2. Oxidus gracilis. 1. Lateral view, female. 2. Dorsal view, male, collum broken. Scale: 1 mm. / Oxidus gracilis. 1. Vista lateral, hembra. 2. Vista dorsal, macho, collum roto. Escala: 1 mm.
Figure 4 in Records about the alien millipede Oxidus gracilis (C. L. Koch, 1847) (Diplopoda: Polydesmida: Paradoxosomatidae) in continental Chile
Figure 4. Oxidus gracilis distribution in continental Chile. / Distribución de Oxidus gracilis en Chile
Figure 4 in Records about the alien millipede Oxidus gracilis (C. L. Koch, 1847) (Diplopoda: Polydesmida: Paradoxosomatidae) in continental Chile
Figure 4. Oxidus gracilis distribution in continental Chile. / Distribución de Oxidus gracilis en Chile continental.
FIG. 5. Correlation between the spatial distribution index and population density. A in Demographic and spatial structure at the stage of expansion in the populations of some alien land snails in Belgorod city (Central Russian Upland)
FIG. 5. Correlation between the spatial distribution index and population density. A. For Brephulopsis cylindrica and Xeropicta derbentina at 160 plots for three years. B. For Harmozica ravergiensis in nine sites×20 plots for two years. РИС. 5. Корреляция меЖду индексом пространственного распределения и плотностью популяции. А. Для Brephulopsis cylindrica и Xeropicta derbentina на 160 плоЩадках За три года. В. Для Harmozica ravergiensis на девяти участках по 20 плоЩадок За два года.
FIG. 4 in Demographic and spatial structure at the stage of expansion in the populations of some alien land snails in Belgorod city (Central Russian Upland)
FIG. 4. Boxplots for estimating the density of different age classes in the Xeropicta derbentina population in warm months of 2017, 2019, and 2020 for 160 test plots. Adult snails are represented by red boxes; juvenile snails are represented by blue boxes. РИС. 4. Боксплоты для оценок плотности раЗличных воЗрастных классов в популяции Xeropicta derbentina в раЗные теплые месяцы 2017, 2019 и 2020 гг. для 160 пробных плоЩадок. ВЗрослые особи покаЗаны красным цветом, ювенильные особи покаЗаны голубым цветом.
FIG. 3 in Demographic and spatial structure at the stage of expansion in the populations of some alien land snails in Belgorod city (Central Russian Upland)
FIG. 3. Boxplots for estimating the density of different age classes in the Brephulopsis cylindrica population in warm months of 2017, 2019, and 2020 for 160 test plots. Adult snails are represented by red boxes; juvenile snails are represented by blue boxes. РИС. 3. Боксплоты для оценок плотности раЗличных воЗрастных классов в популяции Brephulopsis cylindrica в раЗные теплые месяцы 2017, 2019 и 2020 гг. для 160 пробных плоЩадок. ВЗрослые особи покаЗаны красным цветом, ювенильные особи покаЗаны голубым цветом.
FIG. 2 in Demographic and spatial structure at the stage of expansion in the populations of some alien land snails in Belgorod city (Central Russian Upland)
FIG. 2. Scheme of plots in a regular grid. A. Study site. B. Brephulopsis cylindrica and Xeropicta derbentina in the field. C. Scheme of plots in a regular grid. РИС. 2. Регулярная сетка плоЩадок. A. РасполоЖение исследуемого участка. B. Brephulopsis cylindrica и Xeropicta derbentina в месте обитания. C. Схема регулярной сетки плоЩадок.
A list of taxa currently and historically regulated under South Africa's National Environmental Management: Biodiversity Act, Alien & Invasive Species Regulations
<p>This information is lists of alien species regulated in South Africa under the National Environmental Management: Biodiversity Act in an accessible form.</p> <p>The first worksheet is essentially metadata.</p> <p>The second worksheet is intended to be a link between any taxa listed or proposed for listing and various taxonomic backbones.</p> <p>The third worksheet is intended to provide a list of taxonomically verified names linked to the current lists.</p> <p>The other worksheets link to particular versions of the regulations (including version sent for public comment that were never published), the intention is for this to be an exact copy (including formatting), please report any inconsistencies between this and the published version to john.wilson2@gmail.com, but before doing so please double-check that what is presented here, is not how it is presented in the lists themselves.</p> <p>The data were extracted by John Wilson at various dates from pdfs in the government gazette, contact john.wilson2@gmail.com</p> <p>For further details please see: Wilson JRU, Kumschick S (2024). The regulation of alien species in South Africa. South African Journal of Science. vol. 120, issue 5/6, Art. #17002. https://doi.org/10.17159/sajs.2024/17002 </p> <p>If only the database is to be cited, cite as Wilson, J. R. (2025) A list of taxa currently and historically regulated under South Africa's National Environmental Management: Biodiversity Act, Alien & Invasive Species Regulations. v1.1(20250325) doi: 10.5281/zenodo.15082537 (NOTE CHECK FOR LATEST VERSION )</p> <p>For a full description of metadata see: the latest species list available at iasreport.sanbi.org.za/ or http://dx.doi.org/10.5281/zenodo.8217211</p>
Fig. 1 in Four Alien Monogeneans, Including Trinigyrus peregrinus n. sp., Parasitic on the Invasive Armored Catfish Pterygoplichthys disjunctivus (Siluriformes: Loricariidae) from Okinawa-jima Island, Okinawa Prefecture, Japan
Fig. 1. Measurement axes of hard parts of Unilatus and Trinigyrus. Abbreviations: aol, anchor outer length; apl, accessory piece length; asl, accessory structure length; asw, accessory structure width; atl, anchor total length; bmw, bar median width; btl, bar total length; btw, bar total width; bw, base width; ccl, copulatory organ curve length; cd, copulatory organ diameter; cl, copulatory organ length; mhl, marginal hook length; pl, point length; scl, sclerotized cup length; vl, vagina length.
ScienceDex guides
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.