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Supplementary material 3 from: Haubrock PJ, Turbelin AJ, Cuthbert RN, Novoa A, Taylor NG, Angulo E, Ballesteros-Mejia L, Bodey TW, Capinha C, Diagne C, Essl F, Golivets M, Kirichenko N, Kourantidou M, Leroy B, Renault D, Verbrugge L, Courchamp F (2021) Economic costs of invasive alien species across Europe. In: Zenni RD, McDermott S, García-Berthou E, Essl F (Eds) The economic costs of biological invasions around the world. NeoBiota 67: 153-190. https://doi.org/10.3897/neobiota.67.58196
Descriptions of socio-economic explanatory variables considered at the country level as potential correlates of invasion costs
Supplementary material 2 from: Kirichenko N, Haubrock PJ, Cuthbert RN, Akulov E, Karimova E, Shneider Y, Liu C, Angulo E, Diagne C, Courchamp F (2021) Economic costs of biological invasions in terrestrial ecosystems in Russia. In: Zenni RD, McDermott S, García-Berthou E, Essl F (Eds) The economic costs of biological invasions around the world. NeoBiota 67: 103-130. https://doi.org/10.3897/neobiota.67.58529
Table S1. Dataset on economic losses associated with biological invasions in terrestrial ecosystems in Russia
Supplementary material 7 from: Haubrock PJ, Turbelin AJ, Cuthbert RN, Novoa A, Taylor NG, Angulo E, Ballesteros-Mejia L, Bodey TW, Capinha C, Diagne C, Essl F, Golivets M, Kirichenko N, Kourantidou M, Leroy B, Renault D, Verbrugge L, Courchamp F (2021) Economic costs of invasive alien species across Europe. In: Zenni RD, McDermott S, García-Berthou E, Essl F (Eds) The economic costs of biological invasions around the world. NeoBiota 67: 153-190. https://doi.org/10.3897/neobiota.67.58196
Coefficients from linear robust regression model considering temporal trends in invasion costs, qualified per annual GDP among European countries
Figure 10 in New synonymies in the Anagrus incarnatus Haliday 'species complex' (Hymenoptera: Mymaridae) including a common parasitoid of economically important planthopper (Hemiptera: Delphacidae) pests of rice in Asia
Figure 10. Relationships between sequences of the ITS2 rRNA locus obtained from nine Anagrus species. Sequences of 10 specimens were obtained by direct-sequencing. Intra-individual variation required that the ITS2 of the remaining 16 specimens was cloned prior to sequencing. Three clones were sequenced for each of these specimens (labelled A, B and C). The percentage of replicate trees in which the associated sequences clustered together in the bootstrap test (1000 replicates) is shown next to the branches and the tree is drawn to scale, with branch lengths indicating uncorrected p-distance. Analysed sequence matrix was 731 bp including gaps.
Figure 8 in New synonymies in the Anagrus incarnatus Haliday 'species complex' (Hymenoptera: Mymaridae) including a common parasitoid of economically important planthopper (Hemiptera: Delphacidae) pests of rice in Asia
Figure 8. Anagrus fisheri, female (Kerkini Marsh, Lake Kerkini, Central Macedonia, Greece): (a) antenna; (b) fore and hind wings; (c) metasoma.
Figure 9 in New synonymies in the Anagrus incarnatus Haliday 'species complex' (Hymenoptera: Mymaridae) including a common parasitoid of economically important planthopper (Hemiptera: Delphacidae) pests of rice in Asia
Figure 9. Genealogical relationships among the sequences of a 587 bp fragment of COI from nine species of Anagrus. Optimal NJ tree with the sum of branch length = 0.22476409. The percentage of replicate trees in which the associated taxa clustered together in the bootstrap test (1000 replicates) are shown next to the branches and the tree is drawn to scale, with branch lengths indicating uncorrected p-distance.
Figure 6. Anagrus nilaparvatae, syn. n in New synonymies in the Anagrus incarnatus Haliday 'species complex' (Hymenoptera: Mymaridae) including a common parasitoid of economically important planthopper (Hemiptera: Delphacidae) pests of rice in Asia
Figure 6. Anagrus nilaparvatae, syn. n. of A. incarnatus, female: (a) antenna (Lucao, Chiayi Co., Taiwan, from egg of Nilaparvata lugens; F3 with 1 mps); (b) antenna (same as (a); F3 without mps); (c) mesosoma (same as (a)); (d) metasoma (same locality as (a), from egg of Nephotettix cincticeps); (e) fore wing (same as (d)); (f) fore wing (same as (a)).
Figure 7 in New synonymies in the Anagrus incarnatus Haliday 'species complex' (Hymenoptera: Mymaridae) including a common parasitoid of economically important planthopper (Hemiptera: Delphacidae) pests of rice in Asia
Figure 7. (a–c) Anagrus breviphragma, synonym of A. incarnatus, male (SE end of Lago del Matese, Caserta Province, Campania, Italy): (a) antenna; (b) fore and hind wings; (c) genitalia. (d, e) Anagrus nilaparvatae, syn. n. of A. incarnatus, male (Lucao, Chiayi Co., Taiwan, from egg of Nilaparvata lugens): (d) antenna; (e) genitalia.
Figure 5 in New synonymies in the Anagrus incarnatus Haliday 'species complex' (Hymenoptera: Mymaridae) including a common parasitoid of economically important planthopper (Hemiptera: Delphacidae) pests of rice in Asia
Figure 5. Anagrus incarnatosimilis, stat. rev. as a synonym of A. incarnatus, female fore and hind wings: (a) Eriksberg, Upland Uppsala, Sweden; (b) Mortizza, Piacenza Province, Emilia-Romagna, Italy (from egg of Cicadella viridis, determined by E. Chiappini).
Figure 2 in New synonymies in the Anagrus incarnatus Haliday 'species complex' (Hymenoptera: Mymaridae) including a common parasitoid of economically important planthopper (Hemiptera: Delphacidae) pests of rice in Asia
Figure 2. Anagrus breviphragma, synonym of A. incarnatus, female: (a) antenna (Mortizza, Piacenza Province, Emilia-Romagna, Italy, from egg of Cicadella viridis, determined by E. Chiappini); (b) fore wing (Fosso di Trafusina, Castelporziano Presidential Estate, Roma Province, Lazio, Italy); (c) metasoma (same as (b)).
Figure 3. Anagrus columbi, syn. n in New synonymies in the Anagrus incarnatus Haliday 'species complex' (Hymenoptera: Mymaridae) including a common parasitoid of economically important planthopper (Hemiptera: Delphacidae) pests of rice in Asia
Figure 3. Anagrus columbi, syn. n. of A. incarnatus, female: (a) antenna (Palisade, Mesa Co., Colorado, USA); (b) fore wing (same as (a)); (c) metasoma (Zapopan, Jalisco, Mexico, from egg of Dalbulus maidis).
Figure 1 in New synonymies in the Anagrus incarnatus Haliday 'species complex' (Hymenoptera: Mymaridae) including a common parasitoid of economically important planthopper (Hemiptera: Delphacidae) pests of rice in Asia
Figure 1. (a) An egg mass of brown rice planthopper, Nilaparvata lugens, parasitised by Anagrus nilaparvatae, syn. n. of A. incarnatus (Taiwan); (b, c) A. nilaparvatae, habitus: (b) female (Gukeng, Yunlin Co., Taiwan, from egg of Nilaparvata lugens), (c) male (Lucao, Chiayi Co., Taiwan, from egg of N. lugens); (d) female of A. incarnatosimilis, stat. rev. as a synonym of A. incarnatus, habitus (Forêt de Loverval, Leuven, Gerpinnes, Hainaut, Belgium, determined as A. incarnatus incarnatus by H. R. Debauche).
Figure 4 in New synonymies in the Anagrus incarnatus Haliday 'species complex' (Hymenoptera: Mymaridae) including a common parasitoid of economically important planthopper (Hemiptera: Delphacidae) pests of rice in Asia
Figure 4. Anagrus incarnatosimilis, stat. rev. as a synonym of A. incarnatus, female: (a) antenna (Forêt de Meerdael, Leuven, Flemish Brabant, Belgium, determined as A. incarnatus incarnatus by H. R. Debauche); (b) antenna (Mortizza, Piacenza Province, Emilia-Romagna, Italy, from egg of Cicadella viridis, determined by E. Chiappini); (c) mesosoma (Eriksberg, Upland Uppsala, Sweden); (d) mesosoma (same as (b)); (e) metasoma (same as (c)); (f) metasoma (Vaganovo, Vsevolozhskiy rayon, Leningradskaya oblast', Russia).
Figure 3 in Sponges of economical interest in the Eastern Mediterranean: an assessment of diversity and population density
Figure 3. Cluster analysis and Multi Dimensional Scaling showing sponge faunistic relationships among the sampling stations.
Figure 2 in Sponges of economical interest in the Eastern Mediterranean: an assessment of diversity and population density
Figure 2. Bubble plot illustrating the population density of the 11 sponge species at each sampling station, and the depth zone in which the specimens were recorded.
Figure 4 in Sponges of economical interest in the Eastern Mediterranean: an assessment of diversity and population density
Figure 4. Cluster analysis and multidimensional scaling showing distributional affinities of the eleven sponges studied. Aa, A. aerophoba; Sa, S. agaricina; So, S. officinalis; Sz; S. zimmoca; Hc, H. communis; Da, D. avara; Ao, A. oroides; Ac, A. cannabina; Pf, P. ficiformis; If, I. fasciculata; Sf, S. foetidus.
Supplementary material 1 from: D'Cruze N, Singh B, Mookerjee A, Harrington LA, Macdonald DW (2018) A socio-economic survey of pangolin hunting in Assam, Northeast India. Nature Conservation 30: 83-105. https://doi.org/10.3897/natureconservation.30.27379
Hunter questionnaire : Explanation note: English translation of questions asked and information recorded.
Figure 7 in Squat lobsters of the genera Raymunida Macpherson & Machordom, 2000 and Munidopsis Whiteaves, 1874 (Decapoda: Anomura: Galatheoidea) from the Indian Exclusive Economic Zone, with descriptions of three new species
Figure 7. Munidopsis bengala sp. nov., holotype ♀ (PCL 8.0 mm, CW 7.7 mm), IO/SS/ANO/00145. (a) carapace, pleon and cephalic appendages (dorsal view); (b) carapace and pleon (right lateral view); (c) thoracic sternum (ventral view); (d) pleomeres 1–5 (dorsal view); (e) pleomeres 5 and 6 and telson (dorsal view); (f) left eyes, antennular peduncle article 1 and antennal peduncle (ventral view); (g) left Mxp3 (lateral view). Scale bars: a, b, d = 2.0 mm; c, e–g = 1.0 mm.
Figure 8 in Squat lobsters of the genera Raymunida Macpherson & Machordom, 2000 and Munidopsis Whiteaves, 1874 (Decapoda: Anomura: Galatheoidea) from the Indian Exclusive Economic Zone, with descriptions of three new species
Figure 8. Munidopsis kadal sp. nov., holotype ♂ (PCL 5.2 mm, CW 4.9 mm), IO/SS/ANO/00146. (a) carapace, pleon and cephalic appendages (dorsal view); (b) carapace (right lateral view); (c) thoracic sternum (ventral view); (d) pleomeres 1–5 (dorsal view); (e) pleomeres 5 and 6 and telson (dorsal view); (f) right eye, antennular peduncle article 1 and antennal peduncle (ventral view); (g) left Mxp3 (lateral view); (h) right P1, dorsal view. Scale bars: a–e, h = 1.0 mm; f, g = 0.5 mm.
Figure 3 in Squat lobsters of the genera Raymunida Macpherson & Machordom, 2000 and Munidopsis Whiteaves, 1874 (Decapoda: Anomura: Galatheoidea) from the Indian Exclusive Economic Zone, with descriptions of three new species
Figure 3. Carapace, pleon and cephalic appendages, dorsal view. (a) Raymunida shraddhanandi sp. nov., holotype ♂ (PCL 9.7 mm, CW 8.2 mm), IO/SS/ANO/00141; (b) R. shraddhanandi sp. nov., paratype ♀ (PCL 5.8 mm, CW 4.9 mm), IO/SS/ANO/00140; (c) R. vittata Macpherson, 2009, ♀ (PCL 9.0 mm, CW 7.7 mm), IO/SS/ANO/00142; (d) Munidopsis bengala sp. nov., holotype ♀ (PCL 8.0 mm, CW 7.7 mm), IO/ SS/ANO/00145; (e) M. kadal sp. nov., holotype ♂ (PCL 5.2 mm, CW 4.9 mm), IO/SS/ANO/00146. Scale bars: 2.0 mm.
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.