Find research datasets worth reusing
Search datasets from major research repositories and use ShareScore to quickly assess how well each record supports discovery, access, and reuse.
390
datasets available to search
ShareScore release 0.9.0
Dataset results
390 results for “maritime”
FIGURE 10. Benyllus rufostriatus n in Contribution to the knowledge of the Ichneumoninae (Hymenoptera, Ichneumonidae) from Maritime Southeast Asia
FIGURE 10. Benyllus rufostriatus n. sp. HT ♀. A face, frontal view, B head, dorsal view, C propodeum, dorsal view, D basal tergites, dorsal view.
FIGURE 21. Eccoptosage nigrifemur n in Contribution to the knowledge of the Ichneumoninae (Hymenoptera, Ichneumonidae) from Maritime Southeast Asia
FIGURE 21. Eccoptosage nigrifemur n. sp. HT ♀. A face, frontal view, B propodeum, dorsal view, C basal tergites, dorsal view.
FIGURE 9. Benyllus mesonotator n in Contribution to the knowledge of the Ichneumoninae (Hymenoptera, Ichneumonidae) from Maritime Southeast Asia
FIGURE 9. Benyllus mesonotator n. sp. A face of HT ♀, frontal view, B head of ♂, dorsal view, C propodeum of HT ♀, dorsal view, D basal tergites of HT ♀, dorsal view, E metasoma of HT ♀, dorso-lateral view.
FIGURE 7. Atanyjoppoides mandibulator n in Contribution to the knowledge of the Ichneumoninae (Hymenoptera, Ichneumonidae) from Maritime Southeast Asia
FIGURE 7. Atanyjoppoides mandibulator n. sp. HT ♂. A face, frontal view, B head, dorsal view, C mandible, ventral view, D scutellum, dorso-lateral view, E propodeum, dorsal view, F basal tergites, dorsal view, G 3rd and 4th tergites, lateral view.
FIGURE 11. Benyllus sundaensis n in Contribution to the knowledge of the Ichneumoninae (Hymenoptera, Ichneumonidae) from Maritime Southeast Asia
FIGURE 11. Benyllus sundaensis n. sp. HT ♀. A face, frontal view, B mesosoma, lateral view, C propodeum, dorsal view, D metasoma, dorsal view.
FIGURE 6. Amblyjoppa striata n in Contribution to the knowledge of the Ichneumoninae (Hymenoptera, Ichneumonidae) from Maritime Southeast Asia
FIGURE 6. Amblyjoppa striata n. sp. HT ♂. A face, frontal view, B propodeum, dorsal view, C basal tergites, dorsal view.
FIGURE 8 in Contribution to the knowledge of the Ichneumoninae (Hymenoptera, Ichneumonidae) from Maritime Southeast Asia
FIGURE 8. Barichneumonites properans (Tosquinet, 1903) ♂. A face, frontal view, B head, dorsal view, C propodeum, dorsal view, D basal tergites, dorsal view.
FIGURE 5. Amblyjoppa nigra n in Contribution to the knowledge of the Ichneumoninae (Hymenoptera, Ichneumonidae) from Maritime Southeast Asia
FIGURE 5. Amblyjoppa nigra n. sp. HT ♀. A face, frontal view, B propodeum, dorsal view, C basal tergites, dorsal view.
FIGURE 2. Achaius sabahensis n in Contribution to the knowledge of the Ichneumoninae (Hymenoptera, Ichneumonidae) from Maritime Southeast Asia
FIGURE 2. Achaius sabahensis n. sp. HT ♀. A face, frontal view, B head, dorsal view, C propodeum, dorsal view, D basal tergites, dorsal view.
FIGURE 1. Platylaboides javanicus n in Contribution to the knowledge of the Ichneumoninae (Hymenoptera, Ichneumonidae) from Maritime Southeast Asia
FIGURE 1. Platylaboides javanicus n. sp. HT ♀. A face, frontal view, B propodeum, dorsal view, C metasoma, dorsal view, D fore wing, dorsal view, E mandible, ventral view.
FIGURE 18 in Contribution to the knowledge of the Ichneumoninae (Hymenoptera, Ichneumonidae) from Maritime Southeast Asia
FIGURE 18. Coelichneumon (Exephanides) nigropropodealis n. sp. HT ♀. A face, frontal view, B propodeum, dorsal view, C basal tergites, dorsal view.
FIGURE 28. Lissosculpta seramensis n in Contribution to the knowledge of the Ichneumoninae (Hymenoptera, Ichneumonidae) from Maritime Southeast Asia
FIGURE 28. Lissosculpta seramensis n. sp. HT ♂. A face, frontal view, B head, dorsal view, C propodeum, dorsal view, D basal tergites of PT ♂, dorsal view.
FIGURE 4. Allonotus rufus sumatraensis n in Contribution to the knowledge of the Ichneumoninae (Hymenoptera, Ichneumonidae) from Maritime Southeast Asia
FIGURE 4. Allonotus rufus sumatraensis n. ssp. HT ♀. A face, frontal view, B head, dorsal view, C propodeum, dorsal view, D basal tergites, dorsal view.
FIGURE 27. Lissosculpta malucuensis n in Contribution to the knowledge of the Ichneumoninae (Hymenoptera, Ichneumonidae) from Maritime Southeast Asia
FIGURE 27. Lissosculpta malucuensis n. sp. HT ♀. A face, frontal view, B head, dorsal view, C propodeum, dorsal view, D basal tergites, dorsal view.
FIGURE 25. Lareiga nigrita n in Contribution to the knowledge of the Ichneumoninae (Hymenoptera, Ichneumonidae) from Maritime Southeast Asia
FIGURE 25. Lareiga nigrita n. sp. HT ♀. A face, frontal view, B head, dorsal view, C propodeum, dorsal view.
Genetic basis of growth, spring phenology and susceptibility to biotic stressors in maritime pine
<p>Forest ecosystems are increasingly challenged by extreme events, e.g. drought, storms, pest and pathogenic fungi outbreaks, causing severe ecological and economical losses. Understanding the genetic basis of adaptive traits in tree species is of key importance to preserve forest ecosystems, as genetic variation in a trait (i.e. heritability) determines its potential for human-mediated or evolutionary change. Maritime pine (<i>Pinus pinaster</i> Aiton), a conifer widely distributed in southwestern Europe and northwestern Africa, grows under contrasted environmental conditions promoting local adaptation. Genetic variation at adaptive phenotypes, including height, growth phenology and susceptibility to two fungal pathogens (<i>Diplodia sapinea</i> and <i>Armillaria ostoyae</i>) and an insect pest (<i>Thaumetopoea pityocampa</i>), were assessed in a range-wide clonal common garden of maritime pine. Broad-sense heritability was significant for height (0.219), growth phenology (0.165-0.310) and pathogen susceptibility (necrosis length caused by <i>D. sapinea</i>, 0.152; and by <i>A. ostoyae</i>, 0.021) measured after inoculation under controlled conditions, but not for pine processionary moth incidence in the common garden. The correlations of trait variation among populations revealed contrasting trends for pathogen susceptibility to <i>D. sapinea</i> and <i>A. ostoyae</i> with respect to height. Taller trees showed longer necrosis length caused by <i>D. sapinea </i>while shorter trees were more affected by <i>A. ostoyae</i>. Moreover, maritime pine populations from areas with high summer temperatures and frequent droughts were less susceptible to <i>D. sapinea </i>but more susceptible to <i>A. ostoyae</i>. Finally, an association study using 4,227 genome-wide SNPs revealed several loci significantly associated to each trait (range of 3-26), including a possibly disease-induced translation initiation factor, eIF-5. This study provides important insights to develop genetic conservation and breeding strategies integrating species responses to biotic stressors.</p>
Subspecies and Distribution. L. c. canadensis Schreber, 1776 — E Canada (Maritime Provinces, Ontario & Quebec), NE USA (Maine through New York) and Great Lakes of USA (Michigan and Wisconsin). L. c. kodiacensis Goldman, 1935 — Alaska (Kodiak and Shuyak Is). L. c. lataxina Cuvier, 1823 — E & SE USA. L. c. mira Goldman, 1935 — S Alaska (Prince of Wales I), SW Canada (Vancouver I). L. c. pacifica Rhoads, 1898 — W USA and W Canada. L. c. periclyzomae Elliot, 1905 — W Canada (Queen Charlotte Is). L. c. sonora Rhoads, 1898 — SW USA (Arizona, California, Colorado, Nevada, New Mexico & Utah). in Mustelidae
Subspecies and Distribution. L. c. canadensis Schreber, 1776 — E Canada (Maritime Provinces, Ontario & Quebec), NE USA (Maine through New York) and Great Lakes of USA (Michigan and Wisconsin). L. c. kodiacensis Goldman, 1935 — Alaska (Kodiak and Shuyak Is). L. c. lataxina Cuvier, 1823 — E & SE USA. L. c. mira Goldman, 1935 — S Alaska (Prince of Wales I), SW Canada (Vancouver I). L. c. pacifica Rhoads, 1898 — W USA and W Canada. L. c. periclyzomae Elliot, 1905 — W Canada (Queen Charlotte Is). L. c. sonora Rhoads, 1898 — SW USA (Arizona, California, Colorado, Nevada, New Mexico & Utah).
Supplementary material 1 from: lshishka M, Lazarova S, Radoslavov G, Hristov P, Peneva VK (2017) Biogeography and phylogenetic position of Enchodeloides signyensis (Loof, 1975), gen. n., comb. n. from Maritime Antarctic (Nematoda, Nordiidae). ZooKeys 697: 37-58. https://doi.org/10.3897/zookeys.697.13770
18S Parsimoni informative sites TemporaryMEGA17 : Explanation note: 18S rDNA Phylogenetic analysis between tree Genus based on Parsimony informative nucleotide sites.
Supplementary material 2 from: lshishka M, Lazarova S, Radoslavov G, Hristov P, Peneva VK (2017) Biogeography and phylogenetic position of Enchodeloides signyensis (Loof, 1975), gen. n., comb. n. from Maritime Antarctic (Nematoda, Nordiidae). ZooKeys 697: 37-58. https://doi.org/10.3897/zookeys.697.13770
28S Parsimoni informative sites TemporaryMEGA15 : Explanation note: 28S rDNA Phylogenetic analysis between tree Genus based on Parsimony informative nucleotide sites.
On following pages: 4. Greater Striped Shrew (Sorex cylindricauda); 5. Lesser Striped Shrew (Sorex bedfordiae), 6. Radde's 9. Azumi Shrew (Sorex hosonoi): 10. Slender Shrew (Sorex gracillimus); 11. Laxmann's Shrew (Sorex caecutiens); 12. Shinto Shrew (Sorex sinalis): 16. Common Shrew (Sorex araneus); 17. Iberian Shrew (Sorex granarius); 18. Valais Shrew (Sorex Shrew (Sorex daphaenodon); 22. Gansu Shrew (Sorex cansulus); 23. Tundra Shrew (Sorex tundrensis); 24. Tian Shan Shrew (Sorex maritimensis): 28. Eurasian Pygmy Shrew (Sorex minutus); 29. Caucasian Pygmy Shrew (Sorex volnuchini); 30. 33. Trowbridge's Shrew (Sorex trowbridgii); 34. Arizona Shrew (Sorex arizonae); 35. Merriam's Shrew (Sorex merriami) 39. San Cristobal Shrew (Sorex cristobalensis); 40. McCarthy's Shrew (Sorex mccarthy); 41. Salvin's Shrew (Sorex salvini Shrew (Sorex raddei); 7. Flat-skulled Shrew (Sorex roboratus); 8. Eurasian Least Shrew (Sorex minutissimus); Shrew (Sorex shinto); 13. Taiga Shrew (Sorex isodon); 14. Long-clawed Shrew (Sorex unguiculatus); 15. Chinese antinori); 19. Crowned Shrew (Sorex coronatus); 20. Caucasian Shrew (Sorex satunini); 21. Siberian Large-toothed (Sorex aspen; 25. Apennine Shrew (Sorex samniticus); 26. Arctic Shrew (Sorex arcticus); 27. Maritime Shrew Buchara Shrew (Sorex buchariensis), 31. Tibetan Shrew (Sorex thibetanus); 32. Kashmir Shrew (Sorex planiceps);; 36. Alto Shrew (Sorex altoensis); 37. Jalisco Shrew (Sorex mediopua); 38. Saussure''s Shrew (Sorex saussurel);); 42. Sclater's Shrew (Sorex sclateri), 43. Pale-toothed Shrew (Sorex stizodon). in Soricidae
On following pages: 4. Greater Striped Shrew (Sorex cylindricauda); 5. Lesser Striped Shrew (Sorex bedfordiae), 6. Radde's 9. Azumi Shrew (Sorex hosonoi): 10. Slender Shrew (Sorex gracillimus); 11. Laxmann's Shrew (Sorex caecutiens); 12. Shinto Shrew (Sorex sinalis): 16. Common Shrew (Sorex araneus); 17. Iberian Shrew (Sorex granarius); 18. Valais Shrew (Sorex Shrew (Sorex daphaenodon); 22. Gansu Shrew (Sorex cansulus); 23. Tundra Shrew (Sorex tundrensis); 24. Tian Shan Shrew (Sorex maritimensis): 28. Eurasian Pygmy Shrew (Sorex minutus); 29. Caucasian Pygmy Shrew (Sorex volnuchini); 30. 33. Trowbridge's Shrew (Sorex trowbridgii); 34. Arizona Shrew (Sorex arizonae); 35. Merriam's Shrew (Sorex merriami) 39. San Cristobal Shrew (Sorex cristobalensis); 40. McCarthy's Shrew (Sorex mccarthy); 41. Salvin's Shrew (Sorex salvini Shrew (Sorex raddei); 7. Flat-skulled Shrew (Sorex roboratus); 8. Eurasian Least Shrew (Sorex minutissimus); Shrew (Sorex shinto); 13. Taiga Shrew (Sorex isodon); 14. Long-clawed Shrew (Sorex unguiculatus); 15. Chinese antinori); 19. Crowned Shrew (Sorex coronatus); 20. Caucasian Shrew (Sorex satunini); 21. Siberian Large-toothed (Sorex aspen; 25. Apennine Shrew (Sorex samniticus); 26. Arctic Shrew (Sorex arcticus); 27. Maritime Shrew Buchara Shrew (Sorex buchariensis), 31. Tibetan Shrew (Sorex thibetanus); 32. Kashmir Shrew (Sorex planiceps);; 36. Alto Shrew (Sorex altoensis); 37. Jalisco Shrew (Sorex mediopua); 38. Saussure''s Shrew (Sorex saussurel);); 42. Sclater's Shrew (Sorex sclateri), 43. Pale-toothed Shrew (Sorex stizodon).
ScienceDex guides
Understand access before you commit
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.