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http://api.gbif.org/v1/occurrence/download/request/0008858-171219132708484.zip | |
http://api.gbif.org/v1/occurrence/download/request/0008865-140429114108248.zip | |
http://api.gbif.org/v1/occurrence/download/request/0008868-171219132708484.zip | |
http://api.gbif.org/v1/occurrence/download/request/0008869-140429114108248.zip | |
http://api.gbif.org/v1/occurrence/download/request/0008869-171219132708484.zip | |
http://api.gbif.org/v1/occurrence/download/request/0008871-140429114108248.zip | |
http://api.gbif.org/v1/occurrence/download/request/0008871-171219132708484.zip | |
http://api.gbif.org/v1/occurrence/download/request/0008872-171219132708484.zip | |
http://api.gbif.org/v1/occurrence/download/request/0008873-171219132708484.zip | |
http://api.gbif.org/v1/occurrence/download/request/0008875-140429114108248.zip | |
http://api.gbif.org/v1/occurrence/download/request/0008877-171219132708484.zip | |
http://api.gbif.org/v1/occurrence/download/request/0008878-140429114108248.zip | |
http://api.gbif.org/v1/occurrence/download/request/0008878-171219132708484.zip | |
http://api.gbif.org/v1/occurrence/download/request/0008879-140429114108248.zip | |
http://api.gbif.org/v1/occurrence/download/request/0008879-171219132708484.zip | |
http://api.gbif.org/v1/occurrence/download/request/0008881-140429114108248.zip | |
http://api.gbif.org/v1/occurrence/download/request/0008882-171219132708484.zip | |
http://api.gbif.org/v1/occurrence/download/request/0008883-171219132708484.zip | |
http://api.gbif.org/v1/occurrence/download/request/0008896-180131172636756.zip | |
http://api.gbif.org/v1/occurrence/download/request/0008897-180131172636756.zip | |
http://api.gbif.org/v1/occurrence/download/request/0008898-180131172636756.zip | |
http://api.gbif.org/v1/occurrence/download/request/0008899-180131172636756.zip | |
http://api.gbif.org/v1/occurrence/download/request/0008900-180131172636756.zip | |
http://api.gbif.org/v1/occurrence/download/request/0008901-180131172636756.zip | |
http://api.gbif.org/v1/occurrence/download/request/0008905-180131172636756.zip | |
http://api.gbif.org/v1/occurrence/download/request/0008906-180131172636756.zip | |
http://api.gbif.org/v1/occurrence/download/request/0008907-171219132708484.zip | |
http://api.gbif.org/v1/occurrence/download/request/0008911-180131172636756.zip | |
http://api.gbif.org/v1/occurrence/download/request/0008914-171219132708484.zip | |
http://api.gbif.org/v1/occurrence/download/request/0008915-171219132708484.zip | |
http://api.gbif.org/v1/occurrence/download/request/0008926-171219132708484.zip | |
http://api.gbif.org/v1/occurrence/download/request/0008928-160311141623029.zip | |
http://api.gbif.org/v1/occurrence/download/request/0008928-171219132708484.zip | |
http://api.gbif.org/v1/occurrence/download/request/0008929-171219132708484.zip | |
http://api.gbif.org/v1/occurrence/download/request/0008930-160311141623029.zip | |
http://api.gbif.org/v1/occurrence/download/request/0008930-171219132708484.zip | |
http://api.gbif.org/v1/occurrence/download/request/0008931-160311141623029.zip | |
http://api.gbif.org/v1/occurrence/download/request/0008931-171219132708484.zip | |
http://api.gbif.org/v1/occurrence/download/request/0008932-171219132708484.zip | |
http://api.gbif.org/v1/occurrence/download/request/0008935-171219132708484.zip | |
http://api.gbif.org/v1/occurrence/download/request/0008937-171219132708484.zip | |
http://api.gbif.org/v1/occurrence/download/request/0008940-171219132708484.zip | |
http://api.gbif.org/v1/occurrence/download/request/0008942-171219132708484.zip | |
http://api.gbif.org/v1/occurrence/download/request/0008943-171219132708484.zip | |
http://api.gbif.org/v1/occurrence/download/request/0008945-171219132708484.zip | |
http://api.gbif.org/v1/occurrence/download/request/0008946-171219132708484.zip | |
http://api.gbif.org/v1/occurrence/download/request/0008949-171219132708484.zip | |
http://api.gbif.org/v1/occurrence/download/request/0008953-171219132708484.zip | |
http://api.gbif.org/v1/occurrence/download/request/0008957-171219132708484.zip | |
http://api.gbif.org/v1/occurrence/download/request/0008958-171219132708484.zip | |
http://api.gbif.org/v1/occurrence/download/request/0008959-171219132708484.zip | |
http://api.gbif.org/v1/occurrence/download/request/0008961-171219132708484.zip | |
http://api.gbif.org/v1/occurrence/download/request/0008965-171219132708484.zip | |
http://api.gbif.org/v1/occurrence/download/request/0008967-171219132708484.zip | |
http://api.gbif.org/v1/occurrence/download/request/0008971-171219132708484.zip | |
http://api.gbif.org/v1/occurrence/download/request/0008973-171219132708484.zip | |
http://api.gbif.org/v1/occurrence/download/request/0008978-171219132708484.zip |
This file contains bidirectional Unicode text that may be interpreted or compiled differently than what appears below. To review, open the file in an editor that reveals hidden Unicode characters.
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#!/bin/bash | |
# retrieve cited occurrenced downloads cited in literature | |
# uses jq, wget and parallel | |
# | |
DATASET_KEY=4fa894f4-b6c6-4ec0-b816-9bb03b3ca106 | |
# get literature records for dataset | |
curl "https://www.gbif.org/api/resource/search?contentType=literature&facet=year&facet=contentType&facet=literatureType&facet=language&facet=audiences&facet=purposes&facet=topics&facet=countriesOfResearcher&facet=countriesOfCoverage&facet=relevance&facet=contractCountry&gbifDatasetKey=$DATASET_KEY&locale=en&searchable=true&limit=1000" | jq . > literature.json | |
# get downloads id associated with dataset citations | |
cat literature.json | jq -r .results[].gbifDownloadKey[] | sort | uniq > downloadIds.txt | |
# get download urls | |
cat downloadIds.txt | parallel -j1 echo "http://api.gbif.org/v1/occurrence/download/request/{1}.zip" > downloadUrls.txt | |
# download archives | |
mkdir -p archives | |
cat downloadIds.txt | parallel -j1 wget -O archives/{1}.zip "http://api.gbif.org/v1/occurrence/download/request/{1}.zip" |
This file contains bidirectional Unicode text that may be interpreted or compiled differently than what appears below. To review, open the file in an editor that reveals hidden Unicode characters.
Learn more about bidirectional Unicode characters
{ | |
"offset": 0, | |
"limit": 1000, | |
"endOfRecords": true, | |
"count": 92, | |
"results": [ | |
{ | |
"title": "Effect of introduced Casuarina trees on the vulnerability of sea turtle nesting beaches to erosion", | |
"authors": [ | |
{ | |
"firstName": "Deidre", | |
"lastName": "de Vos" | |
}, | |
{ | |
"firstName": "Ronel", | |
"lastName": "Nel" | |
}, | |
{ | |
"firstName": "David", | |
"lastName": "Schoeman" | |
}, | |
{ | |
"firstName": "Linda R.", | |
"lastName": "Harris" | |
}, | |
{ | |
"firstName": "Derek", | |
"lastName": "du Preez" | |
} | |
], | |
"year": 2019, | |
"source": "Estuarine, Coastal and Shelf Science", | |
"identifiers": { | |
"doi": "10.1016/j.ecss.2019.03.015" | |
}, | |
"keywords": [ | |
"Backshore", | |
"Beach erosion", | |
"Bio-shield", | |
"Integrated coastal management", | |
"Shore protection" | |
], | |
"websites": [ | |
"https://doi.org/10.1016/j.ecss.2019.03.015" | |
], | |
"month": 4, | |
"publisher": "Elsevier BV", | |
"day": 2, | |
"id": "9c350ebb-4772-3802-819a-cec4f9923cb9", | |
"created": "2019-04-10T12:08:17.707Z", | |
"accessed": "2019-04-09", | |
"tags": [ | |
"2019", | |
"AU", | |
"Aquatic Science", | |
"GBIF_used", | |
"Invasives", | |
"Oceanography", | |
"ZA", | |
"citation_type:generic", | |
"gbifDOI:10.15468/dl.fygaic", | |
"gbifDOI:10.15468/dl.hekhsi", | |
"gbifDOI:10.15468/dl.wpdszn", | |
"open_access:false", | |
"peer_review:true" | |
], | |
"read": false, | |
"starred": false, | |
"authored": false, | |
"confirmed": false, | |
"hidden": false, | |
"language": "eng", | |
"country": "ZA;AU", | |
"notes": "No funders specified.", | |
"abstract": "The world’s beaches are under severe pressure because of anthropogenic modification and climate change. The most common coastal management approaches have focused largely on the protection of infrastructure without considering the function of the beach and dune system as a natural protective barrier…", | |
"fileAttached": false, | |
"profileId": "9f94630a-5585-3ec3-980d-65173c916aaf", | |
"groupId": "dcb8ff61-dbc0-3519-af76-2072f22bc22f", | |
"updatedAt": "2019-04-11T14:08:09.764Z", | |
"userContext": "GBIF_used", | |
"privatePublication": false, | |
"literatureType": "journal", | |
"searchable": true, | |
"createdAt": "2019-04-02T00:00:00.000Z", | |
"countriesOfResearcher": [ | |
"AU", | |
"ZA" | |
], | |
"countriesOfCoverage": [], | |
"gbifRegion": [], | |
"relevance": [ | |
"GBIF_USED" | |
], | |
"topics": [ | |
"INVASIVES" | |
], | |
"gbifDownloadKey": [ | |
"0069331-160910150852091", | |
"0069309-160910150852091", | |
"0069327-160910150852091" | |
], | |
"peerReview": true, | |
"openAccess": false, | |
"contentType": "literature", | |
"_gbifDOIs": [ | |
"doi:10.15468/dl.fygaic", | |
"doi:10.15468/dl.hekhsi", | |
"doi:10.15468/dl.wpdszn" | |
], | |
"_summary": "", | |
"_slug": "effect-of-introduced-casuarina-trees-on-the-vulnerability-of-sea-turtle-nesting-beaches-to-erosion", | |
"_url": "/literature/9c350ebb-4772-3802-819a-cec4f9923cb9/effect-of-introduced-casuarina-trees-on-the-vulnerability-of-sea-turtle-nesting-beaches-to-erosion" | |
}, | |
{ | |
"title": "Determining the Minimal Background Area for Species Distribution Models: MinBAR Package", | |
"authors": [ | |
{ | |
"firstName": "Xavier", | |
"lastName": "Rotllan-Puig" | |
}, | |
{ | |
"firstName": "Anna", | |
"lastName": "Traveset" | |
} | |
], | |
"year": 2019, | |
"source": "BioRxiv", | |
"identifiers": { | |
"doi": "10.1101/571182" | |
}, | |
"websites": [ | |
"https://doi.org/10.1101/571182" | |
], | |
"month": 3, | |
"publisher": "Cold Spring Harbor Laboratory", | |
"day": 10, | |
"id": "44692714-fe76-37bc-8b97-97e18973b3c2", | |
"created": "2019-03-18T13:48:27.490Z", | |
"accessed": "2019-03-16", | |
"tags": [ | |
"2019", | |
"Biodiversity_science", | |
"ES", | |
"GBIF_used", | |
"citation_type:generic", | |
"gbifDOI:10.15468/dl.1htw8l", | |
"gbifDOI:10.15468/dl.51ud43", | |
"gbifDOI:10.15468/dl.6stmlq", | |
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"gbifDOI:10.15468/dl.dzldah", | |
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"gbifDOI:10.15468/dl.fxzzxv", | |
"gbifDOI:10.15468/dl.g0zyyj", | |
"gbifDOI:10.15468/dl.gphxhp", | |
"gbifDOI:10.15468/dl.idbrjq", | |
"gbifDOI:10.15468/dl.ihampz", | |
"gbifDOI:10.15468/dl.izlpzu", | |
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"gbifDOI:10.15468/dl.lshmvs", | |
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"gbifDOI:10.15468/dl.srgkdi", | |
"gbifDOI:10.15468/dl.u60ogx", | |
"gbifDOI:10.15468/dl.uzpt1x", | |
"gbifDOI:10.15468/dl.vitxba", | |
"gbifDOI:10.15468/dl.yfpx0f", | |
"open_access:true", | |
"peer_review:false" | |
], | |
"read": false, | |
"starred": false, | |
"authored": false, | |
"confirmed": false, | |
"hidden": false, | |
"language": "eng", | |
"country": "ES", | |
"notes": "No funders specified.", | |
"abstract": "One of the crucial choices when modelling species distributions using pseudo-absences approaches is the delineation of the background area to fit the model. We hypothesise that there is a minimum background area around the centre of the species distribution that characterizes well enough the range o…", | |
"fileAttached": false, | |
"profileId": "9f94630a-5585-3ec3-980d-65173c916aaf", | |
"groupId": "dcb8ff61-dbc0-3519-af76-2072f22bc22f", | |
"updatedAt": "2019-03-19T08:22:07.565Z", | |
"userContext": "GBIF_used", | |
"privatePublication": false, | |
"literatureType": "working_paper", | |
"searchable": true, | |
"createdAt": "2019-03-10T00:00:00.000Z", | |
"countriesOfResearcher": [ | |
"ES" | |
], | |
"countriesOfCoverage": [], | |
"gbifRegion": [], | |
"relevance": [ | |
"GBIF_USED" | |
], | |
"topics": [ | |
"BIODIVERSITY_SCIENCE" | |
], | |
"gbifDownloadKey": [ | |
"0042326-180508205500799", | |
"0014707-180131172636756", | |
"0014719-180131172636756", | |
"0016806-180131172636756", | |
"0016813-180131172636756", | |
"0016809-180131172636756", | |
"0014716-180131172636756", | |
"0014711-180131172636756", | |
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"0009821-180131172636756", | |
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"0014709-180131172636756", | |
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"0014724-180131172636756", | |
"0016808-180131172636756", | |
"0016805-180131172636756", | |
"0014712-180131172636756", | |
"0016814-180131172636756", | |
"0016811-180131172636756", | |
"0009816-180131172636756" | |
], | |
"peerReview": false, | |
"openAccess": true, | |
"contentType": "literature", | |
"_gbifDOIs": [ | |
"doi:10.15468/dl.1htw8l", | |
"doi:10.15468/dl.51ud43", | |
"doi:10.15468/dl.6stmlq", | |
"doi:10.15468/dl.6vyew0", | |
"doi:10.15468/dl.djvzg0", | |
"doi:10.15468/dl.dzldah", | |
"doi:10.15468/dl.eo0lqe", | |
"doi:10.15468/dl.ff8tqr", | |
"doi:10.15468/dl.fxzzxv", | |
"doi:10.15468/dl.g0zyyj", | |
"doi:10.15468/dl.gphxhp", | |
"doi:10.15468/dl.idbrjq", | |
"doi:10.15468/dl.ihampz", | |
"doi:10.15468/dl.izlpzu", | |
"doi:10.15468/dl.lnykuh", | |
"doi:10.15468/dl.lpqpm3", | |
"doi:10.15468/dl.lshmvs", | |
"doi:10.15468/dl.mez7r0", | |
"doi:10.15468/dl.mpmnvw", | |
"doi:10.15468/dl.phqgk3", | |
"doi:10.15468/dl.srgkdi", | |
"doi:10.15468/dl.u60ogx", | |
"doi:10.15468/dl.uzpt1x", | |
"doi:10.15468/dl.vitxba", | |
"doi:10.15468/dl.yfpx0f" | |
], | |
"_summary": "", | |
"_slug": "determining-the-minimal-background-area-for-species-distribution-models-minbar-package", | |
"_url": "/literature/44692714-fe76-37bc-8b97-97e18973b3c2/determining-the-minimal-background-area-for-species-distribution-models-minbar-package" | |
}, | |
{ | |
"title": "Acacia saligna Distribution Map", | |
"authors": [ | |
{ | |
"lastName": "Wikipedia contributors" | |
} | |
], | |
"year": 2019, | |
"source": "Wikipedia", | |
"websites": [ | |
"https://commons.wikimedia.org/wiki/File:Acacia_saligna_DistributionMap.png" | |
], | |
"month": 3, | |
"day": 6, | |
"id": "f3cafef5-da99-3944-82c2-292d0f9c4e30", | |
"created": "2019-03-08T09:27:58.781Z", | |
"accessed": "2019-03-06", | |
"tags": [ | |
"2019", | |
"GBIF_used", | |
"Species_distributions", | |
"citation_type:DOI", | |
"gbifDOI:10.15468/dl.vqssco", | |
"open_access:true", | |
"peer_review:false" | |
], | |
"read": false, | |
"starred": false, | |
"authored": false, | |
"confirmed": false, | |
"hidden": false, | |
"language": "eng", | |
"notes": "No funders specified.", | |
"abstract": "(no abstract available)\n", | |
"fileAttached": false, | |
"profileId": "9f94630a-5585-3ec3-980d-65173c916aaf", | |
"groupId": "dcb8ff61-dbc0-3519-af76-2072f22bc22f", | |
"updatedAt": "2019-03-08T09:27:58.781Z", | |
"userContext": "GBIF_used", | |
"privatePublication": false, | |
"literatureType": "web_page", | |
"searchable": true, | |
"createdAt": "2019-03-06T00:00:00.000Z", | |
"countriesOfResearcher": [], | |
"countriesOfCoverage": [], | |
"gbifRegion": [], | |
"relevance": [ | |
"GBIF_USED" | |
], | |
"topics": [ | |
"SPECIES_DISTRIBUTIONS" | |
], | |
"gbifDownloadKey": [ | |
"0049022-181108115102211" | |
], | |
"peerReview": false, | |
"openAccess": true, | |
"contentType": "literature", | |
"_gbifDOIs": [ | |
"doi:10.15468/dl.vqssco" | |
], | |
"_summary": "", | |
"_slug": "acacia-saligna-distribution-map", | |
"_url": "/literature/f3cafef5-da99-3944-82c2-292d0f9c4e30/acacia-saligna-distribution-map" | |
}, | |
{ | |
"title": "Monarch butterfly and milkweed declines substantially predate the use of genetically modified crops", | |
"authors": [ | |
{ | |
"firstName": "J. H.", | |
"lastName": "Boyle" | |
}, | |
{ | |
"firstName": "H. J.", | |
"lastName": "Dalgleish" | |
}, | |
{ | |
"firstName": "J. R.", | |
"lastName": "Puzey" | |
} | |
], | |
"year": 2019, | |
"source": "Proceedings of the National Academy of Sciences", | |
"identifiers": { | |
"doi": "10.1073/pnas.1811437116" | |
}, | |
"keywords": [ | |
"genetically modified crops", | |
"herbarium", | |
"milkweed", | |
"monarch butterfly", | |
"specimen records" | |
], | |
"websites": [ | |
"https://doi.org/10.1073/pnas.1811437116" | |
], | |
"month": 2, | |
"publisher": "Proceedings of the National Academy of Sciences", | |
"day": 5, | |
"id": "d328b357-fbfa-3171-ad68-1c2346b8dac9", | |
"created": "2019-03-04T11:47:35.111Z", | |
"accessed": "2019-03-02", | |
"tags": [ | |
"2019", | |
"Agriculture", | |
"Conservation", | |
"GBIF_used", | |
"GMO", | |
"Multidisciplinary", | |
"US", | |
"citation_type:DOI", | |
"gbifDOI:10.15468/dl.irezsw", | |
"open_access:false", | |
"peer_review:true" | |
], | |
"read": false, | |
"starred": false, | |
"authored": false, | |
"confirmed": false, | |
"hidden": false, | |
"language": "eng", | |
"country": "US", | |
"notes": "#ERROR!", | |
"abstract": "Monarch butterfly (Danaus plexippus) decline over the past 25 years has received considerable public and scientific attention, in large part because its decline, and that of its milkweed (Asclepias spp.) host plant, have been linked to genetically modified (GM) crops and associated herbicide use. He…", | |
"fileAttached": false, | |
"profileId": "9f94630a-5585-3ec3-980d-65173c916aaf", | |
"groupId": "dcb8ff61-dbc0-3519-af76-2072f22bc22f", | |
"updatedAt": "2019-03-04T11:47:35.111Z", | |
"userContext": "GBIF_used", | |
"privatePublication": false, | |
"literatureType": "journal", | |
"searchable": true, | |
"createdAt": "2019-02-05T00:00:00.000Z", | |
"countriesOfResearcher": [ | |
"US" | |
], | |
"countriesOfCoverage": [], | |
"gbifRegion": [], | |
"relevance": [ | |
"GBIF_USED" | |
], | |
"topics": [ | |
"CONSERVATION", | |
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"title": "Assessing the impact of climate change on the worldwide distribution of Dalbulus maidis (DeLong) using MaxEnt", | |
"authors": [ | |
{ | |
"firstName": "P.A", | |
"lastName": "Santana Junior" | |
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"firstName": "L", | |
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"lastName": "Da Silva" | |
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"lastName": "Pereira" | |
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"lastName": "Picanço" | |
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"source": "Pest Management Science", | |
"identifiers": { | |
"doi": "10.1002/ps.5379" | |
}, | |
"keywords": [ | |
"MaxEnt", | |
"Zea mays", | |
"climate change", | |
"corn leafhopper", | |
"ecological niche model", | |
"ecosystem modeling" | |
], | |
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"https://doi.org/10.1002/ps.5379" | |
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"month": 2, | |
"publisher": "Wiley", | |
"day": 19, | |
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"BR", | |
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"notes": "No funders specified.", | |
"abstract": "BACKGROUND: For the first time, a model was applied at the global scale in order to investigate the effects of climate change on Dalbulus maidis. D. maidis is the main vector of three plant pathogens of maize crops and has been reported as one of the most important maize pests in Latin America. We m…", | |
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"_slug": "assessing-the-impact-of-climate-change-on-the-worldwide-distribution-of-dalbulus-maidis-delong-using-maxent", | |
"_url": "/literature/5b3db5cb-dc8a-3014-9e61-bf41a56d42cd/assessing-the-impact-of-climate-change-on-the-worldwide-distribution-of-dalbulus-maidis-delong-using-maxent" | |
}, | |
{ | |
"title": "Species distribution models throughout the invasion history of Palmer amaranth predict regions at risk of future invasion and reveal challenges with m…", | |
"authors": [ | |
{ | |
"firstName": "Ryan D.", | |
"lastName": "Briscoe Runquist" | |
}, | |
{ | |
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"lastName": "Lake" | |
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"_slug": "large-scale-environmental-niche-variation-between-clonal-and-non-clonal-plant-species-roles-of-clonal-growth-organs-and-ecoregions", | |
"_url": "/literature/c5c5fdfb-707f-34d5-96ba-bb996831ec76/large-scale-environmental-niche-variation-between-clonal-and-non-clonal-plant-species-roles-of-clonal-growth-organs-and-ecoregions" | |
}, | |
{ | |
"title": "Bur-chervil Anthriscus caucalis M. Bieb.(Apiaceae): potentially invasive species in forests", | |
"authors": [ | |
{ | |
"firstName": "R.", | |
"lastName": "Puchałka" | |
}, | |
{ | |
"firstName": "L.", | |
"lastName": "Rutkowski" | |
}, | |
{ | |
"firstName": "M.-O.", | |
"lastName": "Popa" | |
}, | |
{ | |
"firstName": "A.", | |
"lastName": "Pliszko" | |
}, | |
{ | |
"firstName": "M.", | |
"lastName": "Piwczyński" | |
} | |
], | |
"year": 2018, | |
"source": "Baltic Forestry", | |
"keywords": [ | |
"Central Europe", | |
"DNA", | |
"Ellenberg’s indicator values (EIV)", | |
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"abstract": "Aim: Invasions are dynamic processes. Invasive spread causes the geographical range size of alien species to increase with residence time. However, with time native competitors and antagonists can adapt to invaders. This build‐up of biotic resistance may eventually limit the invader’s performance an…", | |
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"lastName": "Sosinski" | |
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"lastName": "Pillar" | |
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"title": "The Use of Tree Barks to Monitor Traffic Related Air Pollution: A Case Study in São Paulo–Brazil", | |
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"abstract": "The analysis of chemical elements in the barks of trees is an alternative procedure to access spatial heterogeneity of traffic related air pollution. However, the role of tree species in the characterization of the variability of airborne pollution is poorly known. We present an observational study …", | |
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"title": "Agave americana and Furcraea andina: Key Species to Andean Cultures in Ecuador", | |
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"notes": "HESAM Université;CNRS,OSU OREME;ANR", | |
"abstract": "1.Pollination niches are important components of ecological niches and have played a major role in the diversification of Angiosperms. In this study, we focused on Euro‐Mediterranean orchids, which use diverse pollination strategies and interact with various functional groups of insects. In these or…", | |
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"title": "The adaptive value of heterospory: evidence from Selaginella", | |
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"title": "Combined multi-gene backbone tree for the genus Coniochaeta with two new species from Uzbekistan", | |
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"title": "Ecological niche model comparison under different climate scenarios: a case study of Olea spp. in Asia", | |
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{ | |
"firstName": "Uzma", | |
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"title": "A confirmed observation of Oxalis dillenii in Spain", | |
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"firstName": "Q. J.", | |
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"abstract": "A confirmed observation of Oxalis dillenii in Spain.— We confirm the presence of Oxalis dillenii Jacq. in the Catalonian province Lleida (Catalonia, Spain). Identification was confirmed morphologically and through DNA barcode sequencing. A map of the distribution of O. dillenii is supplied, as are n…", | |
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"title": "Symbiosis limits establishment of legumes outside their native range at a global scale", | |
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"firstName": "Anna K.", | |
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"abstract": "Microbial symbiosis is integral to plant growth and reproduction, but its contribution to global patterns of plant distribution is unknown. Legumes (Fabaceae) are a diverse and widely distributed plant family largely dependent on symbiosis with nitrogen-fixing rhizobia, which are acquired from soil …", | |
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"title": "Self-compatibility is over-represented on islands", | |
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{ | |
"title": "Non-native marine species in north-west Europe: Developing an approach to assess future spread using regional downscaled climate projections", | |
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"abstract": "Tropical America (the Neotropics) harbours more plant species than any other region on Earth. The contribution of rare species to this diversity has been recently recognised, but their spatial distribution remains poorly understood. Here, we use all collection records of angiosperms from the Global …", | |
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"notes": "GBIF use: The Global Biodiversity Information Facility (GBIF; Table 2, Appendix S1) is the largest and most widely known source of species records (Costello et al., 2013). The GBIF makes globally distributed databases of biological specimens and other species observations interoperable, with an emphasis on a comprehensive catalogue of scientific names (Edwards et al., 2000). Information systems are interoperable when they can communicate and exchange data. Institutions and organizations can publish their biodiversity databases through the GBIF and thereby become part of a distributed data network (Guralnick et al., 2007). Participants use the same data standards (Wieczorek et al., 2012), and therefore searches yield results in a common format. The development of the Darwin Core data exchange standards (http://rs.tdwg.org/dwc/) was essential for the large-scale aggregation and exchange of specimen data, enabling the development of the GBIF and similar initiatives.<br/><br/>Funding: National Science Foundation grants . Grant Numbers: DEB-0824708 , EF-1065826 , DEB-1353301 , 2014-SGR-1491 , EF-1065864 , EF-1065753", | |
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"title": "GBIF_PRIMARY", | |
"count": 1 | |
} | |
}, | |
"cardinality": 5 | |
}, | |
"COUNTRIES_OF_COVERAGE": { | |
"field": "COUNTRIES_OF_COVERAGE", | |
"counts": { | |
"US": { | |
"name": "US", | |
"title": "US", | |
"count": 4 | |
}, | |
"UA": { | |
"name": "UA", | |
"title": "UA", | |
"count": 2 | |
}, | |
"AT": { | |
"name": "AT", | |
"title": "AT", | |
"count": 1 | |
}, | |
"BR": { | |
"name": "BR", | |
"title": "BR", | |
"count": 1 | |
}, | |
"CA": { | |
"name": "CA", | |
"title": "CA", | |
"count": 1 | |
}, | |
"EC": { | |
"name": "EC", | |
"title": "EC", | |
"count": 1 | |
}, | |
"GE": { | |
"name": "GE", | |
"title": "GE", | |
"count": 1 | |
}, | |
"PL": { | |
"name": "PL", | |
"title": "PL", | |
"count": 1 | |
}, | |
"RU": { | |
"name": "RU", | |
"title": "RU", | |
"count": 1 | |
}, | |
"TR": { | |
"name": "TR", | |
"title": "TR", | |
"count": 1 | |
}, | |
"ZA": { | |
"name": "ZA", | |
"title": "ZA", | |
"count": 1 | |
} | |
}, | |
"cardinality": 11 | |
}, | |
"PURPOSES": { | |
"field": "PURPOSES", | |
"counts": {} | |
}, | |
"AUDIENCES": { | |
"field": "AUDIENCES", | |
"counts": {} | |
}, | |
"CONTENT_TYPE": { | |
"field": "CONTENT_TYPE", | |
"counts": { | |
"literature": { | |
"name": "literature", | |
"title": "enums.cms.vocabularyTerms.literature", | |
"count": 92 | |
} | |
}, | |
"cardinality": 1 | |
} | |
}, | |
"filters": {} | |
} |
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