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.
182
datasets available to search
ShareScore release 0.7.1
Dataset results
182 results for “boldness”
Boldness and Congener Impact on the Behavior of Faxonius rusticus and Faxonius virilis
Competition is an important ecological interaction that drives a number of processes from evolution to behavioral and physiological mechanisms. Competition between congeners is often intense given the significant overlap of niche structures for the two species. An interesting aspect of competition that is understudied is the mechanisms by which organisms know that they are in competition with another species. Thus, the sensory cues or signals that are being detected by competitors is the initial mechanism for changes in behavior or physiology. Crayfish are the most invasive aquatic species and often replace existing crayfish species through superior competition. This study was designed to investigate how chemical cues my be used by overlapping species of crayfish to determine the degree and intensity of competition and how that recognition changes resource use. These studies were performed in flow through mesocosms at the University of Michigan Biological Station. The results indicate that internal factors (size and personality) play a role in determining resource use for some resources, whereas external (chemical cues) and internal (personality) play a role in determining resource use for other resources.
BOLD Verb Generation
Open the record for dataset details and reuse information.
GenBank accession numbers of the four marker genes and associated voucher specimens/tissues that were used in this study. For more details see Guo et al. (2014). Sequences of species in bold are unpublished and were provided by P. Guo as personal communication in Rediscovery of Andrea's keelback, Hebius andreae (Ziegler & Le, 2006): First country record for Laos and phylogenetic placement
GenBank accession numbers of the four marker genes and associated voucher specimens/tissues that were used in this study. For more details see Guo et al. (2014). Sequences of species in bold are unpublished and were provided by P. Guo as personal communication
A list of collection codes and corresponding BOLD numbers to sixty new dragonfly and damselfly species from Africa
<p>These files contain the data and accession numbers used in the following publication:</p> <p>Dijkstra, Klaas-Douwe B. et al.. (2015). Sixty new dragonfly and damselfly species from Africa (Odonata). Odonatologica 44(4): 447-678. doi:10.5281/zenodo.35388</p> <p>Contents</p> <p>- Lab (BOLD numbers)<br /> - Vouchers<br /> - Taxonomy<br /> - Specimen details<br /> - CollectionData</p> <p> </p> <p>uploaded for Odonatologica by Plazi</p>
COInr a comprehensive, non-redundant COI database from NCBI-nt and BOLD
<p>COInr is a non-redundant, comprehensive database of COI sequences extracted from NCBI-nt and BOLD. It is not limited to a taxon, a gene region, or a taxonomic resolution. Sequences are dereplicated between databases and within taxa.</p> <p>Each taxon has a unique taxonomic Identifier (taxID), fundamental to avoid ambiguous associations of homonyms and synonyms in the source database. TaxIDs form a coherent hierarchical system fully compatible with the NCBI taxIDs allowing creating their full or ranked linages.<br> <br> COInr is a good starting point to create custom databases according to the users’ needs using mkCOInr scripts available at <a href="https://github.com/meglecz/mkCOInr">https://github.com/meglecz/mkCOInr</a> <br> It is possible to select/eliminate sequences for a list of taxa, select a specific gene region, select for minimum taxonomic resolution, add new custom sequences, and format the database for BLAST, QIIME, RDP classifiers.</p> <p> </p>
Text-fig. 1. Map of the Isle of Wight with the distribution of the Wealden Group exposed on the south-western and south-eastern coast, showing the fossil localities mentioned in the text (in bold). in First Record Of Intact Equisetalean Strobili From The Wealden (Lower Cretaceous) Of The Isle Of Wight, Southern England
Text-fig. 1. Map of the Isle of Wight with the distribution of the Wealden Group exposed on the south-western and south-eastern coast, showing the fossil localities mentioned in the text (in bold).
Dataset: Boundless Bio, Inc. (BOLD) Stock Performance
This dataset provides historical stock market performance data for specific companies. It enables users to analyze and understand the past trends and fluctuations in stock prices over time. This information can be utilized for various purposes such as investment analysis, financial research, and market trend forecasting.
Рис. 1. ФиΛогенетические Αеревья хантавируса AMRV и его прироΑного носитеΛя восточноазиатской мыши Apodemus peninsulae Thomas, 1906. А. ФиΛогенетическое Αерево восточноазиатской мыши Apodemus peninsulae, построенное метоΑом «максимаΛьного правΑопоΑобия» (ML) и поΛученное на основе анаΛиза участка гена цитохрома b мтΔНК (744 п.н.). В узΛах ветвΛения указаны бутстреп-поΑΑержки, рассчитанные ΑΛя 1000 повторов. Цветными Λиниями обозначены фиΛогенетические Λинии: Αве Китайские (зеΛеный), Корейская «Korea» (синий), Амурская «Amur» (красный). ПоΛужирным шрифтом выΑеΛены собственные образцы. Названия образцов из GenBank/NCBI быΛи сокращены; B. ФиΛогенетическое Αерево из работы Α. Н. Яшиной с ΑопоΛнениями, построенное метоΑом «бΛижайшего сосеΑа» (NJ) на основе посΛеΑоватеΛьностей фрагмента М-сегмента (2737–2980 н.п.) генома хантавирусов. В узΛах ветвΛения указаны бутстреппоΑΑержки, рассчитанные ΑΛя 1000 повторов. Жирным выΑеΛены иссΛеΑованные РНК изоΛяты (Яшина 2012; Яшина и Αр. 2019) Fig. 1. Phylogenetic trees of AMRV and its natural reservoir host — the Korean field mouse Apodemus peninsulae Thomas, 1906. A. Phylogenetic tree of the Korean field mouse Apodemus peninsulae constructed by the "maximum likelihood" method (ML). The data are obtained from the analysis of the cytochrome b mtDNA gene fragments (744 bp). Bootstrap supports calculated for 1,000 repeats are indicated in the branching nodes. Colored lines indicate phylogenetic lines: two Chinese (green), Korea (blue), and Amur (red). Own samples are highlighted in bold. The names of the samples from GenBank/NCBI have been shortened; B. Phylogenetic tree from L. N. Yashina's work with additions constructed by the neighbour joining method (NJ). It is based on the sequences of an M-segment fragment (2737–2980 bp) of the hantavirus genome. Bootstrap supports calculated for 1,000 repeats are indicated in the branching nodes. The researched RNA isolates are highlighted in bold (Yashina 2012; Yashina et al. 2019) in Variability of the gene cyt b in the Korean field mouse Apodemus peninsulae Thomas, 1906 - a reservoir host of AMRV in the Khasansky District of Primorsky Krai
Рис. 1. ФиΛогенетические Αеревья хантавируса AMRV и его прироΑного носитеΛя восточноазиатской мыши Apodemus peninsulae Thomas, 1906. А. ФиΛогенетическое Αерево восточноазиатской мыши Apodemus peninsulae, построенное метоΑом «максимаΛьного правΑопоΑобия» (ML) и поΛученное на основе анаΛиза участка гена цитохрома b мтΔНК (744 п.н.). В узΛах ветвΛения указаны бутстреп-поΑΑержки, рассчитанные ΑΛя 1000 повторов. Цветными Λиниями обозначены фиΛогенетические Λинии: Αве Китайские (зеΛеный), Корейская «Korea» (синий), Амурская «Amur» (красный). ПоΛужирным шрифтом выΑеΛены собственные образцы. Названия образцов из GenBank/NCBI быΛи сокращены; B. ФиΛогенетическое Αерево из работы Α. Н. Яшиной с ΑопоΛнениями, построенное метоΑом «бΛижайшего сосеΑа» (NJ) на основе посΛеΑоватеΛьностей фрагмента М-сегмента (2737–2980 н.п.) генома хантавирусов. В узΛах ветвΛения указаны бутстреппоΑΑержки, рассчитанные ΑΛя 1000 повторов. Жирным выΑеΛены иссΛеΑованные РНК изоΛяты (Яшина 2012; Яшина и Αр. 2019) Fig. 1. Phylogenetic trees of AMRV and its natural reservoir host — the Korean field mouse Apodemus peninsulae Thomas, 1906. A. Phylogenetic tree of the Korean field mouse Apodemus peninsulae constructed by the "maximum likelihood" method (ML). The data are obtained from the analysis of the cytochrome b mtDNA gene fragments (744 bp). Bootstrap supports calculated for 1,000 repeats are indicated in the branching nodes. Colored lines indicate phylogenetic lines: two Chinese (green), Korea (blue), and Amur (red). Own samples are highlighted in bold. The names of the samples from GenBank/NCBI have been shortened; B. Phylogenetic tree from L. N. Yashina's work with additions constructed by the neighbour joining method (NJ). It is based on the sequences of an M-segment fragment (2737–2980 bp) of the hantavirus genome. Bootstrap supports calculated for 1,000 repeats are indicated in the branching nodes. The researched RNA isolates are highlighted in bold (Yashina 2012; Yashina et al. 2019)
Text-fig. 3. CA climate charts for the Monte Tondo and Tossignano floras, showing climatic ranges of the Nearest Living Relatives of the fossil taxa with respect to MAT. Right-hand positoned large bold figures and shaded areas in each case indicate the Coexistence Interval, with the number of overlapping taxa being at a maximum. in Palaeoenvironmental Analysis Of The Messinian Macrofossil Floras Of Tossignano And Monte Tondo (Vena Del Gesso Basin, Romagna Apennines, Northern Italy)
Text-fig. 3. CA climate charts for the Monte Tondo and Tossignano floras, showing climatic ranges of the Nearest Living Relatives of the fossil taxa with respect to MAT. Right-hand positoned large bold figures and shaded areas in each case indicate the Coexistence Interval, with the number of overlapping taxa being at a maximum.
Figs 13-19. Figs 13, 14 in To boldly go: on invasive goblin spiders in Brazil (Araneae, Oonopidae)
Figs 13-19. Figs 13, 14, Triaeris stenaspis Simon, 1891, female: 13, dorsal; 14, genitalia, ventral. Figs 15-19, Xestaspis parmata Thorell, 1890, comb. rest., female: 15, dorsal; 16, genitalia, ventral; 17, abdomen, anterior, lateral. Male: 18, palp prolateral; 19, palp retrolateral.
Figs 49-57. Figs 49-52 in To boldly go: on invasive goblin spiders in Brazil (Araneae, Oonopidae)
Figs 49-57. Figs 49-52, Orchestina pavesiiformis Saaristo, 2007, male: 49, dorsal; 51, palp retrolateral. Female: 50, dorsal; 52, genitalia, ventral; 53- 57. Orchestina dentifera Simon, 1893, male: 53, dorsal; 55, projection of the chelicerae; 56, palp retrolateral. Female: 54, dorsal; 57, genitalia, ventral.
Figs 60, 61 in To boldly go: on invasive goblin spiders in Brazil (Araneae, Oonopidae)
Figs 60, 61. Brazilian records of: 60, Pelicinus marmoratus and Triaeris stenaspis; 61, Orchestina pavesiiformis, O. dentifera, Opopaea concolor and O. deserticola.
Figs 58, 59 in To boldly go: on invasive goblin spiders in Brazil (Araneae, Oonopidae)
Figs 58, 59. Brazilian records of: 58, Brignolia dasysterna and B. pauropunctata; 59, Xestaspis parmata, Heteronoops spinimanus, Ischnothyreus peltifer and I. velox.
Figs 20-30. Figs 20-25 in To boldly go: on invasive goblin spiders in Brazil (Araneae, Oonopidae)
Figs 20-30. Figs 20-25, Ischnothyreus peltifer (Simon, 1891), male: 20, dorsal; 23, projection of chelicerae; 24, palp prolateral; 25, palp retrolateral. Female: 21, dorsal; 22, genitalia, ventral. Figs 26-30, Ischnothyreus velox Jackson, 1908, female: 26, dorsal; 27, genitalia, ventral. Male: 28, palp retrolateral; 29, palp prolateral; 30, palp ventral.
Figs 41-48. Figs 41-45 in To boldly go: on invasive goblin spiders in Brazil (Araneae, Oonopidae)
Figs 41-48. Figs 41-45, Pelicinus marmoratus Simon, 1891, male: 41, dorsal; 43, palp dorso-prolateral; 44, palp retrolateral. Female: 42, dorsal; 45, genitalia, ventral. Figs 46-48. Heteroonops spinimanus (Simon, 1891), female: 46, dorsal; 47, genitalia, ventral; 48, female palp, lateral.
Figs 1-12. Figs 1-6 in To boldly go: on invasive goblin spiders in Brazil (Araneae, Oonopidae)
Figs 1-12. Figs 1-6, Brignolia dasysterna Platnick, Dupérré, Ott & Kranz-Baltensperger, 2011, male: 1, dorsal; 3, modified hairs in the sternum; 5, palp, retrolateral; 6, palp, prolateral. Female: 2, dorsal; 4, genitalia, ventral. Figs 7-12, Brignolia parumpunctata (Simon, 1893), male: 7, dorsal; 9, projection of clypeus; 11, palp prolateral; 12, palp retrolateral. Female: 8, dorsal; 10, genitalia, ventral.
Figs 31-40. 31-35 in To boldly go: on invasive goblin spiders in Brazil (Araneae, Oonopidae)
Figs 31-40. 31-35. Opopaea concolor (Blackwall, 1859), male: 31, dorsal; 34, palp retrolateral; 35, palp prolateral. Female: 32, dorsal; 33, genitalia, ventral. Figs 36-40, Opopaea deserticola Simon, 1891, male: 36, dorsal; 39, palp retrolateral; 40, palp prolateral. Female: 37, dorsal; 38, genitalia, ventral.
Linked collectors and determiners for: Streamlining the use of BOLD specimen data to record species distributions: a case study with ten Nearctic species of Microgastrinae (Hymenoptera: Braconidae).
Natural history specimen data linked to collectors and determiners held within, "Streamlining the use of BOLD specimen data to record species distributions: a case study with ten Nearctic species of Microgastrinae (Hymenoptera: Braconidae)". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/3a8a3458-675f-46f1-abbc-6e089059e5e8">https://bionomia.net/dataset/3a8a3458-675f-46f1-abbc-6e089059e5e8</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/3a8a3458-675f-46f1-abbc-6e089059e5e8">https://gbif.org/dataset/3a8a3458-675f-46f1-abbc-6e089059e5e8</a>. Formatted as a Frictionless Data package.
Text-fig. 1. Result of cumulative random counting of MN 5 localities in central Europe and the Iberian Peninsula. Ten simulations were run for each area. a. Results of the count including the average in bold, showing the clearly lower diversity in IB. b. The average lines standardized, showing similar patterns in the two areas. Note that in the simulation around thirty localities were needed to capture 80 % of the regional diversity. in Generically Speaking, A Survey On Neogene Rodent Diversity At The Genus Level In The Now Database
Text-fig. 1. Result of cumulative random counting of MN 5 localities in central Europe and the Iberian Peninsula. Ten simulations were run for each area. a. Results of the count including the average in bold, showing the clearly lower diversity in IB. b. The average lines standardized, showing similar patterns in the two areas. Note that in the simulation around thirty localities were needed to capture 80 % of the regional diversity.
Barcode of Life Data Systems: BOLDS main resource (81) DwCA
<p>http://www.boldsystems.org/. The Barcode of Life Data Systems (BOLD), is a web platform that provides an integrated environment for the assembly and use of DNA barcode data. It delivers an online database for collection and management of specimen, distributional, and molecular data as well as analytical tools to support their validation. Over the past few years, BOLD has grown to become a powerful online workbench and the central informatics hub of the DNA barcoding community. BOLD is freely available to any researcher with interests in DNA Barcoding. By providing specialized services, it aids in the publication of records that meet the standards needed to gain BARCODE designation in the global sequence databases. Because of its web-based delivery and flexible data security model, it is also well positioned to support projects that involve broad research alliances.</p> <p> </p>
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.