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760 results for “Species occurrences”
Actual and predicted distributions of Adoxotoma and Helpis, triangles: actual distribution from field data, and predicted distribution based upon bioclimatic profile for each genus. Growing shade intensity illustrates likelihood of occurrence. in A new genus and five new species of Astieae (Araneae: Salticidae) from Australia, with remarks on distribution
Actual and predicted distributions of Adoxotoma and Helpis, triangles: actual distribution from field data, and predicted distribution based upon bioclimatic profile for each genus. Growing shade intensity illustrates likelihood of occurrence.
Fig. 4 in First Observation of Variimorda (Variimorda) holzschuhi Horák, 1985 (Coleoptera: Mordellidae) as a Woodborer on Vitis vinifera L.; Possible Pest or Co-Occurrent Species?
Fig. 4. Galleries and damage to vine trunks. A) Trunk of Vitis vinifera presenting galleries of wood boring beetles, B) Specimen of Variimorda holzschuhi found dead inside a gallery, C) Emergence hole produced by V. holzschuhi on grapevine bark.
Fig. 1. A in First Observation of Variimorda (Variimorda) holzschuhi Horák, 1985 (Coleoptera: Mordellidae) as a Woodborer on Vitis vinifera L.; Possible Pest or Co-Occurrent Species?
Fig. 1. A) Growth-retarded Vitis vinifera exposed to wood borers, B) V. vinifera without wood borers, C) Vineyard area with Variimorda holzschuhi.
FIGURE 5 in Phylogenetic placement of a new species of Corynesporopsis from dead acacia wood indicates occurrence of tretic conidiogenesis within Xylariales
FIGURE 5. Bispora betulina, conidiophores and conidia. a. From natural wood substrate (IMI 78573, K). Scale bar = 10 μm. b. From agar plate culture (IMI 96728, K). Scale bar = 20 μm.
FIGURE 2. Corynesporopsis acaciae. a in Phylogenetic placement of a new species of Corynesporopsis from dead acacia wood indicates occurrence of tretic conidiogenesis within Xylariales
FIGURE 2. Corynesporopsis acaciae. a. Habitat formed by stump of Acacia confusa at type locality. b. Ex-type culture on corn meal agar with red pigment diffusing from the dark brown colony.
FIGURE 4. Corynesporopsis quercicola. a, b. Conidiophores and conidia. c in Phylogenetic placement of a new species of Corynesporopsis from dead acacia wood indicates occurrence of tretic conidiogenesis within Xylariales
FIGURE 4. Corynesporopsis quercicola. a, b. Conidiophores and conidia. c. Young conidium emerging from apical pore of the terminal conidiogenous cell. d, e. Catenate conidia. Scale bars = 20 μm.
FIGURE 1 in Phylogenetic placement of a new species of Corynesporopsis from dead acacia wood indicates occurrence of tretic conidiogenesis within Xylariales
FIGURE 1. Maximum Likelihood tree showing estimated relationships of Corynesporopsis acaciae among Xylariales and some other orders of Sordariomycetes based on 5.8S-ITS and LSU rDNA sequences. Bootstrap values above 50% (1,000 replicates) are indicated at the nodes. The tree was rooted with the clade representing Hypocreales (Claviceps purpurea and Nectria cinnabarina).
FIGURE 3. Corynesporopsis acaciae, microscopic characteristics. a. Conidiophores and conidia from the holotype. b. Conidiophores from another, overmature specimen. c in Phylogenetic placement of a new species of Corynesporopsis from dead acacia wood indicates occurrence of tretic conidiogenesis within Xylariales
FIGURE 3. Corynesporopsis acaciae, microscopic characteristics. a. Conidiophores and conidia from the holotype. b. Conidiophores from another, overmature specimen. c. Conidiophores from the ex-type culture shown in 2b. Scale bars: c, d, e = 10 μm.
FIGURE 5 in Evaluating the occurrence and conservation statuses of Sri Lankan Orchids (Orchidaceae): Observations on newly recorded species and undocumented regions
FIGURE 5. (A). Habenaria pterocarpa (B). Ipsea speciosa (C). Liparis elliptica (D). Liparis brachyglottis (E). Podochilus warnagalensis (F). Zeuxine reginasilvae.
FIGURE 4 in Evaluating the occurrence and conservation statuses of Sri Lankan Orchids (Orchidaceae): Observations on newly recorded species and undocumented regions
FIGURE 4. (A). Acanthephippium bicolor (B). Aerangis hologlottis (C). Anoectochilus regalis (D). Arundina minor (E). Didymoplexis pallens (F). Habenaria dolichostachya.
FIGURE 2 in Contribution to the knowledge of Bonamia (Convolvulaceae) in Brazil: a new species and a new occurrence
FIGURE 2. Distribution of Bonamia campestris, and Bonamia rosiewiseae, showing the new collections from Brazil and the type collection from Bolivia. Abbreviations: BA: Bahia; BOL: Bolivia; GO: Goiás; MA: Maranhão; MS: Mato Grosso do Sul; MT: Mato Grosso; PAR: Paraguay; PI: Piauí and TO: Tocantins.
FIGURE 4 in Contribution to the knowledge of Bonamia (Convolvulaceae) in Brazil: a new species and a new occurrence
FIGURE 4. Herbarium specimen of Bonamia rosiewiseae (G.A. Damasceno-Junior et al. 2602). A. Habit. B–C. Detail of inflorescence.
FIGURE 3. Bonamia rosiewiseae J.R.I.Wood, A. Habit. B. Inflorescence. C in Contribution to the knowledge of Bonamia (Convolvulaceae) in Brazil: a new species and a new occurrence
FIGURE 3. Bonamia rosiewiseae J.R.I.Wood, A. Habit. B. Inflorescence. C. Flower. Photos by Darwin Initiative Project 16-004.
FIGURE 1. Bonamia campestris A in Contribution to the knowledge of Bonamia (Convolvulaceae) in Brazil: a new species and a new occurrence
FIGURE 1. Bonamia campestris A.Moreira & Sim.-Bianch., A: Inflorescence, B: Abaxial surface of leaf, C: Bract, D: External sepal, E: Internal sepal, F: Corolla, G: Style, H: Fruit, I: Seed, J: Habit. Drawing by Laura Montserrat.
FIGURES 61–63. Tischeriidae occurrence across different elevations. 61 in How high can trumpet moths occur: documentation of mountainous leaf-mining Tischeriidae, featuring a species from record-high elevations
FIGURES 61–63. Tischeriidae occurrence across different elevations. 61, based on the current data of the global fauna (192 species), with the record-high altitudes for Tischeriidae compared with the record-high altitude reported for Nepticulidae; 62, Tischeriidae in the tropical regions (97 species) showing Astrotischeria andina sp. nov. as a species discovered at record-high altitudes; 63, Tischeriidae in non-tropical regions (105 species) showing the species discovered at record-high altitudes in nontropical regions. *Note that the distribution of some species overlaps across different altitudes, and some species have been discovered in both tropical (Fig. 62) and non-tropical regions (Fig. 63). The total current number of Tischeriidae species is still 192 (not 97+105). Note that this illustrative representation of the diversity of ecosystems, conveyed by J. R. Stonis, is presented in a stylized and idealized manner, without relying on precise depiction of the actual components.
FIGURE 5 in Integrative approach reveals underestimated Peyssonneliales diversity in Brazil: registering the first occurrence of Ramicrusta and Incendia, with the description of three new species
FIGURE 5. Maximum likelihood (ML) tree of COI-5P. Bootstrap values (BP) and posterior probabilities (PP) are shown at the nodes BP/PP. Samples generated in this study are in bold; – indicates lack of bootstrap support or values under 75; * indicates full support. Inset displays ABGD reconstructions.
FIGURE 6 in Integrative approach reveals underestimated Peyssonneliales diversity in Brazil: registering the first occurrence of Ramicrusta and Incendia, with the description of three new species
FIGURE 6. Maximum likelihood (ML) tree of SSU. Bootstrap values (BP) and posterior probabilities (PP) are shown at the nodes BP/PP. Samples generated in this study are in bold; – indicates lack of bootstrap support or values under 75; * indicates full support.
FIGURE 1 in Integrative approach reveals underestimated Peyssonneliales diversity in Brazil: registering the first occurrence of Ramicrusta and Incendia, with the description of three new species
FIGURE 1. Incendia yoneshigueana. (A) Habit. (B) Radial vertical section of thallus, evidencing perithallus. (C) Upper perithallus. (D) Multicellular rhizoids. Basal cell partially embedded in hypobasal cuticle (arrows). (E) Radial cellular projections in lower perithallus connected by secondary pit connections (arrows). (F) Radial cellular projections in lower perithallus (arrows). Scale bar: A, 1 cm; B, 100 μm; C, D, E and F, 30 μm.
FIGURE 4 in Integrative approach reveals underestimated Peyssonneliales diversity in Brazil: registering the first occurrence of Ramicrusta and Incendia, with the description of three new species
FIGURE 4. Maximum likelihood (ML) tree of rbcL sequences. Bootstrap values (BP) and posterior probabilities (PP) are shown at the nodes ML/PP. Samples generated in this study are in bold; – indicates lack of bootstrap support or values under 75; * indicates full support. Inset displays ABGD reconstructions.
FIGURE 3 in Integrative approach reveals underestimated Peyssonneliales diversity in Brazil: registering the first occurrence of Ramicrusta and Incendia, with the description of three new species
FIGURE 3. Ramicrusta paradoxa. (A) Habit. (B) Radial vertical section of thallus, evidencing perithallus, tetrasporangial nemathecium (arrow) and tetrasporangia (arrowhead). (C) Lower perithallus cells branched, giving rise to two upper perithallus cells (arrows). (D) Multicellular rhizoids. Scale bar: A, 1 cm; B, 100 μm; C and D, 30 μm.
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.