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860 results for “distribution ecology”
Figure 3 in Ecological conditions of Javan langur (Trachypithecus auratus É. Geoffroy Saint-Hilaire, 1812) in Sokokembang Forest (Central Java, Indonesia) through distribution and food preferences
Figure 3. Percentage composition of plant parts eaten by Javan langurs in Sokokembang forest.
Figure 4 in Ecological conditions of Javan langur (Trachypithecus auratus É. Geoffroy Saint-Hilaire, 1812) in Sokokembang Forest (Central Java, Indonesia) through distribution and food preferences
Figure 4. Distribution map of Javan langur food plants.
Figure 1 in Ecological conditions of Javan langur (Trachypithecus auratus É. Geoffroy Saint-Hilaire, 1812) in Sokokembang Forest (Central Java, Indonesia) through distribution and food preferences
Figure 1. Location of Sokokembang forest, Pekalongan Regency, Central Java, Indonesia.
Figure 5 in Ecological conditions of Javan langur (Trachypithecus auratus É. Geoffroy Saint-Hilaire, 1812) in Sokokembang Forest (Central Java, Indonesia) through distribution and food preferences
Figure 5. Percentage of canopy stratum utilization by Javan langurs in Sokokembang forest.
Illuminating ecology and distribution of the rare fungus Phellinidium pouzarii in the Bavarian Forest National Park
<p><span>Due to their cryptic lifestyle, hidden diversity and a lack of ecological knowledge, conservation of wood-inhabiting fungi used to be a niche interest. Molecular methods are able to provide deeper insights into the ecology of rare fungal species. We investigated the occurrence of the rare wood-inhabiting fungus <em>Phellinidium pouzarii</em> across the Bavarian Forest National Park in Germany using a fruit body survey, metabarcoding and qPCR. Additionally, we sequenced the genome of <em>P. pouzarii </em><span>and</span> characterized the chemical substances responsible for its distinctive scent. Our approach gave matching results between amplicon sequencing and qPCRs, however, we found no evidence that <em>P. pouzarii</em> is more abundant in the National Park than we can assume based on fruit body inventories, underlining the species’ critically endangered status. Genomics revealed <em>P. pouzarii</em>s repertoire of ligninolytic enzymes, pointing towards a white rot lifestyle. Two main components of <em>P. pouzarii</em>s distinct odour we identified (2-phenylethanol, methyl <em>p</em>-anisate) are known to act as insect attractants and/or to possess antimicrobial properties. While <em>P. pouzarii</em> seems to be less competitive than other white-rotters based on its enzymatic repertoire, copy number variation and genome size, the production of 2-phenylethanol might be a way of reducing competition and facilitate dispersal <em>via</em> insects. </span></p>
Additional climate information for research paper «Ecological and Geographical Analysis of Distribution of Heracleum persicum, H. mantegazzianum and H. sosnowskyi on The Northern Limit of Its Invaded Range in Europe» submitted to Russian Journal of Biological Invasions
<p><strong>Additional climate information for research paper «Ecological and Geographical Analysis of Distribution of Heracleum persicum, H. mantegazzianum and H. sosnowskyi on The Northern Limit of Its Invaded Range in Europe» submitted to Russian Journal of Biological Invasions </strong></p>
Figure 14 in Survey of European mites from the suborder Uropodina: II. Morphology, geographical distribution, biology, and ecology of Trematurella elegans (Kramer, 1882)
Figure 14 Distribution ofTrematurella elegans in Europe;? – Probable occurrence.
Figure 3 A, B in Survey of European mites from the suborder Uropodina: II. Morphology, geographical distribution, biology, and ecology of Trematurella elegans (Kramer, 1882)
Figure 3 A, B – Trematurella elegans – Female, characteristic spines (S) on the marginal shield.
Data for: Carbon-concentrating mechanisms are a key trait in lichen ecology and distribution
<p>Carbon-concentrating mechanisms (CCMs) are a widespread phenomenon in photosynthetic organisms. In vascular plants, the evolution of CCMs (C4 and CAM) is associated with significant shifts, most often to hot, dry and bright or aquatic environments. If and how CCMs drive distributions of other terrestrial photosynthetic organisms, remains little studied. Lichens are ecologically important obligate symbioses between fungi and photosynthetic organisms. The primary photosynthetic partner in these symbioses can include CCM-presenting cyanobacteria (as carboxysomes), CCM-presenting green algae (as pyrenoids) or green algae lacking any CCM. We use an extensive dataset of lichen communities from eastern North America, spanning a wide climatic range, to test the importance of CCMs as predictors of lichen ecology and distribution. We show that presence or absence of CCMs leads to opposite responses to temperature and precipitation in green algal lichens, and with different responses in cyanobacterial lichens. These responses <span>contrast with</span> our understanding of lichen physiology, whereby CCMs mitigate carbon limitation by water saturation at the cost of efficient use of vapor hydration. This study demonstrates that CCM-status is a key functional trait in obligate lichen symbioses, equivalent in importance to its role in vascular plants, and central for studying present and future climate responses.</p>
Fig. 1 in SHORT COMMUNICATIONS The distribution, ecology and phenology of the South African Natalimyzidae (Diptera: Schizophora: Sciomyzoidea)
Fig. 1. Map showing the distribution of Natalimyzidae in South Africa.
Unveiling global species abundance distributions - Callaghan et al. 2023 - Nature Ecology and Evolution
<p>This repository represents some data and code to reproduce the main figures from Callaghan et al. 2023. Unveiling the global species abundance distributions of Eukaryotes. Nature Ecology and Evolution.</p>
Scale-dependence of ecological assembly rules: insights from empirical datasets and joint species distribution modelling
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Code from: Climate, ecological dynamics, and the seasonal distribution of birds in mountains
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Prophage-DB: A comprehensive database to explore diversity, distribution, and ecology of prophages
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WorldClim, elevation and distribution data for all palms from: The ecology of palm genomes: Repeat-associated genome size expansion is constrained by aridity
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Data for: Carbon-concentrating mechanisms are a key trait in lichen ecology and distribution
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Data from: A new null model approach to quantify performance and significance for ecological niche models of species distributions
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Data from: Distribution and protection of ecological specialists in Chinese terrestrial mammals
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Preservation biases in the fossil record distort species ecological niche and distribution models
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Seeing shapes in clouds: the fallacy of deriving ecological hypotheses from statistical distributions
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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.