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226 results for “Plant phenology”
A specialist bee and its host plants experience phenological shifts at different rates in response to climate change
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Broader phenology of pollinator activity and higher plant reproductive success in an urban habitat compared to a rural one
<p>Datasets for 'Broader phenology of pollinator activity and higher plant reproductive success in an urban habitat compared to a rural one' by Zaninotto et al. (2020) in Ecology and Evolution.</p>
Data from: Cascading reproductive isolation: plant phenology drives temporal isolation among populations of a host-specific herbivore
All organisms exist within a complex network of interacting species, thus evolutionary change may have reciprocal effects on multiple taxa. Here, we demonstrate "cascading reproductive isolation," whereby ecological differences that reduce gene flow between populations at one trophic level affect reproductive isolation (RI) among interacting species at the next trophic level. Using a combination of field, laboratory and common-garden studies and long-term herbaria records, we estimate and evaluate the relative contribution of temporal RI to overall prezygotic RI between populations of Belonocnema treatae, a specialist gall-forming wasp adapted to sister species of live oak (Quercus virginiana and Q. geminata). We link strong temporal RI between host-associated insect populations to differences between host plant budbreak phenology. Budbreak initiates flowering and the production of new leaves, which are an ephemeral resource critical to insect reproduction. As flowering time is implicated in RI between plant species, budbreak acts as a "multitrophic multi-effect trait," whereby differences in budbreak phenology contribute to RI in plants and insects. These sister oak species share a diverse community of host-specific gall-formers and insect natural enemies similarly dependent on ephemeral plant tissues. Thus, our results set the stage for testing for parallelism in a role of plant phenology in driving temporal cascading RI across multiple species and trophic levels.
Figure 10 in Immature stages, phenology, distribution and host plants of the Andean Moon Moth Cercophana frauenfeldii Felder, 1862 (Lepidoptera: Saturniidae)
Figure 10 Cercophana frauenfeldii distributional map of continental Chile showing Central-North and Central-South areas (Roman numbers = Administrative regions, MA=metropolitan area).
Figure 9 in Immature stages, phenology, distribution and host plants of the Andean Moon Moth Cercophana frauenfeldii Felder, 1862 (Lepidoptera: Saturniidae)
Figure 9 Cercophana frauenfeldii adults emerged from laboratory rearing.(A) Recently emerged female perching on a twig and (B) Details of the wing design. (C) Recently emerged male perching on a twig and (D) details of its wing design.
Figure 8 in Immature stages, phenology, distribution and host plants of the Andean Moon Moth Cercophana frauenfeldii Felder, 1862 (Lepidoptera: Saturniidae)
Figure 8 Phenology of C. frauenfeldii. Striped area of each phenology bar shows previous records. Grey coloured area of the bars represents the findings of this study.
Figure 6 in Immature stages, phenology, distribution and host plants of the Andean Moon Moth Cercophana frauenfeldii Felder, 1862 (Lepidoptera: Saturniidae)
Figure 6 (A) Ventral, (B) Lateral and (C) Dorsal view of the female pupa of C. frauenfeldii. Modified from Angulo and Weigert (1974).
Figure 5 in Immature stages, phenology, distribution and host plants of the Andean Moon Moth Cercophana frauenfeldii Felder, 1862 (Lepidoptera: Saturniidae)
Figure 5 Pupae of C. frauenfeldii. (A) Frontal view. (B) Detail of the cremaster. (C) Yellow-orange membranes of the fourth, fifth and sixth abdominal segments; and (D) pupa inside the cocoon.
Figure 1 in Immature stages, phenology, distribution and host plants of the Andean Moon Moth Cercophana frauenfeldii Felder, 1862 (Lepidoptera: Saturniidae)
Figure 1 Cercophana frauenfeldii egg details. (A) General view of the egg; (B) Egg side view showing a conspicuous depression; (C) Aeropiles distributed randomly across the chorion surface; (D) Non-fertilized eggs laid by the female inside the rearing cage; (E) Fertilized egg collected from queule leaves and (F) Details of the egg after larval hatching.
Figure 3 in Immature stages, phenology, distribution and host plants of the Andean Moon Moth Cercophana frauenfeldii Felder, 1862 (Lepidoptera: Saturniidae)
Figure 3 Larval instars of C. frauenfeldii. (A) First instar showing long setae and lack of coloured spots. (B) Second instar, showing first spots variable in size and number. (C) Third instar, exhibiting the first stages of the scoli on the third thoracic segment and the false eye on the second thoracic segment. (D) Fourth instar showing scoli and false eye fully developed and the yellowish line running from the scoli to the last segment with the hypognathous head hidden within the first and second thoracic segments. (E) Larval camouflage pattern.
Figure 2 in Natural history of Peucetia flava (Araneae, Oxyopidae): seasonal density fluctuation, phenology and sex ratio on the glandular plant Rhyncanthera dichotoma (Melastomataceae)
Figure 2. Phenogram of the Peucetia flava population on plants of Rhyncanthera dichotoma.
Data from: Hard and soft selection on phenology through seasonal shifts in the general and social environments: a study on plant emergence time
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Data from: Phenological asynchrony in plant–butterfly interactions associated with climate: a community-wide perspective
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Data from: Cascading reproductive isolation: plant phenology drives temporal isolation among populations of a host-specific herbivore
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Data from: Latitudinal variation in resistance and tolerance to herbivory in the perennial herb Lythrum salicaria is related to intensity of herbivory and plant phenology
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Data from: Plant phenological asynchrony and community structure of gall-inducing insects associated with a tropical tree species
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Data from: Responses of plant phenology to nitrogen addition: a meta-analysis
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Data from: Differential responses of sexual and asexual <em>Aphis gossypii</em> lineages to climate change: shifts in distribution, phenology, and host-plant interactions
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Data from: Phylogenetic conservatism in plant phenology
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Soil microbes and plant phenology data and R code
<p>Datasets and R code associated with a manuscript by M. Van Nuland et al. that details how natural soil microbiome variation affects plant biomass growth by mediating spring foliar phenology. Included are bacterial and fungal community and taxonomic datasets, experimental plant phenology datasets, and code to reproduce all data analysis and figures in the associated manuscript.</p>
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Allen Brain Atlas
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DANDI Archive for NWB datasets
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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.