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157 results for “color polymorphism”
FIG. 3 in Differential Survival and the Effects of Predation on a Color Polymorphic Species, the Red-Backed Salamander (Plethodon cinereus)
FIG. 3. Examples of clay model replicates of adult striped (top) and unstriped (bottom) Plethodon cinereus.
FIG. 2 in Differential Survival and the Effects of Predation on a Color Polymorphic Species, the Red-Backed Salamander (Plethodon cinereus)
FIG. 2. Map of the location of the study site (Nanticoke River Wildlife Management Area, Wicomico County, Maryland, USA) in Eastern North America.
FIG. 1 in Differential Survival and the Effects of Predation on a Color Polymorphic Species, the Red-Backed Salamander (Plethodon cinereus)
FIG. 1. Examples of striped (left) and unstriped (right) Plethodon cinereus. The striped individual pictured here has a previously autotomized tail, which, while originally striped (see Moore and Ouellet, 2014; Fig. 1), grew back without a red stripe (Petranka, 1998).
FIG. 5 in Differential Survival and the Effects of Predation on a Color Polymorphic Species, the Red-Backed Salamander (Plethodon cinereus)
FIG. 5. The cumulative model weights for survival (ψ) in Spring 2013, 2014, 2015 showed that both age and color morph (a X c) affected survival probability in the spring seasons. In Fall 2013 and 2014, the null model (.) was more heavily weighted than models including age or color.
FIGURE 2 in Gray versus yellow ventral coloration: Identity, distribution, color polymorphism and molecular relationships of the microhylid frog Platypelis mavomavo Andreone, Fenolio & Walvoord, 2003
FIGURE 2. Distribution map showing confirmed records of Platypelis mavomavo as defined herein. Yellow and gray symbols mark localities where specimens are characterized by a yellow or gray ventral color. Round black dots indicate other localities discussed in the text where other Platypelis species or candidate species with fully or partially yellow venter occur (P. ravus, P. sp. Ca8).
FIGURE 1 in Gray versus yellow ventral coloration: Identity, distribution, color polymorphism and molecular relationships of the microhylid frog Platypelis mavomavo Andreone, Fenolio & Walvoord, 2003
FIGURE 1. Molecular differentiation and relationships of specimens of Platypelis mavomavo. (A) Maximum Likelihood tree calculated from a 1229 bp alignment of two concatenated fragments of the mitochondrial 16S rRNA gene for selected specimens of Cophyla and Platypelis. Numbers at nodes are bootstrap proportions in percent (only shown if>50%). The focal P. mavomavo/Ca10 clade is color-highlighted depending on the yellow vs. gray ventral color of the respective specimens. (B) Haplotype network reconstructed from 10 phased sequences of the nuclear-encoded RAG-1 gene (386 bp) in samples assigned to Platypelis mavomavo and P. sp. Ca10. Haplotypes are colored depending on the yellow vs. gray ventral color of the respective specimens. Boxes indicate haplotypes from specific areas.
FIGURE 5 in Gray versus yellow ventral coloration: Identity, distribution, color polymorphism and molecular relationships of the microhylid frog Platypelis mavomavo Andreone, Fenolio & Walvoord, 2003
FIGURE 5. Preserved holotype of Platypelis mavomavo MRSN A2435 in (A) dorsal and (B) ventral views. Not to scale (see Table 1 for original measurements).
Data from: Trade-offs in female signal apparency to males offer alternative anti-harassment strategies for color polymorphic females
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Data from: Breeding success but not mate choice is phenotype- and context-dependent in a color polymorphic raptor
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Data from: Colonization history and population genetics of the color-polymorphic Hawaiian happy-face spider Theridion grallator (Araneae, Theridiidae)
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Data from: Not everything is black and white: color and behavioral variation reveal a continuum between cryptic and aposematic strategies in a polymorphic poison frog
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Data from: Spatial analyses of two color polymorphisms in an alpine grasshopper reveal a role of small‐scale heterogeneity
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Data for: Heritability and parental effects in telomere length in a color polymorphic long-lived bird
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Raw data for: Captivating color: evidence for optimal stimulus design in a polymorphic prey lure
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A single locus regulates a female-limited color pattern polymorphism in a reptile
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Integrative taxonomic analysis to reveal the species status of Bombus flavidus, combining COI and nuclear sequencing, wing morphometrics and secretions used for mate attraction as well as patterns of color polymorphism
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Data from: The genetic basis of a rare flower color polymorphism in Mimulus lewisii provides insight to the evolutionary mutation spectrum
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Testing the niche differentiation hypothesis in wild capuchin monkeys with polymorphic color vision
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Data from: Frequency-dependent and correlational selection pressures have conflicting consequences for assortative mating in a color-polymorphic lizard, Uta stansburiana
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Data from: Regulatory changes in pterin and carotenoid genes underlie balanced color polymorphisms in the wall lizard
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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.
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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.