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96 results for “quail”
Data from: Plasticity and the structural characteristics of personality traits in captive-reared Japanese quail during ontogeny
<p>This dataset contains the measurements of different personality traits in a study on Japanese quail.</p>
Fig. 2 in Nitrogen fertilization: Effect on Cd-phytoextraction by the halophytic plant quail bush [Atriplex lentiformis (Torr.) S. Wats] *
Fig. 2. Total chlorophyll and proline content in leaves of A. lentiformis plants. Means (±standard deviation, n = 4) denoted by different letters are significantly different at P <0.05.
Fig. 1 in Nitrogen fertilization: Effect on Cd-phytoextraction by the halophytic plant quail bush [Atriplex lentiformis (Torr.) S. Wats] *
Fig. 1. Cadmium concentrations in the roots and shoots of A. lentiformis plants. Means (±standard deviation, n = 4) denoted by different letters are significantly different at P <0.05.
Fig. 4 in Nitrogen fertilization: Effect on Cd-phytoextraction by the halophytic plant quail bush [Atriplex lentiformis (Torr.) S. Wats] *
Fig. 4. Relationships between shoot Cd concentrations and chlorophyll (A) and proline (B) in leaves of A. lentiformis plants.
Fig. 3 in Nitrogen fertilization: Effect on Cd-phytoextraction by the halophytic plant quail bush [Atriplex lentiformis (Torr.) S. Wats] *
Fig. 3. Total phenolic and oxalic acid content in leaves of A. lentiformis plants. Means (±standard deviation, n = 4) denoted by different letters are significantly different at P <0.05.
Genotyping-by-sequencing data of common quails from the Azores
<p>In this study, we focused on common quails (<em>Coturnix</em> <em>coturnix</em>) from the Azores archipelago and used morphological, stable isotope, genetic and genomic data to characterise this lineage and to assess the divergence from neighbouring common quail populations. We detected the presence of a large chromosomal inversion that had been already described in other populations and we studied its role in this remote archipelago. The genotyping-by-sequencing data generated in this project were analysed together with those from Sanchez-Donoso et al. 2022 (<a href="https://doi.org/10.1016/j.cub.2021.11.019" rel="noopener" title="Persistent link using digital object identifier">https://doi.org/10.1016/j.cub.2021.11.019</a>). </p>
Heat stress effects on Japanese quail production and iSTAT
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Data from: Evidence of genetic erosion in a peripheral population of a North American game bird: the Montezuma quail (Cyrtonyx montezumae)
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Data from: Post-hatch heat warms adult beaks: irreversible physiological plasticity in Japanese quail
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Genotyping-by-sequencing data of common quails from the Azores
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Data from: Altered embryonic development in northern bobwhite quail (Colinus virginianus) induced by pre-incubation oscillatory thermal stresses mimicking global warming predictions
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Female preference and adverse developmental effects of glyphosate-based herbicides on ecologically relevant traits in Japanese quail
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Dataset of prenatal thyroid hormones manipulation in Japanese quails
<p>This is the dataset of an experiment conducted on Japanese quails in which we elevated yolk thyroid hormones. This dataset contains all the responses measured in this experiment.</p>
Data from: Neural activation following offensive aggression in Japanese quail
Aggression is a fundamental part of animal social behaviour. In avian species, little is known about its neural representation. In particular, neural activity following offensive aggression has not been studied in detail. Here, we investigated the patterns of brain activation using immediate-early gene (IEG) expression in male Japanese quail that showed pronounced aggressive behaviours during a 30 min male-male interaction and compared them to those of males that did not interact with a conspecific. In aggressive males, we found a massive induction of the IEG zenk in pallial brain structures such as the intermediate medial mesopallium, the caudomedial mesopallium and the intermediate medial nidopallium. To a lesser extent, activation was observed in subpallial areas such as the nucleus taeniae of the amygdala and in the medial portion of the bed nucleus of the stria terminalis. Our data suggest that the modulation of aggressive behaviour involves the integration of multisensory information.
Data from: Constant and cycling incubation temperatures have long-term effects on the morphology and metabolic rate of Japanese quail
Incubation temperature can have profound effects on growth and development of embryos and young birds. However, few studies have examined the role that cycling incubation temperature may play in phenotypic variation and whether these effects persist to adulthood. We incubated Japanese quail eggs at control temperatures (37.5°C), at low temperatures (36.0°C), and under a cyclical treatment that maintained the same average temperature as the low treatment (36.0°C) with high temperatures that were the same as the control (37.5°C) and low temperatures that still allowed for development of the embryo (28.0°C). Individuals in the low treatment group were smaller in mass and size than individuals in the control group but had an increased basal metabolic rate relative to individuals in the cyclical treatment group. Temperature cycling offset the effects of low incubation temperatures on metabolic rate and embryonic development but not the effects on adult mass and size. Although Japanese quail are sexually size dimorphic, with females larger than males, we could detect no evidence of sex-specific sensitivity to suboptimal incubation temperatures. These results highlight the importance of incubation temperature and pattern as sources of morphological and physiological variation of adult birds.
Data from: Anatomical atlas of the quail's ear (Coturnix coturnix)
This study aims to enhance the anatomical knowledge of the ear of the adult quail (Coturnix coturnix) through the creation of a scaled 3D model utilizing data from micro-CT images. In addition, 17 annotated histological sections of the quail's ear are aligned to their 3D position in the model. The resulting anatomical atlas provides an intuitive insight into the 3D anatomy and can be used for medical education. The model also allows measuring anatomical structures and can thus serve as reference for the quail's auricular anatomy and as a basis to evaluate clinical diagnostic imaging results.
Figure 1 in Morphological and molecular evidences of Ascaridia galli in migratory quail Coturnix coturnix japonica from Baluchistan Pakistan
Figure 1. (A) Male mouth parts of A. galli (arrow showing the two lips) one lip is behind; (B) Mid portion of male; (C) Preanal sucker in tail region.
Figure 5 in Replacement level of rubber seed cake for soybean meal on the growth of Japanese quail
Figure 5. Feed intake of the bird under different dietary treatment at different ages D 0, D 1, D 2, D 3 and D 4 = Treatments, see Table 1.
Table 2 in Nitrogen fertilization: Effect on Cd-phytoextraction by the halophytic plant quail bush [Atriplex lentiformis (Torr.) S. Wats] *
<p><b>Table 2</b> Transfer of Cd from soil to roots and from root to shoot of <i>A. lentiformis</i>.</p><table><tbody><tr><th>N rates</th><th>Soil–root transfer</th><th>Root–shoot transfer</th><th>% Removed Cd</th></tr></tbody><tbody><tr><th>C</th><td>85 ± 4.25 e</td><td>0.68 ± 0.02 a</td><td>4.09 ± 1.22 d</td></tr><tr><th>100</th><td>122 ± 5.46 d</td><td>0.64 ± 0.04 a</td><td>5.60 ± 1.44 c</td></tr><tr><th>200</th><td>144 ± 6.78 c</td><td>0.60 ± 0.05 a</td><td>6.33 ± 1.75 b</td></tr><tr><th>300</th><td>165 ± 5.08b</td><td>0.63 ± 0.06 a</td><td>7.56 ± 2.00 a</td></tr><tr><th>400</th><td>175 ± 6.12 a</td><td>0.63 ± 0.04 a</td><td>7.93 ± 2.02 a</td></tr></tbody></table><p>Root–shoot transfer = Cd concentrations in shoot ∕ Cd concentrations in roots. Soil–root transfer = Cd concentrations in roots ∕ available soil Cd (mg kg).</p><p>% Removed Cd = Cd uptake by shoot ∕ total soil Cd.</p><p>Means (±standard deviation, n = 4) denoted by different letters are significantly different at <i>P</i> <0.05.</p>
Table 1 in Nitrogen fertilization: Effect on Cd-phytoextraction by the halophytic plant quail bush [Atriplex lentiformis (Torr.) S. Wats] *
<p><b>Table 1</b> Growth parameters of <i>A.lentiformis</i> when treated with different rates of nitrogen fertilizer.</p><table><tbody><tr><th>N rates</th><th>Roots (g/pot)</th><th>Shoots (g/pot)</th><th>Leaf number/ plant</th><th>Leaf area/plant (cm2)</th><th>Plant length (cm)</th></tr></tbody><tbody><tr><th>C</th><td>20 ± 1.52 d</td><td>80 ± 3.2 c</td><td>30 ± 1.82 d</td><td>80 ± 3.52 d</td><td>100 ± 5.25 c</td></tr><tr><th>100</th><td>25 ± 1.54 c</td><td>90 ± 3.0 b</td><td>35 ± 1.94 c</td><td>85 ± 4.33 d</td><td>115 ± 5.22 b</td></tr><tr><th>200</th><td>28 ± 1.45 b</td><td>95 ± 4.0 b</td><td>38 ± 2.00 b</td><td>92 ± 5.00 c</td><td>120 ± 5.12 b</td></tr><tr><th>300</th><td>33 ± 1.43 a</td><td>100 ± 4.5 a</td><td>40 ± 2.40 a</td><td>100 ± 5.46 b</td><td>130 ± 5.55 a</td></tr><tr><th>400</th><td>35 ± 1.48 a</td><td>102 ± 3.1 a</td><td>42 ± 2.40 a</td><td>120 ± 5.44 a</td><td>133 ± 5.62 a</td></tr></tbody></table><p>Means (±standard deviation, n = 4) denoted by different letters are significantly different at <i>P</i> <0.05.</p>
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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.