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9 results for “Comb size”

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dryad36/100

Supporting data for: Honeybees adapt to a range of comb cell size by merging, tilting and layering their construction

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publicJul 2025View details →
zenodo32/100

Figure 7. Janosikia ulmensis comb. nov. A, B in Fossil lizard from central Europe resolves the origin of large body size and herbivory in giant Canary Island lacertids

Figure 7. Janosikia ulmensis comb. nov. A, B, mandible of SMNS 96575 in lateral (A) and medial (B) views. C, dentary of SMNS 95455 in medial view and detail of tooth crowns. D, dentary of specimen SMNS 96581 in lateral view.

opennotspecifiedOct 2015View details →
zenodo32/100

Figure 6. Janosikia ulmensis comb. nov., SMNS 96579. A, B in Fossil lizard from central Europe resolves the origin of large body size and herbivory in giant Canary Island lacertids

Figure 6. Janosikia ulmensis comb. nov., SMNS 96579. A, B, postorbitofrontal in ventral (A) and dorsal (B) views. C, D, premaxilla in anterior (C) and posterior (D) views. E, F, quadrate in posterolateral (E) and medial (F) views. G, ectopterygoid. H, I, jugal in lateral (H) and medial (I) views. J, scapula. K, L, braincase in ventral (K) and posterior (L) views.

opennotspecifiedOct 2015View details →
zenodo32/100

Figure 5. Janosikia ulmensis comb. nov. SMNS 96582 in Fossil lizard from central Europe resolves the origin of large body size and herbivory in giant Canary Island lacertids

Figure 5. Janosikia ulmensis comb. nov. SMNS 96582, detail of bones plus anatomical features as revealed by CT. Parietal in ventral view plus supratemporal, squamosal, supraocular osteoderms and?supraoccipital (A). Parietal in dorsal view (B). Supratemporal in posterodorsal view (C). and Frontal in dorsal (D) and right ventrolateral (E) views. Prefrontal in lateral (F) and medial (G) views. Nasal in ventral (H) and dorsal (I) views. Palpebral in lateral (J) and medial (K) views. Maxilla and premaxilla in external view (L). Maxilla of SMNS 95457 for comparison in lateral (M) and medial (N) views. Humerus, interclavicle and? scapula (O). Presacral vertebra in anterior view (P). Pterygoid (Q) and caudal vertebra (R).

opennotspecifiedOct 2015View details →
zenodo32/100

Figure 4. Janosikia ulmensis comb. nov., SMNS 96579, smaller partial skeleton. A in Fossil lizard from central Europe resolves the origin of large body size and herbivory in giant Canary Island lacertids

Figure 4. Janosikia ulmensis comb. nov., SMNS 96579, smaller partial skeleton. A, prepared block of sediment containing most of lower jaw together with postorbitofrontal. B, prepared block of sediment containing much of cranial skeleton.

opennotspecifiedOct 2015View details →
zenodo32/100

Figure 3. Janosikia ulmensis comb. nov., SMNS 96582. A in Fossil lizard from central Europe resolves the origin of large body size and herbivory in giant Canary Island lacertids

Figure 3. Janosikia ulmensis comb. nov., SMNS 96582. A, main prepared block of sediment, containing most cranial elements. B, reconstruction of the skull in dorsal view. C, life reconstruction of J. ulmensis comb. nov. from the early Miocene of Germany.

opennotspecifiedOct 2015View details →
dryad28/100

Data from Effects of social experience, aggressiveness and comb size on contest success in male domestic fowl

<p class="04Abstract"><span>The ability to dominate conspecifics and thereby gain access to resources depends on a number of traits and skills. Experience of dominance relationships during development is a potential source of learning such skills. We here study the importance of social experience, aggressiveness, and morphological traits for competitiveness in social interactions (winning duels) in male domestic fowl (<i>Gallus gallus domesticus</i>). We let males grow up either as a single (dominant) male or as an intermediately ranked male in a group of males, and measured their success in duels against different opponents. We found that single-raised males had lower competitive ability than group-raised males, and that aggression and comb size had positive effects on competitive ability. This indicates that experience of dominance interactions increases future success in duels. We similarly studied the consequences of growing up as a dominant or subordinate in a pair of males, finding no statistically significant effect of the dominance position on competitive ability. Finally, we found that males were consistent over time in competitive ability. We conclude that social experience increases competitive ability in male domestic fowl, but that certain behavioural and morphological characteristics have an equal or even stronger influence on duel outcomes.</span></p>

opencc-zeroAug 2020View details →
dryad28/100

Data from Effects of social experience, aggressiveness and comb size on contest success in male domestic fowl

Open the record for dataset details and reuse information.

publicAug 2020View details →
geo24/100

Identification of molecular pathways and candidate genes associated with cocks' comb size trait by genome-wide transcriptome analysis

GEO Series GSE107815. Gallus gallus. 6 samples. Type: Expression profiling by high throughput sequencing.

openGEO-OpenDec 2017View details →

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