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16 results for “Scylla”
Fig 1 in Culture of mud crab, Scylla serrata Forskal, 1775 with different feed formulations
Fig 1: Absolute growth (a), molting percentage (b) and survival rate (c) of mud crabs treated with different feed formulations. Same letter above parameter value indicates non-significant based on ANOVA 0.05%.
Figures 248–250. Encarsia scylla n in The Australian species of Encarsia Förster (Hymenoptera, Chalcidoidea: Aphelinidae), parasitoids of whiteflies (Hemiptera, Sternorrhyncha, Aleyrodidae) and armoured scale insects (Hemiptera, Coccoidea: Diaspididae)
Figures 248–250. Encarsia scylla n. sp., holotype female. (248) Mesosoma and gaster. (249) Antenna. (250) Fore wing.
Data from: High-resolution chromosome-level genome of Scylla paramamosain provides molecular insights into adaptive evolution in crab
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Genetic differentiation and signatures of local adaptation revealed by RADseq for a highly-dispersive mud crab Scylla olivacea in the Sulu Sea
<p><b>Connectivity of marine populations is shaped by complex interactions of biological and physical processes across the seascape. The influence of environmental features on the genetic structure of populations has key implications to the dynamics and persistence of populations, and an understanding of spatial scales and patterns of connectivity is crucial for management and conservation. This study employed a seascape genomics approach combining larval dispersal modeling and population genomic analysis using single nucleotide polymorphisms (SNPs) obtained from RADseq to examine environmental factors influencing patterns of genetic structure and connectivity for a highly-dispersive mud crab, <em>Scylla olivacea</em> (Herbst, 1796) in the Sulu Sea. Dispersal simulations reveal widespread but asymmetric larval dispersal influenced by persistent southward and westward surface circulation features in the Sulu Sea. Despite potential for widespread dispersal across the Sulu Sea, significant genetic differentiation was detected among eight populations based on 1,655 SNPs (<em>F</em><sub>ST </sub> = 0.0057, p < 0.001) and a subset of 1,643 putatively neutral SNP markers (<em>F</em><sub>ST</sub></b><b> = 0.0042, p < 0.001). Oceanography influences genetic structure, with redundancy analysis (RDA) indicating significant contribution of asymmetric ocean currents to neutral genetic variation (R<sup>2</sup><sub>adj</sub> = 0.133; p = 0.035). Genetic structure may also reflect demographic factors, with divergent populations characterized by low effective population sizes (<em>N</em>e < 50). Pronounced latitudinal genetic structure was recovered for loci putatively under selection (</b><b><em>F</em><sub>ST</sub></b><b> = 0.2390, p < 0.001), significantly correlated with sea surface temperature variabilities during peak spawning months for <em>S. olivacea</em> (R<sup>2</sup><sub>adj</sub> = 0.692-0.763; p < 0.050), suggesting putative signatures of selection and local adaptation to thermal clines. While oceanography and dispersal ability likely shape patterns of gene flow and genetic structure of <em>S. olivacea</em> across the Sulu Sea, the impacts of genetic drift and natural selection influenced by sea surface temperature also appear as likely drivers of population genetic structure. This study contributes to the growing body of literature documenting population genetic structure and local adaptation for highly-dispersive marine species, and provides information useful for spatial management of the fishery resource.</b></p>
Fig 2 in The effect of sulphur goatfish, sesarma, and green mussel as feed on the growth and survival of mud crab (Scylla paramamosain) in recirculation systems
Fig 2: Histogram of Survival Growth Rate (SGR)
Fig 1 in The effect of sulphur goatfish, sesarma, and green mussel as feed on the growth and survival of mud crab (Scylla paramamosain) in recirculation systems
Fig 1: Histogram of Food Conversion Ratio (FCR) Calculation
Fig 3 in The effect of sulphur goatfish, sesarma, and green mussel as feed on the growth and survival of mud crab (Scylla paramamosain) in recirculation systems
Fig 3: Histogram of Survival Rate (SR)
Genetic differentiation and signatures of local adaptation revealed by RADseq for a highly-dispersive mud crab Scylla olivacea in the Sulu Sea
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Data from: Caribou avoiding wolves face increased predation by bears – caught between Scylla and Charybdis
1. Prey may trade off resource acquisition with mortality risk by using various habitat-selection strategies. Empirical assessments have shown that the functional and numerical responses of predators to human disturbances are variable, yet spatial changes in predation risk by two predators have seldom been studied for prey occurring in human-modified landscapes. Using the boreal caribou (Rangifer tarandus caribou) – grey wolf (Canis lupus) – black bear (Ursus americanus) system in eastern Canada, we investigated whether responses of prey towards one predator could concomitantly increase risk of predation from another predator exhibiting a different foraging tactic. 2. We investigated trade-offs made by solitary caribou females and mothers accompanied by their calf during the period of highest calf vulnerability, and compared the behaviour of mothers that would eventually lose their calf to predation to that of mothers whose calf survived until the following year. We modelled habitat selection using different metrics of forage based on field measurements and digital maps, and developed empirical models of predation risk and prey behaviour using GPS data collected on both predators and prey. 3. Mothers accompanied by their calf seemed to compromise foraging opportunities for safety, as opposed to solitary females who showed no particular avoidance of areas used by predators. Although caribou mothers adopted selection strategies that could have protected their offspring from wolves, females that eventually lost their calf to predation selected for vegetative associations that were favourable to bears. 4. Synthesis and applications. We determined that mothers that most strongly avoided suitable wolf habitat were also those that most strongly selected suitable bear habitat, suggesting that by using anti-predator strategies aimed at reducing predation risk from wolves, caribou exposed their offspring to increased predation risk from bears. This result is of paramount conservation value as bears were responsible for 94% of caribou calf kills in this system. In the short term, conservation efforts for boreal caribou may benefit from the management of bear populations by means of liberal hunting regulations or predator control. In the long term, however, these actions should be used in conjunction with the protection of potential calving areas away from cutblocks and roads.
17571 BM Scylla Protome
This is a 3D model of an ancient terracotta vessel decoration in the British Museum (catalog no. 1856,1226.223). The figure of Scylla (Skylla) was bequeathed to the museum by Sir William Temple in 1856. It dates to c. 300 - 200 BCE. It shows Scylla as a female figure on top with a lower body that forms into three dogs. In mythology, she was described as a monster with six legs and six heads, springing from various parts of her body. Each part had three rows of teeth. Bibliography: [British Museum](https://bit.ly/2RhJFIy), [Ancient History Encyclopedia](http://www.ancient.eu/Scylla_and_Charybdis/) # Ancient World 3D This model posting is part of Ancient World 3D, a project that provides curated 3D open access content for Classical Studies. A 3D Printable frame for this model can be found [here](https://skfb.ly/6RE8Y). The [original model was posted by Scan The World](http://mmf.io/o/17571). This entry was composed by Samantha Schlegel (Dr. Elizabeth Thill, advisor). Source: Objaverse 1.0 / Sketchfab
Data from: Caribou avoiding wolves face increased predation by bears – caught between Scylla and Charybdis
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FIGURES 67–68. Hemipenthes scylla male terminalia. 67 in A review of the North American species of Hemipenthes Loew, 1869 (Diptera: Bombyliidae)
FIGURES 67–68. Hemipenthes scylla male terminalia. 67, lateral view; 68, ventral view.
Single cell transcriptome sequencing of hemocytes of mud crab (Scylla paramamosain) before and after WSSV infection
GEO Series GSE289112. Scylla paramamosain. 2 samples. Type: Expression profiling by high throughput sequencing.
Deep sequencing of microRNAs in multiple tissues of Scylla paramamosain under Vibrio parahaemolyticus infection
GEO Series GSE39921. Scylla paramamosain. 2 samples. Type: Non-coding RNA profiling by high throughput sequencing.
Transcriptome and expression profiling analysis revealed changes of multiple signaling pathways involved in immunity in mud crab Scylla paramamosain during Vibrio parahaemolyticus infection
GEO Series GSE45400. Scylla paramamosain. 3 samples. Type: Expression profiling by high throughput sequencing.
Scylla paramamosain mature gonads: Ovary vs. Testis
GEO Series GSE22066. Scylla paramamosain. 5 samples. Type: Expression profiling by array.
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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