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1.
Nat Commun ; 11(1): 5176, 2020 10 14.
Artículo en Inglés | MEDLINE | ID: mdl-33056985

RESUMEN

Structural variants (SVs) are a major source of genetic and phenotypic variation, but remain challenging to accurately type and are hence poorly characterized in most species. We present an approach for reliable SV discovery in non-model species using whole genome sequencing and report 15,483 high-confidence SVs in 492 Atlantic salmon (Salmo salar L.) sampled from a broad phylogeographic distribution. These SVs recover population genetic structure with high resolution, include an active DNA transposon, widely affect functional features, and overlap more duplicated genes retained from an ancestral salmonid autotetraploidization event than expected. Changes in SV allele frequency between wild and farmed fish indicate polygenic selection on behavioural traits during domestication, targeting brain-expressed synaptic networks linked to neurological disorders in humans. This study offers novel insights into the role of SVs in genome evolution and the genetic architecture of domestication traits, along with resources supporting reliable SV discovery in non-model species.


Asunto(s)
Animales Salvajes/genética , Domesticación , Genoma , Variación Estructural del Genoma , Salmo salar/genética , Animales , Elementos Transponibles de ADN/genética , Explotaciones Pesqueras , Duplicación de Gen , Frecuencia de los Genes , Variación Genética , Genética de Población , Técnicas de Genotipaje , Masculino , Anotación de Secuencia Molecular , Filogeografía , Secuenciación Completa del Genoma , Flujo de Trabajo
2.
Front Genet ; 10: 1159, 2019.
Artículo en Inglés | MEDLINE | ID: mdl-31803238

RESUMEN

Accurate SNP (single nucleotide polymorphism) genotype information is critical for a wide range of selective breeding applications in aquaculture, including parentage assignment, marker-assisted, and genomic selection. However, the sampling of tissue for genetic analysis can be invasive for juvenile animals or taxa where sampling tissue is difficult or may cause mortality (e.g. bivalve mollusks). Here, we demonstrate a novel, non-invasive technique for sampling DNA based on the collection of environmental DNA using European Flat Oysters (Ostrea edulis) as an example. The live animals are placed in individual containers until sufficient genetic material is released into the seawater which is then recovered by filtration. We compared the results of tissue and eDNA derived SNP genotype calls using a PCR based genotyping platform. We found that 100% accurate genotype calls from eDNA are possible, but depend on appropriate filtration and the dilution of the sample throughout the workflow. We also developed an additional low-cost DNA extraction technique which provided >99% correct SNP genotype calls in comparison to tissue. It was concluded that eDNA sampling can be used in hatchery and selective breeding programs applicable to any aquatic organism for which direct tissue sampling may result in animal welfare concerns or mortality.

3.
J Food Sci ; 75(4): S182-90, 2010 May.
Artículo en Inglés | MEDLINE | ID: mdl-20546420

RESUMEN

UNLABELLED: A new tensile strength method was developed to quantify the force required to tear a standardized block of Atlantic salmon muscle with the aim of identifying those samples more prone to factory downgrading as a result of softness and fillet gaping. The new method effectively overcomes problems of sample attachment encountered with previous tensile strength tests. The repeatability and sensitivity and predictability of the new technique were evaluated against other common instrumental texture measurement methods. The relationship between sensory assessments of firmness and parameters from the instrumental texture methods was also determined. Data from the new method were shown to have the strongest correlations with gaping severity (r =-0.514, P < 0.001) and the highest level of repeatability of data when analyzing cold-smoked samples. The Warner Bratzler shear method gave the most repeatable data from fresh samples and had the highest correlations between fresh and smoked product from the same fish (r = 0.811, P < 0.001). A hierarchical cluster analysis placed the tensile test in the top cluster, alongside the Warner Bratzler method, demonstrating that it also yields adequate data with respect to these tests. None of the tested sensory analysis attributes showed significant relationships to mechanical tests except fillet firmness, with correlations (r) of 0.42 for cylinder probe maximum force (P = 0.005) and 0.31 for tensile work (P = 0.04). It was concluded that the tensile test method developed provides an important addition to the available tools for mechanical analysis of salmon quality, particularly with respect to the prediction of gaping during factory processing, which is a serious commercial problem. PRACTICAL APPLICATION: A novel, reliable method of measuring flesh tensile strength in salmon, provides data of relevance to gaping.


Asunto(s)
Fenómenos Químicos , Industria de Procesamiento de Alimentos/métodos , Salmo salar , Alimentos Marinos/análisis , Resistencia a la Tracción , Animales , Análisis por Conglomerados , Culinaria , Conservación de Alimentos/métodos , Tecnología de Alimentos , Dureza , Humanos , Procesamiento de Imagen Asistido por Computador , Control de Calidad , Reproducibilidad de los Resultados , Sensación , Resistencia al Corte , Estadísticas no Paramétricas
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