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Mapping quantitative trait loci for omega-3 fatty acids in Asian seabass.

机译:绘制亚洲鲈鱼中omega-3脂肪酸的定量性状基因座。

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Omega-3 fatty acids are essential fatty acids for human health. Therefore, increasing both percentage of omega-3 and a better fatty acid profile in fish fillets is one of the breeding goals in aquaculture. However, it is difficult to increase the omega-3 content in fish fillets, as the phenotypic selection of these traits is not easily feasible. To facilitate the genetic improvement of the Asian seabass for optimal fatty acid profiles, a genome-wide scan for quantitative trait loci (QTL) affecting fatty acid level in the flesh of the Asian seabass was performed on an F2 family containing 314 offspring. All family members were genotyped using 123 informative microsatellites and 22 SNPs. High percentages of n-3 polyunsaturated fatty acids (PUFA), especially C22:6 (DHA 16.48+or-3.09%) and C20:5 (EPA 7.19+or-0.86%) were detected in the flesh. One significant and 54 suggestive QTL for different fatty acids and a water content trait were detected on the whole genome. QTL for C18:0b was located on linkage groups (LG) 5. QTL for total n-3 PUFA content in flesh were mapped onto LG6 and LG23 with the phenotypic variance explained ranging from 3.8 to 6.3%. Four QTL for C22:6 were detected on LG6, LG23, and LG24, explaining 3.9 to 4.9% of the phenotypic variance, respectively. Mapping of QTL for contents of different fatty acids is the first step towards improving the omega-3 content in the fillets of fish by using marker-assisted selection and is important for understanding the biology of fatty acid deposition.
机译:Omega-3脂肪酸是人类健康所必需的脂肪酸。因此,增加鱼片中omega-3的百分比和更好的脂肪酸谱是水产养殖的育种目标之一。但是,很难增加鱼片中omega-3的含量,因为对这些性状进行表型选择并不容易。为了促进亚洲鲈鱼的遗传改良以获得最佳脂肪酸谱,在F 2 上对影响亚洲鲈鱼肉中脂肪酸水平的定量性状位点(QTL)进行了全基因组扫描。 >包含314个后代的家庭。所有家庭成员均使用123个信息微卫星和22个SNP进行基因分型。在果肉中检测到高百分比的n-3多不饱和脂肪酸(PUFA),尤其是C22:6(DHA 16.48+或-3.09%)和C20:5(EPA 7.19+或-0.86%)。在整个基因组中检测到一个针对不同脂肪酸的显着QTL和54个暗示性QTL和水分含量特征。 C18:0b的QTL位于连锁群(LG)5上。将果肉中总n-3 PUFA含量的QTL映射到LG6和LG23上,其表型变异范围为3.8%至6.3%。在LG6,LG23和LG24上检测到四个C22:6的QTL,分别解释了表型变异的3.9%至4.9%。对QTL进行不同脂肪酸含量的定位是通过使用标记辅助选择来提高鱼片中omega-3含量的第一步,对于了解脂肪酸沉积的生物学特性至关重要。

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