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杂种罗非鱼ω-3 含量的 QTL 定位。

Mapping QTL for Omega-3 Content in Hybrid Saline Tilapia.

机构信息

Temasek Life Sciences Laboratory, 1 Research Link, National University of Singapore, Singapore, 117604, Singapore.

School of Biological Sciences, Nanyang Technological University, 60 Nanyang Drive, Singapore, 637551, Singapore.

出版信息

Mar Biotechnol (NY). 2018 Feb;20(1):10-19. doi: 10.1007/s10126-017-9783-3. Epub 2017 Dec 4.

Abstract

Tilapia is one of most important foodfish species. The low omega-3 to omega-6 fatty acid ratio in freshwater tilapia meat is disadvantageous for human health. Increasing omega-3 content is an important task in breeding to increase the nutritional value of tilapia. However, conventional breeding to increase omega-3 content is difficult and slow. To accelerate the increase of omega-3 through marker-assisted selection (MAS), we conducted QTL mapping for fatty acid contents and profiles in a F family of saline tilapia generated by crossing red tilapia and Mozambique tilapia. The total omega-3 content in F hybrid tilapia was 2.5 ± 1.0 mg/g, higher than that (2.00 mg/g) in freshwater tilapia. Genotyping by sequencing (GBS) technology was used to discover and genotype SNP markers, and microsatellites were also genotyped. We constructed a linkage map with 784 markers (151 microsatellites and 633 SNPs). The linkage map was 2076.7 cM long and consisted of 22 linkage groups. Significant and suggestive QTL for total lipid content were mapped on six linkage groups (LG3, -4, -6, -8, -13, and -15) and explained 5.8-8.3% of the phenotypic variance. QTL for omega-3 fatty acids were located on four LGs (LG11, -18, -19, and -20) and explained 5.0 to 7.5% of the phenotypic variance. Our data suggest that the total lipid and omega-3 fatty acid content were determined by multiple genes in tilapia. The markers flanking the QTL for omega-3 fatty acids can be used in MAS to accelerate the genetic improvements of these traits in salt-tolerant tilapia.

摘要

罗非鱼是最重要的食用鱼类之一。淡水罗非鱼肉中ω-3 与 ω-6 脂肪酸比例低,不利于人类健康。增加 ω-3 含量是提高罗非鱼营养价值的重要育种任务。然而,通过常规育种增加 ω-3 含量既困难又缓慢。为了通过标记辅助选择(MAS)加速 ω-3 的增加,我们对通过杂交红罗非鱼和莫桑比克罗非鱼产生的咸水罗非鱼 F 家系的脂肪酸含量和谱进行了 QTL 作图。F 杂交罗非鱼的总 ω-3 含量为 2.5±1.0mg/g,高于淡水罗非鱼(2.00mg/g)。我们使用测序(GBS)技术进行基因分型以发现和基因分型 SNP 标记,同时也对微卫星进行了基因分型。我们构建了一个包含 784 个标记(151 个微卫星和 633 个 SNP)的连锁图谱。连锁图谱长 2076.7cM,由 22 个连锁群组成。在六个连锁群(LG3、-4、-6、-8、-13 和 -15)上定位到总脂质含量的显著和暗示 QTL,解释了 5.8-8.3%的表型方差。ω-3 脂肪酸的 QTL 位于四个 LG 上(LG11、-18、-19 和 -20),解释了 5.0 到 7.5%的表型方差。我们的数据表明,罗非鱼的总脂质和 ω-3 脂肪酸含量由多个基因决定。ω-3 脂肪酸 QTL 侧翼标记可用于 MAS,以加速耐盐罗非鱼这些性状的遗传改良。

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