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全基因组关联研究揭示了杂交鲶鱼耐低氧的多个新 QTL。

Genome-Wide Association Study Reveals Multiple Novel QTL Associated with Low Oxygen Tolerance in Hybrid Catfish.

机构信息

Fish Molecular Genetics and Biotechnology Laboratory, Aquatic Genomics Unit, School of Fisheries, Aquaculture and Aquatic Sciences and Program of Cell and Molecular Biosciences, Auburn University, Auburn, AL, 36849, USA.

Key Laboratory of Mariculture Ministry of Education, Ocean University of China, Qingdao, 266003, China.

出版信息

Mar Biotechnol (NY). 2017 Aug;19(4):379-390. doi: 10.1007/s10126-017-9757-5. Epub 2017 Jun 10.

Abstract

Hypoxic condition is common in aquaculture, leading to major economic losses. Genetic analysis of hypoxia tolerance, therefore, is not only scientifically significant, but also economically important. Catfish is generally regarded as being highly tolerant to low dissolved oxygen, but variations exist among various populations, strains, and species. In this study, we conducted a genome-wide association study (GWAS) using the catfish 250 K SNP array to identify quantitative trait locus (QTL) associated with tolerance to low dissolved oxygen in the channel catfish × blue catfish interspecific system. Four linkage groups (LG2, LG4, LG23, and LG29) were found to be associated with low oxygen tolerance in hybrid catfish. Multiple significant SNPs were found to be physically linked in genomic regions containing significant QTL for low oxygen tolerance on LG2 and LG23, and in those regions containing suggestively significant QTL on LG2, LG4, LG23, and LG29, suggesting that the physically linked SNPs were genuinely segregating and related with low oxygen tolerance. Analysis of genes within the associated genomic regions suggested that many of these genes were involved in VEGF, MAPK, mTOR, PI3K-Akt, P53-mediated apoptosis, and DNA damage checkpoint pathways. Comparative analysis indicated that most of the QTL at the species level, as analyzed by using the interspecific system, did not overlap with those identified from six strains of channel catfish, confirming the complexity of the genetic architecture of hypoxia tolerance in catfish.

摘要

缺氧是水产养殖中常见的现象,会导致重大的经济损失。因此,对耐低氧性的遗传分析不仅具有科学意义,而且具有经济重要性。鲶鱼通常被认为对低溶解氧有很高的耐受性,但不同种群、品系和物种之间存在差异。在这项研究中,我们使用鲶鱼 250K SNP 阵列进行了全基因组关联研究(GWAS),以鉴定与杂交鲶鱼耐低溶解氧相关的数量性状位点(QTL)。在杂交鲶鱼中,发现了四个连锁群(LG2、LG4、LG23 和 LG29)与低氧耐受性相关。在包含低氧耐受性显著 QTL 的 LG2 和 LG23 的基因组区域,以及包含低氧耐受性提示性显著 QTL 的 LG2、LG4、LG23 和 LG29 的基因组区域中,发现了多个物理上连锁的显著 SNP,表明物理上连锁的 SNP 确实在分离,并与低氧耐受性有关。对相关基因组区域内基因的分析表明,这些基因中的许多基因参与了 VEGF、MAPK、mTOR、PI3K-Akt、P53 介导的细胞凋亡和 DNA 损伤检查点途径。比较分析表明,通过使用种间系统分析的大多数 QTL 与从 6 个斑点叉尾鮰品系中鉴定的 QTL 没有重叠,这证实了鲶鱼耐低氧性遗传结构的复杂性。

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