The Fish Molecular Genetics and Biotechnology Laboratory, Aquatic Genomics Unit, School of Fisheries, Aquaculture and Aquatic Sciences, Auburn University, Auburn, AL, 36849, USA.
BGI-Shenzhen, Shenzhen, 518083, China.
Mol Genet Genomics. 2018 Dec;293(6):1365-1378. doi: 10.1007/s00438-018-1463-0. Epub 2018 Jul 2.
Disease resistance is one of the most important traits for aquaculture industry. For catfish industry, enteric septicemia of catfish (ESC), caused by the bacterial pathogen Edwardsiella ictaluri, is the most severe disease, causing enormous economic losses every year. In this study, we used three channel catfish families with 900 individuals (300 fish per family) and the 690K catfish SNP array, and conducted a genome-wide association study to detect the quantitative trait loci (QTL) associated with ESC resistance. Three significant QTL, with two of located on LG1 and one on LG26, and three suggestive QTL located on LG1, LG3, and LG21, respectively, were identified to be associated with ESC resistance. With a well-assembled- and -annotated reference genome sequence, genes around the involved QTL regions were identified. Among these genes, 37 genes had known functions in immunity, which may be involved in ESC resistance. Notably, nlrc3 and nlrp12 identified here were also found in QTL regions of ESC resistance in the channel catfish × blue catfish interspecific hybrid system, suggesting this QTL was operating within both intra-specific channel catfish populations and interspecific hybrid backcross populations. Many of the genes of the Class I MHC pathway, for mediated antigen processing and presentation, were found in the QTL regions. The positional correlation found in this study and the expressional correlation found in previous studies indicated that Class I MHC pathway was significantly associated with ESC resistance. This study validated one QTL previously identified using the second and fourth generation of the interspecific hybrid backcross progenies, and identified five additional QTL among channel catfish families. Taken together, it appears that there are only a few major QTL for ESC disease resistance, making marker-assisted selection an effective approach for genetic improvements of ESC resistance.
抗病性是水产养殖业最重要的特征之一。对于鲶鱼产业来说,由细菌病原体爱德华氏菌引起的鲶鱼败血病(ESC)是最严重的疾病,每年造成巨大的经济损失。在这项研究中,我们使用了三个斑点叉尾鮰家系的 900 个个体(每个家系 300 条鱼)和 690K 斑点叉尾鮰 SNP 芯片,进行了全基因组关联研究,以检测与 ESC 抗性相关的数量性状位点(QTL)。三个显著的 QTL,其中两个位于 LG1 上,一个位于 LG26 上,三个提示性 QTL 分别位于 LG1、LG3 和 LG21 上,与 ESC 抗性相关。由于有了一个组装和注释良好的参考基因组序列,我们鉴定了涉及 QTL 区域的基因。在这些基因中,有 37 个基因在免疫方面具有已知的功能,可能参与 ESC 抗性。值得注意的是,这里鉴定的 nlrc3 和 nlrp12 也在斑点叉尾鮰×蓝鲶杂交系统的 ESC 抗性 QTL 区域中被发现,这表明该 QTL 不仅在同种种群内,而且在种间杂交回交种群中都起作用。介导抗原加工和呈递的主要组织相容性复合体(MHC)途径的许多基因都在 QTL 区域中被发现。本研究中的位置相关性和先前研究中的表达相关性表明,主要组织相容性复合体(MHC)途径与 ESC 抗性显著相关。本研究验证了先前使用第二代和第四代种间杂交回交后代鉴定的一个 QTL,并在斑点叉尾鮰家系中鉴定了另外五个 QTL。总之,ESC 疾病抗性似乎只有少数几个主要 QTL,这使得标记辅助选择成为 ESC 抗性遗传改良的有效方法。