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首页> 外文期刊>BMC Genomics >A genome-wide association study in catfish reveals the presence of functional hubs of related genes within QTLs for columnaris disease resistance
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A genome-wide association study in catfish reveals the presence of functional hubs of related genes within QTLs for columnaris disease resistance

机译:cat鱼的全基因组关联研究表明,QTL中存在相关基因的功能性枢纽,可抵抗柱状病

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摘要

Columnaris causes severe mortalities among many different wild and cultured freshwater fish species, but understanding of host resistance is lacking. Catfish, the primary aquaculture species in the United States, serves as a great model for the analysis of host resistance against columnaris disease. Channel catfish in general is highly resistant to the disease while blue catfish is highly susceptible. F2 generation of hybrids can be produced where phenotypes and genotypes are segregating, providing a useful system for QTL analysis. To identify genes associated with columnaris resistance, we performed a genome-wide association study (GWAS) using the catfish 250?K SNP array with 340 backcross progenies derived from crossing female channel catfish (Ictalurus punctatus) with male F1 hybrid catfish (female channel catfish I. punctatus × male blue catfish I. furcatus). A genomic region on linkage group 7 was found to be significantly associated with columnaris resistance. Within this region, five have known functions in immunity, including pik3r3b, cyld-like, adcyap1r1, adcyap1r1-like, and mast2. In addition, 3 additional suggestively associated QTL regions were identified on linkage groups 7, 12, and 14. The resistant genotypes on the QTLs of linkage groups 7 and 12 were found to be homozygous with both alleles being derived from channel catfish. The paralogs of the candidate genes in the suggestively associated QTL of linkage group 12 were found on the QTLs of linkage group 7. Many candidate genes on the four associated regions are involved in PI3K pathway that is known to be required by many bacteria for efficient entry into the host. The GWAS revealed four QTLs associated with columnaris resistance in catfish. Strikingly, the candidate genes may be arranged as functional hubs; the candidate genes within the associated QTLs on linkage groups 7 and 12 are not only co-localized, but also functionally related, with many of them being involved in the PI3K signal transduction pathway, suggesting its importance for columnaris resistance.
机译:柱状龟在许多不同的野生和养殖淡水鱼种中造成严重的死亡,但缺乏对宿主抗性的了解。 fish鱼是美国主要的水产养殖种类,是分析寄主对柱状病的抵抗力的绝佳模型。通常,鱼对这种疾病具有高度抵抗力,而蓝cat鱼则高度易感。在表型和基因型分离的情况下,可以产生杂种的F2代,为QTL分析提供了有用的系统。为了鉴定与柱状抗性相关的基因,我们使用the鱼250?K SNP阵列与340个回交子代进行了全基因组关联研究(GWAS),这些回交子代来自将雌性channel鱼(Ictalurus punctatus)与雄性F1杂交cat鱼(雌性cat鱼)杂交I. punctatus×雄性蓝cat鱼I. furcatus)。发现连锁群7上的基因组区域与柱菌抗性显着相关。在该区域内,有五个已知的免疫功能,包括pik3r3b,cyld-like,adcyap1r1,adcyap1r1-like和mast2。另外,在连锁群7、12和14上鉴定出3个另外的暗示性相关的QTL区域。发现在连锁群7和12的QTL上的抗性基因型是纯合的,两个等位基因均来自channel鱼。在连锁组7的QTL上发现了暗示性关联的连锁组12的QTL中候选基因的旁系同源物。四个相关区域上的许多候选基因都参与了PI3K途径,众所周知,许多细菌都需要这些基因才能有效进入。进入主机。 GWAS揭示了四个与fish鱼柱状抗性相关的QTL。令人惊讶的是,候选基因可能被安排为功能中心。连锁组7和12上相关QTL内的候选基因不仅共定位,而且在功能上相关,其中许多都与PI3K信号转导通路有关,表明其对柱状菌抗性很重要。

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