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GWAS Analysis Indicated Importance of NF-B Signaling Pathway in Host Resistance Against Motile Aeromonas Septicemia Disease in Catfish

机译:GWAS分析表明NF-B信号通路在鲶鱼中对脑膜血管菌疾病的宿主抵抗力的重要性

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摘要

Motile Aeromonas septicemia (MAS) disease caused by a bacterial pathogen, Aeromonas hydrophila, is an emerging but severe disease of catfish. Genetic enhancement of disease resistance is considered to be effective to control the disease. To provide an insight into the genomic basis of MAS disease resistance, in this study, we conducted a genome-wide association study (GWAS) to identify quantitative trait loci (QTL). A total of 1820 interspecific backcross catfish of 7 families were challenged with A. hydrophila, and 382 phenotypic extremes were selected for genotyping with the catfish 690 K SNP arrays. Three QTL on linkage group (LG) 2, 26 and 29 were identified to be significantly associated with MAS resistance. Within these regions, a total of 24 genes had known functions in immunity, 10 of which were involved in NF-B signaling pathway, suggesting the importance of NF-B signaling pathway in MAS resistance. In addition, three suggestively significant QTL were identified on LG 11, 17, and 20. The limited numbers of QTL involved in MAS resistance suggests that marker-assisted selection may be a viable approach for catfish breeding.
机译:Motile Aeromonas败血症(MAS)疾病由细菌病原体,Aeroomonas疏水龙造成的,是鲶鱼的新兴但严重的疾病。认为疾病抗性的遗传增强是有效控制疾病的有效。为了提供对MAS疾病抗性的基因组基础的洞察,在本研究中,我们进行了一种基因组 - 宽的协会研究(GWA)以鉴定定量性状基因座(QTL)。共有1820个三个家庭的间隙鲶鱼与A.疏水液挑战,选择382个表型极端,用于鲶鱼690K SNP阵列进行基因分型。鉴定了链接组(LG)2,26和29上的三个QTL与MAS抗性显着相关。在这些区域内,总共24个基因具有已知的免疫功能,其中10个涉及NF-B信号通路,表明NF-B信号通路在MAS阻力中的重要性。此外,在LG 11,17和20上鉴定了三种暗示性显着的QTL。涉及MAS抗性的有限数量的QTL表明标记辅助选择可能是鲶鱼育种的可行方法。

著录项

  • 来源
    《Marine biotechnology》 |2019年第3期|共13页
  • 作者单位

    Auburn Univ Sch Fisheries Aquaculture &

    Aquat Sci Fish Mol Genet &

    Biotechnol Lab Auburn AL 36849 USA;

    Auburn Univ Sch Fisheries Aquaculture &

    Aquat Sci Fish Mol Genet &

    Biotechnol Lab Auburn AL 36849 USA;

    Auburn Univ Sch Fisheries Aquaculture &

    Aquat Sci Fish Mol Genet &

    Biotechnol Lab Auburn AL 36849 USA;

    Auburn Univ Sch Fisheries Aquaculture &

    Aquat Sci Fish Mol Genet &

    Biotechnol Lab Auburn AL 36849 USA;

    Auburn Univ Sch Fisheries Aquaculture &

    Aquat Sci Fish Mol Genet &

    Biotechnol Lab Auburn AL 36849 USA;

    Auburn Univ Sch Fisheries Aquaculture &

    Aquat Sci Fish Mol Genet &

    Biotechnol Lab Auburn AL 36849 USA;

    Auburn Univ Sch Fisheries Aquaculture &

    Aquat Sci Fish Mol Genet &

    Biotechnol Lab Auburn AL 36849 USA;

    Auburn Univ Sch Fisheries Aquaculture &

    Aquat Sci Fish Mol Genet &

    Biotechnol Lab Auburn AL 36849 USA;

    Auburn Univ Sch Fisheries Aquaculture &

    Aquat Sci Fish Mol Genet &

    Biotechnol Lab Auburn AL 36849 USA;

    Auburn Univ Sch Fisheries Aquaculture &

    Aquat Sci Fish Mol Genet &

    Biotechnol Lab Auburn AL 36849 USA;

    Auburn Univ Sch Fisheries Aquaculture &

    Aquat Sci Fish Mol Genet &

    Biotechnol Lab Auburn AL 36849 USA;

    Auburn Univ Sch Fisheries Aquaculture &

    Aquat Sci Fish Mol Genet &

    Biotechnol Lab Auburn AL 36849 USA;

    Syracuse Univ Coll Art &

    Sci Dept Biol Syracuse NY 13244 USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物工程学(生物技术);
  • 关键词

    GWAS; Disease resistance; Genome; QTL; NF-B;

    机译:Gwas;抗病性;基因组;QTL;NF-B;

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