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The Use of Kosher Phenotyping for Mapping QTL Affecting Susceptibility to Bovine Respiratory Disease

机译:使用Kosher表型分析影响牛呼吸系统疾病易感性的QTL

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摘要

Bovine respiratory disease (BRD) is the leading cause of morbidity and mortality in feedlot cattle, caused by multiple pathogens that become more virulent in response to stress. As clinical signs often go undetected and various preventive strategies failed, identification of genes affecting BRD is essential for selection for resistance. Selective DNA pooling (SDP) was applied in a genome wide association study (GWAS) to map BRD QTLs in Israeli Holstein male calves. Kosher scoring of lung adhesions was used to allocate 122 and 62 animals to High (Glatt Kosher) and Low (Non-Kosher) resistant groups, respectively. Genotyping was performed using the Illumina BovineHD BeadChip according to the Infinium protocol. Moving average of -logP was used to map QTLs and Log drop was used to define their boundaries (QTLRs). The combined procedure was efficient for high resolution mapping. Nineteen QTLRs distributed over 13 autosomes were found, some overlapping previous studies. The QTLRs contain polymorphic functional and expression candidate genes to affect kosher status, with putative immunological and wound healing activities. Kosher phenotyping was shown to be a reliable means to map QTLs affecting BRD morbidity.
机译:牛呼吸道疾病(BRD)是饲养场牛发病和死亡的主要原因,原因是多种病原体在应对压力时变得更具毒性。由于常常无法发现临床体征,并且各种预防策略都失败了,因此识别影响BRD的基因对于选择耐药性至关重要。在全基因组关联研究(GWAS)中应用了选择性DNA合并(SDP),以绘制以色列荷斯坦公牛犊中BRD QTL的图。肺粘连的Kosher评分用于分别将122只和62只动物分配到高(Glatt Kosher)和低(Non-Kosher)耐药组。根据Infinium协议,使用Illumina BovineHD BeadChip进行基因分型。 -logP的移动平均值用于映射QTL,对数下降用于定义其边界(QTLR)。组合的过程对于高分辨率映射是有效的。发现19个QTLR分布在13个常染色体上,与先前的研究有些重叠。 QTLR包含多态性功能和表达候选基因,可影响犹太洁食状态,并具有假定的免疫和伤口愈合活性。已证明,Kosher表型是绘制影响BRD发病率的QTL的可靠方法。

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