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首页> 外文期刊>Small Ruminant Research >Genomic evaluation of resistance to Haemonchus contortus in a South African Dohne Merino flock
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Genomic evaluation of resistance to Haemonchus contortus in a South African Dohne Merino flock

机译:对南非莫霍恩梅诺群岛血腥抗性的抗性基因组评价

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The aim of this study was to use genome-wide SNP data to investigate phenotypic and genetic differences in resistance to Haemonchus contortus between resistant and susceptible South African Dohne Merino sheep. The participating farm (Wauldby) has a history of heavy H. contortus challenge and implemented a selection strategy for resistance to H. contortus in 2011. Faecal egg count (FEC), body condition scores (BCS) and Famacha (c) scores (FAM) were recorded annually on lambs from weaning in January until the end of June from 2011 to 2014. Animals with FAM scores of >= 2.5 or BCS scores 1.5 were subjected to anthelmintic treatment and recorded as "Dosed" animals. Animals (196) were selected for genotyping based on EBV for FEC and classified into Case and Control groups on the basis of whether they were dosed or not. The Grootfontein Dohne Merino flock has never been subjected to selection for resistance to gastrointestinal parasites and 48 animals were selected on FEC for genotyping. DNA obtained from blood samples were genotyped using the Illumina (R) Ovine SNP50 BeadChip. Principal component analysis (PCA) resulted in four distinct genetic clusters, with the Grootfontein sheep population clustering separately. The Wauldby animals in Cluster 3 had significantly lower FEC and higher BCS than the animals in Clusters 2 and 4. FEC breeding values of 114 +/- 97, -629 +/- 84 and -2 +/- 45 were recorded for PCA-based Genetic cluster 2, 3 and 4 animals, respectively. The majority (88%) of animals in Cluster 3 were the progeny of sires from the resistant line. The average number of runs of homozygosity (ROH) was 44, 46, 54 and 47 per animal for Clusters 1, 2, 3 and 4 respectively. The highest number of ROHs was found on chromosomes 1, 2, 3, 4, 6, 9 and 10, on which QTL for resistance traits have been identified previously. Sires in Genetic cluster 3 were highly resistant and can be used in a breeding program to develop H. contortus resistant sheep. The results indicated genetic variation in host resistance against H. contortus in the Wauldby flock and breeding for resistance against nematodes is feasible.
机译:本研究的目的是使用基因组的SNP数据来研究耐受耐受和易感南非莫纳·莫纳野羊的耐受血清Chortus的表型和遗传差异。参与的农场(Wauldby)具有沉重的H.污染挑战的历史,并实施了2011年患者对H. Contortus的抵抗力的选择策略。粪便蛋计数(FEC),身体状况分数(BCS)和Famacha(C)分数(FAM )每年1月的断奶率每年记录羔羊,直到2011年6月底到2014年。具有FAM分数> = 2.5或BCS分数的动物分数1.5患有弓形治疗,并记录为“给药”动物。选择基于EBV的基因分型的动物(196),并根据它们是否被提出或不进行分类为案例和对照组。 Grootfontein Dohne Merino羊群从未受到对胃肠道寄生虫的抵抗选择,并且在FEC中选择了48只动物进行基因分型。使用Illumina(R)绵羊SNP50珠芯片基因分型从血液样品获得的DNA。主成分分析(PCA)导致四种不同的遗传簇,杂草羊群分别聚类。簇3中的Wauldby动物比簇2的动物显着降低了FEC和较高的BC和4.用于PCA的FEC繁殖值114 +/- 97,-629 +/- 84和-2 +/-45基于基于遗传簇2,3和4只动物。簇3中的大多数(88%)动物是来自抗性线的毛的胎儿。对于簇1,2,3和4分别为每只动物的平均纯合子(ROH)的平均数量为44,46,54和47个。在染色体1,2,3,4,6,9和10上发现了最多的RoHS,先前已经鉴定了QTL用于电阻性状的QTL。遗传簇3中的胎体具有高度抗性,可用于育种程序以开发H.扭曲的抗性绵羊。结果表明,在Wauldby鸡群中对H. incortus的宿主抗性的遗传变异,并且对线虫抗性的育种是可行的。

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