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Quantitative trait loci for resistance to Haemonchus contortus artificial challenge in Red Maasai and Dorper sheep of East Africa.

机译:东非的红马赛人和多珀羊对旋毛虫人工挑战的抗性的数量性状基因座。

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摘要

A genome-wide scan was performed to detect quantitative trait loci (QTL) for resistance to the gastrointestinal nematode Haemonchus contortus in a double backcross population of Red Maasai and Dorper sheep. The mapping population comprised six sire families, with 1026 lambs in total. The lambs were artificially challenged with H. contortus at about 6.5 months of age, and nine phenotypes were measured: fecal egg count, packed cell volume decline, two weight traits and five worm traits. A subset of the population (342 lambs) was selectively genotyped for 172 microsatellite loci covering 25 of the 26 autosomes. QTL mapping was performed for models which assumed that the QTL alleles were either fixed or segregating within each breed, combined with models with only an additive QTL effect fitted or both additive and dominance QTL effects fitted. Overall, QTL significant at the 1% chromosome-wide level were identified for 22 combinations of trait and chromosome. Of particular interest are a region of chromosome 26 with putative QTL for all nine traits and a region of chromosome 2 with putative QTL for three traits. Favorable QTL alleles for disease resistance originated in both the Red Maasai and Dorper breeds, were not always fixed within breed and had significant dominance effects in some cases. We anticipate that this study, in combination with follow-up work and other relevant studies, will help elucidate the biology of disease resistance.
机译:进行了全基因组扫描,以检测定量性状位点(QTL)对红马赛人和多珀羊的双回交种群中胃肠道线虫Haemonchus contortus的抗性。测绘种群包括六个父系,总共有1026只羔羊。在约6.5个月大时,用旋毛虫对小羊进行人工攻击,并测量了9种表型:粪便卵数,包装细胞体积减少,2个体重性状和5个蠕虫性状。对覆盖26个常染色体中的25个中的25个的172个微卫星基因座进行了基因分型选择。对假设QTL等位基因在每个品种内固定或分离的模型进行QTL作图,并与仅拟合加性QTL效应或同时拟合加性和优势QTL效应的模型组合。总体而言,鉴定出22个性状和染色体组合在1%染色体范围内具有显着QTL。特别令人感兴趣的是具有所有9个性状的推定QTL的26号染色体区域和具有三个性状的推定QTL的2号染色体区域。有利的抗病性QTL等位基因起源于Red Maasai和Dorper品种,并不总是固定在该品种内,在某些情况下具有明显的优势作用。我们预计,这项研究与后续工作和其他相关研究相结合,将有助于阐明抗病性的生物学特性。

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