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鉴定影响红玛莎和多利羊双回交群体抗胃肠道寄生虫能力的数量性状基因座。

Identification of quantitative trait loci affecting resistance to gastrointestinal parasites in a double backcross population of Red Maasai and Dorper sheep.

机构信息

Bovine Functional Genomics Laboratory, Agricultural Research Service, USDA Beltsville, 10300 Baltimore Ave., Beltsville, MD 20705, USA.

出版信息

Anim Genet. 2012 Feb;43(1):63-71. doi: 10.1111/j.1365-2052.2011.02202.x. Epub 2011 Apr 29.

Abstract

A genome-wide scan for quantitative trait loci (QTL) affecting gastrointestinal nematode resistance in sheep was completed using a double backcross population derived from Red Maasai and Dorper ewes bred to F(1) rams. This design provided an opportunity to map potentially unique genetic variation associated with a parasite-tolerant breed like Red Maasai, a breed developed to survive East African grazing conditions. Parasite indicator phenotypes (blood packed cell volume - PCV and faecal egg count - FEC) were collected on a weekly basis from 1064 lambs during a single 3-month post-weaning grazing challenge on infected pastures. The averages of last measurements for FEC (AVFEC) and PCV (AVPCV), along with decline in PCV from challenge start to end (PCVD), were used to select lambs (N = 371) for genotyping that represented the tails (10% threshold) of the phenotypic distributions. Marker genotypes for 172 microsatellite loci covering 25 of 26 autosomes (1560.7 cm) were scored and corrected by Genoprob prior to qxpak analysis that included Box-Cox transformed AVFEC and arcsine transformed PCV statistics. Significant QTL for AVFEC and AVPCV were detected on four chromosomes, and this included a novel AVFEC QTL on chromosome 6 that would have remained undetected without Box-Cox transformation methods. The most significant P-values for AVFEC, AVPCV and PCVD overlapped the same marker interval on chromosome 22, suggesting the potential for a single causative mutation, which remains unknown. In all cases, the favourable QTL allele was always contributed from Red Maasai, providing support for the idea that future marker-assisted selection for genetic improvement of production in East Africa will rely on markers in linkage disequilibrium with these QTL.

摘要

采用源自红色马赛和多普雷母羊与 F1 公羊杂交的双回交群体,完成了针对影响绵羊胃肠道线虫抗性的数量性状基因座(QTL)的全基因组扫描。这种设计提供了一个机会,可以绘制与像红色马赛这样具有寄生虫耐受品种相关的潜在独特遗传变异,红色马赛是为了在东非放牧条件下生存而开发的品种。在感染牧场的单次 3 个月断奶后放牧挑战期间,每周从 1064 只羔羊身上采集寄生虫指标表型(血液红细胞压积 - PCV 和粪便卵计数 - FEC)。使用 FEC 的最后测量值平均值(AVFEC)和 PCV(AVPCV),以及从挑战开始到结束的 PCV 下降(PCVD),选择用于代表表型分布尾部(10%阈值)的羔羊进行基因分型(N=371)。对 172 个微卫星标记进行基因分型,这些标记覆盖 26 条常染色体中的 25 条(1560.7 cm),在进行 qxpak 分析之前,由 Genoprob 进行了标记基因型评分和校正,该分析包括 Box-Cox 转换的 AVFEC 和反正弦转换的 PCV 统计数据。在四条染色体上检测到 AVFEC 和 AVPCV 的显著 QTL,这包括染色体 6 上的一个新的 AVFEC QTL,如果没有 Box-Cox 转换方法,这个 QTL 将无法检测到。AVFEC、AVPCV 和 PCVD 的最显著 P 值与染色体 22 上的相同标记区间重叠,表明存在单一的致病突变的可能性,而这仍然未知。在所有情况下,有利的 QTL 等位基因总是来自红色马赛,这为未来在东非进行生产遗传改良的基于标记的选择将依赖于与这些 QTL 处于连锁不平衡的标记的想法提供了支持。

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