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内寄生虫感染和产奶性状的遗传系比较和遗传参数。

Genetic line comparisons and genetic parameters for endoparasite infections and test-day milk production traits.

机构信息

Institute of Animal Breeding and Genetics, Justus-Liebig-University of Gießen, 35390 Gießen, Germany; Institute for Parasitology, Centre for Infection Medicine, University of Veterinary Medicine Hannover, 30559 Hannover, Germany.

Institute of Animal Breeding and Genetics, Justus-Liebig-University of Gießen, 35390 Gießen, Germany.

出版信息

J Dairy Sci. 2017 Sep;100(9):7330-7344. doi: 10.3168/jds.2017-12901. Epub 2017 Jul 6.

Abstract

Keeping dairy cows in grassland systems relies on detailed analyses of genetic resistance against endoparasite infections, including between- and within-breed genetic evaluations. The objectives of this study were (1) to compare different Black and White dairy cattle selection lines for endoparasite infections and (2) the estimation of genetic (co)variance components for endoparasite and test-day milk production traits within the Black and White cattle population. A total of 2,006 fecal samples were taken during 2 farm visits in summer and autumn 2015 from 1,166 cows kept in 17 small- and medium-scale organic and conventional German grassland farms. Fecal egg counts were determined for gastrointestinal nematodes (FEC-GIN) and flukes (FEC-FLU), and fecal larvae counts for the bovine lungworm Dictyocaulus viviparus (FLC-DV). The lowest values for gastrointestinal nematode infections were identified for genetic lines adopted to pasture-based production systems, especially selection lines from New Zealand. Heritabilities were low for FEC-GIN (0.05-0.06 ± 0.04) and FLC-DV (0.05 ± 0.04), but moderate for FEC-FLU (0.33 ± 0.06). Almost identical heritabilities were estimated for different endoparasite trait transformations (log-transformation, square root). The genetic correlation between FEC-GIN and FLC-DV was 1.00 ± 0.60, slightly negative between FEC-GIN and FEC-FLU (-0.10 ± 0.27), and close to zero between FLC-DV and FEC-FLU (0.03 ± 0.30). Random regression test-day models on a continuous time scale [days in milk (DIM)] were applied to estimate genetic relationships between endoparasite and longitudinal test-day production traits. Genetic correlations were negative between FEC-GIN and milk yield (MY) until DIM 85, and between FEC-FLU and MY until DIM 215. Genetic correlations between FLC-DV and MY were negative throughout lactation, indicating improved disease resistance for high-productivity cows. Genetic relationships between FEC-GIN and FEC-FLU with milk protein content were negative for all DIM. Apart from the very early and very late lactation stage, genetic correlations between FEC-GIN and milk fat content were negative, whereas they were positive for FEC-FLU. Genetic correlations between FEC-GIN and somatic cell score were positive, indicating similar genetic mechanisms for susceptibility to udder and endoparasite infections. The moderate heritabilities for FEC-FLU suggest inclusion of FEC-FLU into overall organic dairy cattle breeding goals to achieve long-term selection response for disease resistance.

摘要

将奶牛饲养在草原系统中依赖于对包括种内和种间遗传抗性的内寄生虫感染的详细分析。本研究的目的是:(1)比较黑白奶牛的不同选育系对内寄生虫感染的影响,(2)估计黑白奶牛群体中内寄生虫和产奶日产量性状的遗传(协)方差分量。在 2015 年夏季和秋季的两次农场访问期间,从 17 个小型和中型有机和常规德国草原农场的 1166 头奶牛中采集了 2006 份粪便样本。测定了胃肠道线虫(FEC-GIN)和吸虫(FEC-FLU)的粪便卵计数,以及牛肺线虫(FLC-DV)的粪便幼虫计数。基于 pasture-based 生产系统选育的遗传系(尤其是来自新西兰的选育系)表现出最低的胃肠道线虫感染水平。FEC-GIN(0.05-0.06 ± 0.04)和 FLC-DV(0.05 ± 0.04)的遗传力较低,但 FEC-FLU(0.33 ± 0.06)的遗传力中等。不同内寄生虫性状变换(对数变换、平方根变换)的遗传力估计几乎相同。FEC-GIN 和 FLC-DV 之间的遗传相关性为 1.00 ± 0.60,FEC-GIN 和 FEC-FLU 之间的遗传相关性为负(-0.10 ± 0.27),而 FLC-DV 和 FEC-FLU 之间的遗传相关性接近零(0.03 ± 0.30)。应用连续时间尺度(泌乳天数(DIM))的随机回归产奶日模型来估计内寄生虫与纵向产奶日生产性状之间的遗传关系。在 DIM 85 之前,FEC-GIN 和产奶量(MY)之间的遗传相关性为负,在 DIM 215 之前,FEC-FLU 和 MY 之间的遗传相关性为负。在整个泌乳期,FLC-DV 和 MY 之间的遗传相关性为负,表明高产奶牛的疾病抵抗力提高。在所有 DIM 中,FEC-GIN 和 FEC-FLU 与乳蛋白含量之间的遗传相关性均为负。除了泌乳早期和晚期外,FEC-GIN 和乳脂含量之间的遗传相关性为负,而 FEC-FLU 则为正。FEC-GIN 和体细胞评分之间的遗传相关性为正,表明对乳房和内寄生虫感染的易感性存在相似的遗传机制。FLU-FLU 的中等遗传力表明将 FEC-FLU 纳入有机奶牛综合选育目标中,以实现对疾病抗性的长期选择响应。

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