Improving pig health through genomics: a view from the industry.

M A Mellencamp, L Galina-Pantoja, C D Gladney, M Torremorell
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引用次数: 19

Abstract

Health is one of the most important contributors to animal welfare, productivity and profitability in pig production today. For the past 30 years, pig breeders have focused on genetic improvement of lean growth, feed efficiency, meat quality and reproduction. However, in recent years, selection objectives have been broadened to include livability, robustness and disease resistance. A DNA marker for selection of resistance to F18+ E. coli has been available for several years. This marker decreases mortality and improves growth on farms experiencing post-weaning scours and/or oedema disease. However, for most diseases affecting intensive production systems such as porcine reproductive and respiratory syndrome (PRRS), porcine circovirus type 2-associated diseases (PCVAD), Haemophilus parasuis, and swine influenza virus, resistance is a complex and polygenic trait. Selection for improved resistance to these diseases will be incremental and require use of multiple markers in complex breeding schemes. Novel technologies such as pig gene microarrays, single nucleotide polymorphism (SNP) panels and advanced bioinformatics are being used to identify new health candidate genes for these economically important diseases. Lagging behind, however, is availability of large DNAdatasets from pedigreed populations with accurately measured health phenotypes that are needed to identify associations between SNPs and health traits. Increased focus on datasets with health traits will be the key to finding useable discoveries with new genomics technologies. Currently, the industry uses dozens of SNP markers to increase the accuracy of selection for complex breeding objectives, including disease resistance. As the pig genome is sequenced and barriers to genotyping thousand of markers are eliminated, genomic selection for health traits will receive increasing attention from commercial breeders.

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通过基因组学改善猪的健康:来自业界的观点。
在今天的养猪生产中,健康是动物福利、生产力和盈利能力的最重要因素之一。在过去的30年里,养猪者一直专注于瘦肉生长、饲料效率、肉质和繁殖的遗传改良。然而,近年来,选择目标已经扩大到包括宜居性、健壮性和抗病性。一种用于选择对F18+大肠杆菌耐药的DNA标记物已经存在好几年了。该标记物可降低断奶后猪场的死亡率,并改善猪场的生长。然而,对于大多数影响集约化生产系统的疾病,如猪繁殖与呼吸综合征(PRRS)、猪圆环病毒2型相关疾病(PCVAD)、副猪嗜血杆菌和猪流感病毒,耐药性是一种复杂的多基因特征。提高对这些疾病的抗性的选择将是渐进的,并且需要在复杂的育种计划中使用多种标记。诸如猪基因微阵列、单核苷酸多态性(SNP)面板和先进的生物信息学等新技术正被用于识别这些经济上重要疾病的新的健康候选基因。然而,落后的是来自具有精确测量健康表型的谱系人群的大型dna数据集的可用性,这些数据集需要识别snp与健康特征之间的关联。增加对健康特征数据集的关注将是利用新的基因组学技术找到可用发现的关键。目前,该行业使用数十种SNP标记来提高复杂育种目标(包括抗病性)选择的准确性。随着猪基因组的测序和数千个标记的基因分型障碍的消除,健康性状的基因组选择将受到商业育种者越来越多的关注。
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