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Integrated program for reducing bovine respiratory disease complex in beef and dairy cattle coordinated agricultural project (BRD CAP)

机译:减少牛肉和乳制力牛的牛呼吸道疾病复合体的综合计划(BRD CAP)

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There is growing interest in selective breeding of livestock for enhanced disease resistance. Bovine respiratory disease (BRD), or pneumonia, is the largest single natural cause of death in US beef and dairy cattle, and BRD resistance represents an obvious target for selective breeding programs. The heritability of disease resistance is typically low, in part as a result of suboptimal diagnosis (i.e. not all sick animals are identified, healthy animals may be incorrectly diagnosed as ill, and some susceptible animals will appear resistant when in fact they have not been exposed). Additionally, the genetic basis of BRD susceptibility is likely complex and governed by the effects of multiple genes. This suggests a large number of casexontrol animals will be needed in datasets for disease susceptibility marker discovery. In 2011, the Agriculture and Food Research Initiative (AFRI) funded a five-year Coordinated Agricultural Project entitled "Integrated Program for BRD in Beef and Dairy Cattle". The overarching research objective of this multi-institutional "BRD CAP" project is to use newly-available genomic tools to identify host genome regions associated with susceptibility to BRD. During 2011, 2,000 dairy calves on a single large California facility were enrolled in a BRD casexontrol design study using an objective scoring system, and genotyped using a high-density bovine single nucleotide polymorphism (SNP) chip. It is envisaged that analyses of these data and future studies will lead to development of DNA tests to enable the selection of animals that are less susceptible to BRD, which is much-needed given growing concern regarding both animal welfare and use of antimicrobial therapeutics.
机译:对牲畜的选择性育种越来越感兴趣,以增强抗病性。牛呼吸道疾病(BRD)或肺炎是美国牛肉和奶牛中最大的死亡原因,BRD抗性代表了选择性育种计划的明显目标。疾病抵抗的可遗传性通常是低的,部分是由于次优诊断(即没有发现所有生病的动物,健康的动物可能被错误地被诊断为病,并且在事实上,一些易感动物会出现耐受性)。另外,BRD易感性的遗传基础很可能是复杂的并且受到多种基因的影响。这表明疾病易感性标记发现的数据集中需要大量的案态豆类动物。 2011年,农业和食品研究倡议(AFRI)为题为“牛肉和奶牛综合计划”的五年协调农业项目资助了一个五年的协调农业项目。这种多机构“BRD帽”项目的总体研究目标是使用新可用的基因组工具来识别与BRD易感性相关的宿主基因组区域。在2011年期间,使用客观评分系统在BRD SuccingXontrol设计研究中注册了2,000个大型加州设施,并使用高密度牛单核苷酸多态性(SNP)芯片进行基因分型。设想,这些数据和未来研究的分析将导致DNA测试的发展,以使得能够选择易受BRD的动物,这是对动物福利和抗菌治疗的使用产生的不断担忧。

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