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Invited review: overview of new traits and phenotyping strategies in dairy cattle with a focus on functional traits

机译:特邀评论:新特征和表型分析策略概述 在奶牛中,重点是功能性特征

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摘要

For several decades, breeding goals in dairy cattle focussed on increased milk production. However, many functional traits have negative genetic correlations with milk yield, and reductions in genetic merit for health and fitness have been observed. Herd management has been challenged to compensate for these effects and to balance fertility, udder health and metabolic diseases against increased production to maximize profit without compromising welfare. Functional traits, such as direct information on cow health, have also become more important because of growing concern about animal well-being and consumer demands for healthy and natural products. There are major concerns about the impact of drugs used in veterinary medicine on the spread of antibiotic-resistant strains of bacteria that can negatively impact human health. Sustainability and efficiency are also increasingly important because of the growing competition for high-quality, plant-based sources of energy and protein. Disruptions to global environments because of climate change may encourage yet more emphasis on these traits. To be successful, it is vital that there be a balance between the effort required for data recording and subsequent benefits. The motivation of farmers and other stakeholders involved in documentation and recording is essential to ensure good data quality. To keep labour costs reasonable, existing data sources should be used as much as possible. Examples include the use of milk composition data to provide additional information about the metabolic status or energy balance of the animals. Recent advances in the use of mid-infrared spectroscopy to measure milk have shown considerable promise, and may provide cost-effective alternative phenotypes for difficult or expensive-to-measure traits, such as feed efficiency. There are other valuable data sources in countries that have compulsory documentation of veterinary treatments and drug use. Additional sources of data outside of the farm include, for example, slaughter houses (meat composition and quality) and veterinary labs (specific pathogens, viral loads). At the farm level, many data are available from automated and semi-automated milking and management systems. Electronic devices measuring physiological status or activity parameters can be used to predict events such as oestrus, and also behavioural traits. Challenges concerning the predictive biology of indicator traits or standardization need to be solved. To develop effective selection programmes for new traits, the development of large databases is necessary so that high-reliability breeding values can be estimated. For expensive-to-record traits, extensive phenotyping in combination with genotyping of females is a possibility.
机译:几十年来,奶牛的育种目标集中在增加牛奶产量上。但是,许多功能性状与牛奶产量之间存在负的遗传相关性,并且已经观察到健康和健身的遗传价值降低。畜群管理面临挑战,以弥补这些影响并平衡生育能力,乳房健康状况和新陈代谢疾病与增产之间的关系,以在不损害福利的前提下实现利润最大化。由于越来越关注动物的福祉以及消费者对健康和天然产品的需求,功能性特征(例如有关母牛健康的直接信息)也变得越来越重要。兽医学中使用的药物对可能对人类健康产生负面影响的抗生素耐药菌的传播产生了重大影响。可持续性和效率也变得越来越重要,因为对高质量的植物性能源和蛋白质的竞争日益激烈。由于气候变化而对全球环境造成的破坏可能会鼓励人们更加重视这些特征。要取得成功,至关重要的是在数据记录所需的工作量和后续收益之间取得平衡。农民和其他利益相关者参与文档和记录的动机对于确保良好的数据质量至关重要。为了使劳动力成本合理,应尽可能使用现有数据源。示例包括使用牛奶成分数据来提供有关动物的代谢状态或能量平衡的其他信息。使用中红外光谱法测量牛奶的最新进展已显示出可观的前景,并可为难以或昂贵的测量特性(例如饲料效率)提供具有成本效益的替代表型。在国家/地区,还有其他有价值的数据来源,其中包含兽医治疗和药物使用的强制性记录。农场以外的其他数据来源包括,例如,屠宰场(肉的成分和质量)和兽医实验室(特定的病原体,病毒载量)。在农场级别,可以从自动和半自动挤奶和管理系统获得许多数据。测量生理状态或活动参数的电子设备可以用于预测诸如发情以及行为特征的事件。需要解决与指标性状或标准化相关的预测生物学方面的挑战。为了开发有效的新性状选择程序,必须开发大型数据库,以便可以估算高可靠性育种值。对于昂贵的记录性状,可能会结合雌性的基因型进行广泛的表型化。

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