University of Alberta, Edmonton, Canada. Electronic address: http://ssrn.com.
Hendrix Genetics/Hypor, Regina, Saskatchewan, Canada.
J Therm Biol. 2023 Apr;113:103537. doi: 10.1016/j.jtherbio.2023.103537. Epub 2023 Mar 15.
The costs of production for high density protein and the impacts food production have on the environment are becoming increasingly important issues in animal agriculture. The objective of the present study was to investigate the use of novel thermal profiles including a Thermal Efficiency Index (TEI) on the ability to identify efficient animals in a fraction of the time and at a significantly lower cost of conventional feed station and performance technology. Three hundred and fourty four high performance Duroc sires from a genetic nucleus herd were used in the study. The animals were monitored for feed consumption and growth performance using conventional feed station technology for a 72 day period. Animals were monitored in these stations between approximately 50 kg and 130 kg live body weight. An infrared thermal scan was performed on the animals at the end of the performance test by collecting automated dorsal thermal images and using these biometrics to measure both bio-surveillance values and a thermal phenotypic profile including the TEI (mean dorsal temperature /body weight ). The thermal profile values were significantly correlated (r = 0.40, P < 0.0001) with a current industry best practice for performance in Residual Intake and Gain (RIG). The data from the current study suggest these rapid, real time, cost effective values for TEI constitute a useful precision farming tool for the animal industries to reduce the cost of production and green house gas (GHG) impact for high density protein production.
高密度蛋白质的生产成本以及食品生产对环境的影响正成为动物农业中日益重要的问题。本研究的目的是研究新型热谱图(包括热效率指数(TEI))在识别高效动物方面的应用,以在更短的时间内和更低的成本下完成,而无需传统的饲料站和性能技术。本研究使用了来自遗传核心群的 344 头高性能杜洛克种猪。这些动物在 72 天的时间内使用传统的饲料站技术进行了饲料消耗和生长性能监测。动物在这些站中的体重约为 50kg 至 130kg。在性能测试结束时,通过收集自动背部热图像对动物进行了红外热扫描,并使用这些生物识别技术来测量生物监测值和包括 TEI(平均背部温度/体重)在内的热表型谱。热谱值与当前残留摄入量和增益(RIG)性能的行业最佳实践显著相关(r=0.40,P<0.0001)。本研究的数据表明,TEI 的这些快速、实时、具有成本效益的价值构成了动物产业的一种有用的精准农业工具,可降低高密度蛋白质生产的生产成本和温室气体(GHG)影响。