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在牧场应用技术监测肉牛个体自由采食的补充饲料摄入量和体重

Application of In-Paddock Technologies to Monitor Individual Self-Fed Supplement Intake and Liveweight in Beef Cattle.

作者信息

Imaz José A, García Sergio, González Luciano A

机构信息

School of Life and Environmental Sciences, Faculty of Science, The University of Sydney, Sydney, NSW 2570, Australia.

Instituto Nacional de Tecnología Agropecuaria (INTA), Capital Federal 1033, Argentina.

出版信息

Animals (Basel). 2020 Jan 6;10(1):93. doi: 10.3390/ani10010093.

Abstract

The aim of this study was to assess the ability of in-paddock technologies to capture individual variability of self-fed supplement intake (molasses-lick blocks, MLB), feeding behavior, and liveweight (LW) in grazing beef cattle. An electronic feeder (EF) and in-paddock walk-over-weighing system (WOW) were installed to measure, daily and simultaneously, individual MLB intake and LW. Cattle grazed (pastures and oat crops) and were fed (lucerne and oaten hay) during a 220 day trial. Over the entire period, we were able to quantify a large variability in MLB intake between individuals ( < 0.01; ranging from 0 to 194 g/hd per day). Liveweight change ( < 0.05, R = 0.44) and feeding behaviour (e.g., feeding frequency and duration, 0.01; R > 0.86) were positively correlated with MLB intake over the entire period but these correlations seemed to be affected by the type of feed. The intake of MLB seems to be explained by the individual behaviour of animals rather than the entire group. The use of in-paddock technologies enabled remote measurement of variability in supplement intake and cattle growth. The ability to monitor LW and feeding behavior of individual animals in a group could allow automatic individualized feeding of grazing cattle (amount and type of supplement) and managing low-performing animals under grazing conditions.

摘要

本研究的目的是评估牧场内技术在放牧肉牛中获取个体间自喂补充料摄入量(糖蜜舔砖,MLB)、采食行为和活重(LW)变异性的能力。安装了电子饲喂器(EF)和牧场内动态称重系统(WOW),以每日同时测量个体的MLB摄入量和LW。在为期220天的试验期间,牛群放牧(牧场和燕麦作物)并采食(苜蓿和燕麦干草)。在整个期间,我们能够量化个体间MLB摄入量的巨大变异性(<0.01;范围为每天0至194克/头)。在整个期间,活重变化(<0.05,R = 0.44)和采食行为(如采食频率和持续时间,<0.01;R>0.86)与MLB摄入量呈正相关,但这些相关性似乎受饲料类型的影响。MLB的摄入量似乎由动物的个体行为而非整个群体来解释。牧场内技术的使用能够远程测量补充料摄入量和牛生长的变异性。监测群体中个体动物的LW和采食行为的能力可以实现对放牧牛的自动个性化饲喂(补充料的量和类型),并在放牧条件下管理性能不佳的动物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ec14/7022654/d3ce9a81c031/animals-10-00093-g001.jpg

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