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Goats worm burden variability also results from non-homogeneous larval intake

机译:山羊蠕虫的负担变异性还来自不均匀的幼体摄入

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摘要

For small ruminants, Gastrointestinal Nematodes (GINs) are responsible for severe economic losses and they are also an animal welfare problem. GIN use their host to reproduce and disperse eggs on the pasture, from where they can re-infect another animal. The high density of hosts on the pasture and the extreme tolerance of GIN to environmental constraints make GIN eradication almost impossible. In addition, significant resistance to anthelmintic treatment requires sustainable and integrated management to maintain the health and financial well-being of livestock farming. In this context, models of the complex interactions between host, GIN and environment can help us to design long term optimal management strategies. To build such models, quantitative information is needed but are generally very challenging to collect. In this article, we focus on the number of ingested larvae per animal, which we propose to characterise by using a simulation framework based on the estimation of the spatial distribution of the host over time. Our framework allows us to show that worm burden individual variation is not only explained by the host’s genetics, as is often the case, but is also a result of the grazing spatial process.
机译:对于小型反刍动物,胃肠道线虫(GIN)造成严重的经济损失,也是动物福利问题。 GIN使用宿主繁殖并在牧场上散布卵,从那里它们可以再次感染另一只动物。牧场上寄主的高密度以及GIN对环境限制的极高耐受性使得根除GIN几乎是不可能的。此外,对驱虫治疗的重大抵抗力要求可持续和综合管理,以维持畜牧业的健康和财务状况。在这种情况下,主机,GIN与环境之间的复杂交互模型可以帮助我们设计长期最佳管理策略。为了建立这样的模型,需要定量信息,但是通常很难收集。在本文中,我们着重于每只动物摄入的幼虫数量,我们建议通过使用基于宿主随时间的空间分布估计的模拟框架来表征。我们的框架使我们能够证明蠕虫负担的个体变异不仅是由宿主的遗传学解释的(通常是这种情况),而且还是放牧空间过程的结果。

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