首页> 外文期刊>Open Journal of Animal Sciences >Maximum Entropy Ecological Niche Prediction of the Current Potential Geographical Distribution of &i&Eimeria&/i& Species of Cattle, Sheep and Goats in Mexico
【24h】

Maximum Entropy Ecological Niche Prediction of the Current Potential Geographical Distribution of &i&Eimeria&/i& Species of Cattle, Sheep and Goats in Mexico

机译:i艾美叶菊/ i的当前潜在地理分布的最大熵生态位预测。墨西哥的牛,绵羊和山羊种

获取原文
           

摘要

Coccidiosis is a gastrointestinal disease caused by parasites of the genus Eimeria. To produce the ecological niche model for the geographic distribution of Eimeria species, the maximum entropy algorithm (MaxEnt) was used and 19 bioclimatic variables with a spatial resolution of 30 arc-seconds (approximately 1 km ~( 2 ) ) were downloaded from the World Climate Database. The se were reduced to BIO2, BIO3, BIO4, BIO7 and BIO15 for each species after examining cross-correlations among them to account multicollinearity. A jackknife analysis was included to assess the contribution of five bioclimatic variables and the fit of the model was evaluated with the area under receiver operating characteristic curve (AUC). Under a current climate scenario, the jackknife evaluation of the MaxEnt model showed that BIO4 (temperature seasonality) made the greatest contribution to the distribution model for 22 Eimeria species; whereas BIO7 (temperature annual range) was the most important factor that contributes to the distribution model of 10 species . The habitat suitability model based on the maximum entropy theory was supported by AUC values higher than 0.9 and predicted that the suitable habitats for different species of Eimeria are present in southern, eastern and western areas of Mexico. Our study may support future studies exploring factors that constrain the distribution of Eimeria as well as strategies aimed at reducing the disease prevalence.
机译:球虫病是由艾美球虫属的寄生虫引起的胃肠道疾病。为了生成用于艾美叶虫属物种地理分布的生态位模型,使用了最大熵算法(MaxEnt),并下载了空间分辨率为30弧秒(约1 km〜(2))的19个生物气候变量。来自世界气候数据库。在检查了它们之间的相互关系以解决多重共线性之后,每个物种的se都减少为BIO2,BIO3,BIO4,BIO7和BIO15。包括折刀分析以评估五个生物气候变量的贡献,并使用接收器工作特征曲线(AUC)下的面积评估模型的拟合度。在当前的气候情景下,对MaxEnt模型的折刀评估表明,BIO4(温度季节性)对22种艾美尔球虫物种的分布模型贡献最大。而BIO7(温度年度范围)是促成10种物种分布模型的最重要因素。基于最大熵理论的栖息地适宜性模型得到了高于0.9的AUC值的支持,并预测墨西哥南部,东部和西部地区均存在适合艾美球虫不同物种的适宜栖息地。我们的研究可能支持未来的研究,这些研究探索了限制艾美尔球虫分布的因素以及旨在降低疾病患病率的策略。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号