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Ecological niche modeling the potential geographic distribution of four Culicoides species of veterinary significance in Florida USA

机译:生态位模型模拟了美国佛罗里达州四种具有重要兽医学意义的库利克德物种的潜在地理分布

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摘要

Epizootic hemorrhagic disease (EHD) is a viral arthropod-borne disease affecting wild and domestic ruminants, caused by infection with epizootic hemorrhagic disease virus (EHDV). EHDV is transmitted to vertebrate animal hosts by biting midges in the genus Culicoides Latreille (Diptera: Ceratopogonidae). Culicoides sonorensis Wirth and Jones is the only confirmed vector of EHDV in the United States but is considered rare in Florida and not sufficiently abundant to support EHDV transmission. This study used ecological niche modeling to map the potential geographical distributions and associated ecological variable space of four Culicoides species suspected of transmitting EHDV in Florida, including Culicoides insignis Lutz, Culicoides stellifer (Coquillett), Culicoides debilipalpis Hoffman and Culicoides venustus Lutz. Models were developed with the Genetic Algorithm for Rule Set Production in DesktopGARP v1.1.3 using species occurrence data from field sampling along with environmental variables from WorldClim and Trypanosomiasis and Land use in Africa. For three Culicoides species (C. insignis, C. stellifer and C. debilipalpis) 96–98% of the presence points were predicted across the Florida landscape (63.8% - 72.5%). For C. venustus, models predicted 98.00% of presence points across 27.4% of Florida. Geographic variations were detected between species. Culicoides insignis was predicted to be restricted to peninsular Florida, and in contrast, C. venustus was predicted to be primarily in north Florida and the panhandle region. Culicoides stellifer and C. debilipalpis were predicted nearly statewide. Environmental conditions also differed by species, with some species’ ranges predicted by more narrow ranges of variables than others. The Normalized Difference Vegetation Index (NDVI) was a major predictor of C. venustus and C. insignis presence. For C. stellifer, Land Surface Temperature, Middle Infrared were the most limiting predictors of presence. The limiting variables for C. debilipalpis were NDVI Bi-Annual Amplitude and NDVI Annual Amplitude at 22.5% and 28.1%, respectively. The model outputs, including maps and environmental variable range predictions generated from these experiments provide an important first pass at predicting species of veterinary importance in Florida. Because EHDV cannot exist in the environment without the vector, model outputs can be used to estimate the potential risk of disease for animal hosts across Florida. Results also provide distribution and habitat information useful for integrated pest management practices.
机译:流行性出血性疾病(EHD)是一种病毒节肢动物传播的疾病,由流行性出血性疾病病毒(EHDV)感染而影响野生和家养反刍动物。 EHDV通过咬合库提尼克属(Culicoides Latreille)(Diptera:Ceratopogonidae)的mid虫而传播到脊椎动物宿主。 Culicoides sonorensis Wirth和Jones是美国唯一确诊的EHDV载体,但在佛罗里达州被认为是罕见的,并且不足以支持EHDV传播。这项研究使用生态位建模来绘制四种可能在佛罗里达传播EHDV的库蚊物种的潜在地理分布和相关的生态变量空间,包括库尼科斯·卢尼茨(Culicoides insignis)Lutz,库里科尼斯·斯库里特(Culicoides stellifer)(Coquillett),库里库尼·德比帕尔皮斯·霍夫曼(Culicoides debilipalpis Hoffman)和库里科尼斯·维努斯图斯·卢茨(Culicoides venustus Lutz)。使用DesktopGARP v1.1.3中的规则集生成遗传算法开发了模型,该模型使用了来自田间采样的物种发生数据以及WorldClim和锥虫病的环境变量以及非洲的土地利用。对于三种Culicoides物种(C. insignis,C。stellifer和C. debilipalpis),整个佛罗里达景观预计有96-98%的存在点(63.8%-72.5%)。对于C. venustus,模型预测了佛罗里达州27.4%的98.00%的存在点。在物种之间检测到地理差异。据预测, Culicoides insignis 仅限于佛罗里达州半岛,相反, C 。预计 venustus 主要发生在佛罗里达州北部和潘汉德尔地区。 Culicoides stellifer C 。在全州范围内预测 debilipalpis 。环境条件也因物种而异,某些物种的范围通过比其他物种更窄的变量范围来预测。归一化植被指数(NDVI)是 C 的主要预测指标。 venustus C insignis 在场。对于 C stellifer ,地表温度,中红外是存在性最强的预测指标。 C 的限制变量。 debilipalpis 分别为NDVI两年振幅和NDVI年振幅,分别为22.5%和28.1%。从这些实验生成的模型输出(包括地图和环境变量范围预测)为预测佛罗里达州重要的兽医物种提供了重要的第一步。由于没有载体,EHDV就无法存在于环境中,因此模型输出可用于估计佛罗里达州动物宿主的潜在疾病风险。结果还提供了有助于综合虫害管理实践的分布和栖息地信息。

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