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首页> 外文期刊>Biocontrol Science and Technology >Niche-based prediction of establishment of biocontrol agents: an example with Gratiana boliviana and tropical soda apple.
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Niche-based prediction of establishment of biocontrol agents: an example with Gratiana boliviana and tropical soda apple.

机译:基于生态位的生物防治剂建立的预测:以 Gratiana boliviana 和热带苏打苹果为例。

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Successful establishment of a biological control agent is a prerequisite for effective reduction of an invasive weed. Niche-based species distribution models can generate valuable information about the potential spread of a biological control agent and help to predict its distribution. The Maximum Entropy Species Distribution Model was used in our study to predict distributions of the leaf beetle Gratiana boliviana Spaeth (Coleoptera: Chrysomelidae) and its target weed, tropical soda apple (TSA), Solanum viarum Dunal (Solanaceae). The specific objectives of this study were to (1) assess the climatic suitability for establishment of this insect across the invasive range of the weed by overlapping predicted current distributions and, (2) examine the niche-related restriction in distribution of the insect by visualising the predictive niche in multivariate space. Accuracy of predicted distributions was tested using binomial tests and area under the curve scores. The results of statistical tests confirmed that the predictions were significantly better than random. The predictions indicated that the potential distribution of G. boliviana in the USA will be more restricted than that of its host plant. Consequently, the beetle's ability to inflict damage to TSA will be geographically limited. Niche visualisation, using a PCA-based analysis, provided evidence of the niche imposed restriction on the distribution of G. boliviana. Overall, this study proposes a new approach for understanding the spatial limitations in establishment of biological control agents, allowing researchers to establish more realistic expectations of success.Digital Object Identifier http://dx.doi.org/10.1080/09583157.2012.664616
机译:成功建立生物防治剂是有效减少侵入性杂草的前提。基于生态位的物种分布模型可以生成有关生物防治剂潜在扩散的有价值的信息,并有助于预测其分布。在我们的研究中,使用了最大熵物种分布模型来预测叶甲虫 Gratiana boliviana Spaeth(鞘翅目:金眼科)及其目标杂草,热带苏打苹果(TSA),茄杜纳尔(茄科)。这项研究的具体目标是(1)通过重叠预测的电流分布来评估在杂草的侵入范围内建立这种昆虫的气候适宜性,以及(2)通过可视化检查与生态位有关的限制。多元空间中的预测性利基市场。使用二项式检验和曲线下的面积来检验预测分布的准确性。统计测试的结果证实,这些预测比随机预测要好得多。预测表明 G的电位分布。美国的boliviana 将比其寄主植物受到更多限制。因此,甲虫对TSA造成伤害的能力将在地理上受到限制。生态位可视化,使用基于PCA的分析,提供了生态位对 G分布施加限制的证据。 boliviana 。总的来说,这项研究提出了一种新的方法来理解生物控制剂建立过程中的空间局限性,使研究人员能够建立更现实的成功预期。数字对象标识符http://dx.doi.org/10.1080/09583157.2012.664616

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