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Using elemental profiling to determine intrinsic markers to track the dispersal of Prostephanus truncatus, a pest of stored grain with alternative natural hosts

机译:使用元素特征分析来确定内在标记,以追踪Prostephanus truncatus的扩散,Prostephanus truncatus是一种具有备用天然宿主的储粮害虫

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摘要

"Detecting sources of insects attacking grain stores can help to develop more effective pest management models. This study considers combinations of chemical elements as intrinsic markers for tracing resource-use by Prostephanus truncatus (Horn) (Coleoptera: Bostrichidae) a pest of stored maize which occurs in natural environments where alternative hosts may support reservoirs of infestation. ududP. truncatus were lab-reared on maize or field-caught in pheromone-baited flight-traps. Beetles and hosts were screened for multiple elements using Inductively Coupled Plasma Atomic Emission Spectrometry (ICP-AES). For elements above detection limits we tested relationships between determinations for different host plants, and for beetles according to environment where captured. ududAn alternative host Spondias purpurea (Linnaeus) (Anacardaceae) contained more Al, B, Ca, Cu, Fe, Mg, Si and Sr, and less P and Zn than maize. Trends for P were consistent between maize and beetles infesting maize, but reversed for Ca and Mg. Elemental profiles of beetles were associated with environment, with significantly lower Al, Ca, Cu, Cr, Fe, P, S, Si, Sr, Ti and Zn determinations in maize-reared beetles than those captured in agricultural or natural environments. Additionally, Al, Ba, K, P, Sr and Ti determinations of field beetles captured in agricultural vs natural environments were significantly different. This suggests Al, Sr and Ti as candidate markers for environment, plus other possibilities likely since elemental concentrations (except B, Ba, Ni, and P) were significantly different in comparisons of all field beetles vs maize-reared beetles.ud udWe present a robust practical solution which successfully identified combinations of elemental markers for remotely tracing resource-use and dispersal by P. truncatus. We discuss the application of chemical characterisation for identifying intrinsic markers of pests, particularly species with alternative hosts. We discuss how to manage the low replication and unbalanced sample sizes inherent in insect elemental screening, particularly when rarer elements are potential markers. ud"
机译:“检测攻击谷物储存库的昆虫的来源可以帮助开发更有效的有害生物管理模型。这项研究认为,化学元素的组合是内源标记,可以追踪藏有玉米的有害生物Prostephanus truncatus(Horn)(Coleoptera:Bostrichidae)的资源利用。 ud udP。truncatus是在玉米上实验室饲养的,或在用信息素诱饵的诱捕装置中被田间捕获;使用感应耦合等离子体原子技术对甲虫和宿主进行了多种元素的筛选。发射光谱法(ICP-AES)。对于高于检测限的元素,我们根据捕获的环境测试了不同寄主植物和甲虫的测定之间的关系。 ud ud另一种寄主紫兰(Linnaeus)(Anacardaceae)含有更多的Al, B,Ca,Cu,Fe,Mg,Si和Sr以及P和Zn的含量均低于玉米,玉米和甲虫的侵染趋势一致玉米,但钙和镁却相反。甲虫的元素特征与环境有关,玉米甲虫中的铝,钙,铜,铬,铁,磷,硫,硅,锶,钛和锌的含量明显低于农业或自然环境中的含量。此外,在农业和自然环境中捕获的野甲虫的Al,Ba,K,P,Sr和Ti的测定值也存在显着差异。这表明Al,Sr和Ti是环境的候选标记,此外还有其他可能性,因为在所有田间甲虫和玉米饲养的甲虫的比较中,元素浓度(B,Ba,Ni和P除外)均存在显着差异。提出了一种可靠的实用解决方案,该解决方案成功地标识了元素标记的组合,可用于远程追踪P. truncatus的资源使用和传播。我们讨论了化学表征在鉴定有害生物(尤其是具有替代寄主的物种)的内在标记中的应用。我们讨论了如何处理昆虫元素筛查中固有的低重复性和不平衡的样本量,特别是当稀有元素是潜在标记时。 ud“

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