A different approach to identifying thermal parameters for invasive species.

Lisa G Neven
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Abstract

The brown marmorated stinkbug, Halyomorpha halys Stål (Hemiptera: Pentatomidae), is a polyphagous invasive insect found in the eastern United States in 1998 but became a major agricultural pest in 2010. Environmental temperatures regulate the location of invasive species establishment in new locations. To determine those areas where an invasive species might establish it is essential to understand the metabolic response of all life stages to temperature. Differential scanning calorimetry is a useful tool to monitor living organisms' metabolism at different temperatures, providing vital information related to the ability of the species to survive in new environments. The information obtained from isothermal and scanning calorimetric experiments on all the life stages of H. halys indicates that the third instar is the most thermoresponsive stage and eggs and fifth instar are the least thermoresponsive, whereas the third instars exhibit a broad range of thermoresponsiveness as compared to all other developmental stages. The recorded values for lower, optimal, and upper developmental temperatures in this study were similar to those reported by other researchers using laboratory and field data to develop degree-day models. This method can help in the rapid development of degree day models to improve and synchronize control efforts for newly invasive species.

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确定入侵物种热参数的不同方法。
褐马蝽 Halyomorpha halys Stål(半翅目:五蝽科)是一种多食性入侵昆虫,1998 年发现于美国东部,2010 年成为主要农业害虫。环境温度会影响入侵物种在新地点建立的位置。要确定入侵物种可能定居的地区,就必须了解所有生命阶段对温度的新陈代谢反应。差示扫描量热法是监测生物体在不同温度下新陈代谢的有用工具,可提供有关物种在新环境中生存能力的重要信息。对哈雷虫所有生命阶段进行等温和扫描量热实验所获得的信息表明,第三龄期是热焓最高的阶段,卵和第五龄期的热焓最低,而第三龄期与所有其他发育阶段相比,热焓范围较宽。本研究中记录的最低、最适和最高发育温度值与其他研究人员利用实验室和现场数据建立度日模型的结果相似。这种方法有助于快速开发度日模型,以改进和同步控制新入侵物种。
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