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Quantifying interspecific variation in dispersal ability of noctuid moths using an advanced tethered flight technique

机译:使用先进的系留飞行技术量化夜蛾的散布能力的种间差异

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摘要

Dispersal plays a crucial role in many aspects of species' life histories, yet is often difficult to measure directly. This is particularly true for many insects, especially nocturnal species (e.g. moths) that cannot be easily observed under natural field conditions. Consequently, over the past five decades, laboratory tethered flight techniques have been developed as a means of measuring insect flight duration and speed. However, these previous designs have tended to focus on single species (typically migrant pests), and here we describe an improved apparatus that allows the study of flight ability in a wide range of insect body sizes and types. Obtaining dispersal information from a range of species is crucial for understanding insect population dynamics and range shifts. Our new laboratory tethered flight apparatus automatically records flight duration, speed, and distance of individual insects. The rotational tethered flight mill has very low friction and the arm to which flying insects are attached is extremely lightweight while remaining rigid and strong, permitting both small and large insects to be studied. The apparatus is compact and thus allows many individuals to be studied simultaneously under controlled laboratory conditions. We demonstrate the performance of the apparatus by using the mills to assess the flight capability of 24 species of British noctuid moths, ranging in size from 12–27 mm forewing length (~40–660 mg body mass). We validate the new technique by comparing our tethered flight data with existing information on dispersal ability of noctuids from the published literature and expert opinion. Values for tethered flight variables were in agreement with existing knowledge of dispersal ability in these species, supporting the use of this method to quantify dispersal in insects. Importantly, this new technology opens up the potential to investigate genetic and environmental factors affecting insect dispersal among a wide range of species.
机译:分散在物种生活史的许多方面起着至关重要的作用,但通常很难直接测量。对于许多在自然田间条件下不易观察到的昆虫,尤其是夜蛾(例如飞蛾)尤其如此。因此,在过去的五十年中,实验室拴系飞行技术已被开发为测量昆虫飞行持续时间和速度的一种手段。然而,这些先前的设计倾向于集中于单一物种(通常为迁徙害虫),在这里我们描述了一种改进的装置,可以研究各种昆虫体大小和类型的飞行能力。从一系列物种中获得传播信息对于理解昆虫种群动态和范围变化至关重要。我们的新型实验室系留飞行装置会自动记录飞行时间,速度和单个昆虫的距离。旋转式拴系式飞行磨机的摩擦力极低,飞虫所附着的手臂非常轻巧,同时又保持坚固而结实,可对大小昆虫进行研究。该设备结构紧凑,因此可以在受控的实验室条件下同时研究许多人。我们通过使用磨房评估24种英国夜蛾的飞行能力来证明该仪器的性能,它们的前伸长度为12-27毫米(体重约40-660毫克)。我们通过将我们的系留飞行数据与已发表文献和专家意见中有关夜蛾子散布能力的现有信息进行比较,验证了这项新技术。系留飞行变量的值与这些物种的扩散能力的现有知识相一致,支持使用此方法来量化昆虫中的扩散。重要的是,这项新技术为研究影响昆虫在各种物种中传播的遗传和环境因素开辟了潜力。

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