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棉铃虫蛹长时间暴露在极端温度下会对成虫种群动态和繁殖产量产生负面影响。

Exposure of Helicoverpa punctigera pupae to extreme temperatures for extended periods negatively impacts on adult population dynamics and reproductive output.

机构信息

Centre for Behavioural and Physiological Ecology, Zoology, University of New England, Armidale, NSW, 2351, Australia; Insect Ecology Lab, Natural History Museum, School of Environmental and Rural Science, University of New England, Armidale, NSW, 2351, Australia; Asuansi Agric. Station, Box 520, Cape Coast, Ghana.

Agronomy, School of Environmental and Rural Science, University of New England, Armidale, NSW, 2351, Australia.

出版信息

J Therm Biol. 2021 Oct;101:103099. doi: 10.1016/j.jtherbio.2021.103099. Epub 2021 Sep 25.

Abstract

Understanding the impact that heat stress has on critical life stages of an organism is essential when assessing population responses to extreme events. Heat stress may occur as repeated small-scale events or as a single prolonged event, which may cause different outcomes to the organism. Here, we subjected Helicoverpa punctigera (Wallengren) pupae to two temperatures (44.2 °C and 43 °C) and two exposure treatments - a single 3-h prolonged exposure prolonged and three repeated 1-h exposure period with 24 h recovery time between bouts - to assess the biological traits of individuals. The maximum temperatures were used as they were just below the critical thermal maximum (CTmax) 47.3 °C ± 0.3 °C of pupae for which they could survive exposure. Adults in the prolonged and repeated heat-stressed treatments had 1.70 and 3.34 more days to emergence and 1.57 and 3.30 days extended life span compared to those kept under a constant 25 °C temperature (control treatment). Both pre-oviposition and oviposition periods were extended in the heat-stressed groups. Fecundity in the prolonged and repeated heat-stressed females was reduced by 34.7% and 65.5% eggs in the 43 °C treatment group and by 94.3% and 93.6% eggs in the 44.2 °C treatment group compared to the control group. No eggs from females in either the prolonged and repeated heat-stress groups hatched. We establish that heat stress on pupae can influence the population dynamics of H. punctigera by reducing fecundity as well as extending the pre oviposition period, and affecting adult development. Also, as heat exposure on the parent generation resulted in no offspring production, it is critical to assess cross-generational responses to extreme heat stress.

摘要

了解热应激对生物体关键生命阶段的影响对于评估种群对极端事件的反应至关重要。热应激可能是反复的小规模事件,也可能是单一的长时间事件,这可能会对生物体造成不同的结果。在这里,我们将 Helicoverpa punctigera (Wallengren) 蛹暴露在两种温度(44.2°C 和 43°C)和两种暴露处理下 - 单次 3 小时的长时间暴露和三个重复的 1 小时暴露期,两次暴露之间有 24 小时的恢复期 - 以评估个体的生物学特征。使用最高温度是因为它们略低于临界热最大值 (CTmax) 47.3°C ± 0.3°C,在此温度下蛹可以在暴露中存活。与在恒定 25°C 温度(对照处理)下饲养的蛹相比,长时间和重复受热胁迫处理的成虫需要 1.70 天和 3.34 天才能出蛰,寿命延长 1.57 天和 3.30 天。在受热胁迫组中,产卵前期和产卵期都延长了。在 43°C 处理组中,长时间和重复受热胁迫的雌性产卵量减少了 34.7%和 65.5%的卵,在 44.2°C 处理组中减少了 94.3%和 93.6%的卵,与对照组相比。没有来自长时间和重复受热胁迫组的雌性的卵孵化。我们确定,蛹期的热应激可以通过减少繁殖力以及延长产卵前期来影响 H. punctigera 的种群动态,并影响成虫发育。此外,由于亲代暴露于热应激导致没有后代产生,因此评估跨代对极端热应激的反应至关重要。

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