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Basal tolerance to heat and cold exposure of the spotted wing drosophila Drosophila suzukii

机译:斑翅果蝇果蝇Suzukii对热和冷暴露的基本耐受性

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摘要

The spotted wing Drosophila, Drosophila suzukii, is a new pest in Europe and America which causes severe damages, mostly to stone fruit crops. Temperature and humidity are among the most important abiotic factors governing insect development and fitness. In many situations, temperature can become stressful thus compromising survival. The ability to cope with thermal stress depends on basal level of thermal tolerance. Basic knowledge on temperature-dependent mortality of D. suzukii is essential to facilitate management of this pest. The objective of the present study was to investigate D. suzukii basal cold and heat tolerance. Adults and pupae were subjected to six low temperatures (−5–7.5 °C) and seven high temperatures (30–37 °C) for various durations, and survival-time-temperature relationships were investigated. Data showed that males were globally more cold tolerant than females. At temperature above 5 °C, adult cold mortality became minor even after prolonged exposures (e.g., only 20% mortality after one month at 7.5 °C). Heat tolerance of males was lower than that of females at the highest tested temperatures (34, 35 and 37 °C). Pupae appeared much less cold tolerant than adults at all temperatures (e.g., Lt50 at 5° C: 4–5 d for adults vs. 21 h for pupae). Pupae were more heat tolerant than adults at the most extreme high temperatures (e.g., Lt50 at 37 °C: 30 min for adults vs. 4 h for pupae). The pupal thermal tolerance was further investigated under low vs. high humidity. Low relative humidity did not affect pupal cold survival, but it reduced survival under heat stress. Overall, this study shows that survival of D. suzukii under heat and cold conditions can vary with stress intensity, duration, humidity, sex and stage, and the methodological approach used here, which was based on thermal tolerance landscapes, provides a comprehensive description of D. suzukiithermal tolerance and limits.
机译:斑翅果蝇(Drosophila suzukii)是欧洲和美洲的一种新害虫,对主要核果类作物造成严重破坏。温度和湿度是控制昆虫发育和适应性的最重要的非生物因素之一。在许多情况下,温度可能会变得压力重重,从而损害生存能力。应付热应力的能力取决于热公差的基础水平。铃木D.依赖温度的死亡率的基本知识对于促进这种害虫的防治至关重要。本研究的目的是调查铃木D.基础的耐寒性和耐热性。成虫和p在不同的时间里经受了六个低温(−5–7.5°C)和七个高温(30–37°C),并研究了生存时间与温度的关系。数据显示,男性比女性更耐寒。在高于5°C的温度下,即使长时间暴露,成年人的感冒死亡率也变得很小(例如,在7.5°C的一个月后,仅20%的死亡率)。在最高测试温度(34、35和37°C)下,雄性的耐热性低于雌性。在所有温度下,up的耐寒性都比成年人差得多(例如,5°C下的Lt50:成人4-5 d,而vs则为21 h)。在最极端的高温下,up比成人更耐高温(例如,在37°C下的Lt50:成人30分钟,vs 4小时)。在低湿度和高湿度下进一步研究了thermal的耐热性。较低的相对湿度不会影响p的冷生存,但会降低热应激下的生存。总体而言,这项研究表明,铃木D. suzukii在高温和低温条件下的存活率会随应力强度,持续时间,湿度,性别和阶段的不同而变化,此处使用的基于热容忍度的方法学方法提供了以下方面的全面描述:铃木热耐受性和极限。

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