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Climate variation alters the synchrony of host?¢????parasitoid interactions

机译:气候变化改变了寄主的同步性

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Abstract Observed changes in mean temperature and increased frequency of extreme climate events have already impacted the distributions and phenologies of various organisms, including insects. Although some research has examined how parasitoids will respond to colder temperatures or experimental warming, we know relatively little about how increased variation in temperature and humidity could affect interactions between parasitoids and their hosts. Using a study system consisting of emerald ash borer (EAB), Agrilus planipennis , and its egg parasitoid Oobius agrili , we conducted environmentally controlled laboratory experiments to investigate how increased seasonal climate variation affected the synchrony of host?¢????parasitoid interactions. We hypothesized that increased climate variation would lead to decreases in host and parasitoid survival, host fecundity, and percent parasitism (independent of host density), while also influencing percent diapause in parasitoids. EAB was reared in environmental chambers under four climate variation treatments (standard deviations in temperature of 1.24, 3.00, 3.60, and 4.79???°C), while O . agrili experiments were conducted in the same environmental chambers using a 4 ???? 3 design (four climate variation treatments ???? 3 EAB egg densities). We found that EAB fecundity was negatively associated with temperature variation and that temperature variation altered the temporal egg laying distribution of EAB. Additionally, even moderate increases in temperature variation affected parasitoid emergence times, while decreasing percent parasitism and survival. Furthermore, percent diapause in parasitoids was positively associated with humidity variation. Our findings indicate that relatively small changes in the frequency and severity of extreme climate events have the potential to phenologically isolate emerging parasitoids from host eggs, which in the absence of alternative hosts could lead to localized extinctions. More broadly, these results indicate how climate change could affect various life history parameters in insects, and have implications for consumer?¢????resource stability and biological control.
机译:摘要观测到的平均温度变化和极端气候事件发生频率的增加已经影响了包括昆虫在内的各种生物的分布和物候。尽管一些研究已经研究了寄生虫对寒冷的温度或实验性变暖的反应,但我们对温度和湿度变化如何影响寄生虫与宿主之间相互作用的了解相对较少。我们使用由翡翠(EAB),Agrilus planipennis及其卵寄生性寄生虫Oobius agrili组成的研究系统,进行了环境控制的实验室实验,以调查季节性气候变化增加如何影响寄主寄生性相互作用。我们假设气候变化的增加会导致寄主和寄生虫的存活,寄主繁殖力和寄生虫百分率下降(与寄主密度无关),同时还会影响寄生虫的滞育百分率。在四种气候变化处理(温度的标准偏差为1.24、3.00、3.60和4.79?C)下,将EAB放在环境室中饲养,而O。在相同的环境室内使用4 ????进行农业试验。 3设计(四种气候变化处理方法-3 EAB卵密度)。我们发现,EAB繁殖力与温度变化呈负相关,并且温度变化改变了EAB的产卵时间分布。此外,温度变化即使适度增加也会影响寄生虫的出现时间,同时降低寄生虫率和存活率。此外,寄生虫的滞育百分率与湿度变化呈正相关。我们的研究结果表明,极端气候事件的频率和严重程度相对较小的变化就有可能从寄主卵中物候分离新出现的寄生虫,如果没有其他寄主,可能会导致局部灭绝。从更广泛的意义上讲,这些结果表明气候变化如何影响昆虫的各种生活史参数,并对消费者的资源稳定性和生物控制产生影响。

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