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Thermal change alters the outcome of behavioural interactions between antagonistic partners

机译:热变化改变了敌对伴侣之间行为相互作用的结果

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1. Concerns about climate change often trigger the question whether physiological and behavioural responses of species will enable them to persist. However, species do not exist alone and are largely dependent on interactions with others within communities. 2. In the present study, a mechanistic approach is used to test the hypothesis that inter-specific differences in metabolic response to unpredictable short-term thermal changes can change the outcome of host-parasitoid behavioural interactions. 3. The effect of a drop or a rise of 5 degrees C on resting metabolic rates (RMR) of the main aphid pest of cereal crops in Western Europe, the host Sitobion avenae Fabricius and its main natural enemy, the parasitoid Aphidius rhopalosiphi De Stefani-Perez was measured. Also, defence and attack behaviours were measured for host and parasitoid separately as well as in interaction, since behavioural strategies of both species largely determine parasitism success. 4. The results showed that, when no change in temperature occurred, parasitoids had the highest oviposition rate. However, only with a rise of temperature behavioural interactions were disrupted: the parasitoid attack rate decreased whereas the aphid defence rate increased. This alteration in behaviour was associated with a stronger thermal response of RMR in hosts than in parasitoids, suggesting that species-specific thermal responses of RMR could give valuable information on changes in the outcome of species interactions under warm spells but not under cold ones. 5. It was shown that relatively modest thermal changes with non-lethal effects can have profound consequences for interacting co-evolved species which may affect ecosystem services, such as biological control of pest populations.
机译:1.对气候变化的担忧常常引发这样一个问题,即物种的生理和行为反应是否会使它们得以持久。但是,物种并不是单独存在的,并且很大程度上取决于与社区内其他物种的相互作用。 2.在本研究中,使用一种机械方法来检验以下假设:对不可预测的短期热变化的代谢反应的种间差异可能会改变宿主-拟寄生物行为相互作用的结果。 3.下降或升高5°C对西欧谷物作物的主要蚜虫,寄主寄主Sitobion avenae Fabricius及其主要天敌寄生性蚜虫Aphidius rhopalosiphi De Stefani的静息代谢率(RMR)的影响-佩雷斯被测量。此外,由于两个物种的行为策略在很大程度上决定了寄生虫的成功,因此分别针对宿主和寄生虫以及在相互作用中测量了防御和攻击行为。 4.结果表明,当温度不发生变化时,寄生物的产卵率最高。然而,仅随着温度的升高,行为相互作用才被破坏:寄生虫的侵袭率下降而蚜虫的防御率上升。行为上的这种变化与寄主中RMR的热响应强于寄生生物有关,这表明RMR的特定于物种的热响应可以提供有关温暖时期下物种相互作用结果变化的有价值信息,而不是寒冷时期。 5.研究表明,相对温和的热变化具有非致命影响,对相互作用的共同进化物种可能产生深远影响,这些共同进化物种可能影响生态系统服务,例如有害生物种群的生物防治。

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