Moore Megan Elizabeth, Hill Christina A, Kingsolver Joel G
University of North Carolina Chapel Hill North Carolina USA.
Ecol Evol. 2022 Mar 18;12(3):e8618. doi: 10.1002/ece3.8618. eCollection 2022 Mar.
When thermal tolerances differ between interacting species, extreme temperature events (heat waves) will alter the ecological outcomes. The parasitoid wasp suffers high mortality when reared throughout development at temperatures that are nonstressful for its host, . However, the effects of short-term heat stress during parasitoid development are unknown in this host-parasitoid system.Here, we investigate how duration of exposure, daily maximum temperature, and the developmental timing of heat waves impact the performance of . and its host¸ . . We find that the developmental timing of short-term heat waves strongly determines parasitoid and host outcomes.Heat waves during parasitoid embryonic development resulted in complete wasp mortality and the production of giant, long-lived hosts. Heat waves during the 1st-instar had little effect on wasp success, whereas heat waves during the parasitoid's nutritionally and hormonally critical 2nd instar greatly reduced wasp emergence and eclosion. The temperature and duration of heat waves experienced early in development determined what proportion of hosts had complete parasitoid mortality and abnormal phenotypes.Our results suggest that the timing of extreme temperature events will be crucial to determining the ecological impacts on this host-parasitoid system. Discrepancies in thermal tolerance between interacting species and across development will have important ramifications on ecosystem responses to climate change.
当相互作用的物种之间的热耐受性不同时,极端温度事件(热浪)将改变生态结果。在对其宿主无压力的温度下,整个发育过程中饲养的寄生蜂死亡率很高。然而,在这个宿主-寄生蜂系统中,寄生蜂发育过程中短期热应激的影响尚不清楚。在这里,我们研究暴露持续时间、每日最高温度和热浪的发育时间如何影响[物种名称未给出]及其宿主[物种名称未给出]的表现。我们发现短期热浪的发育时间强烈地决定了寄生蜂和宿主的结果。寄生蜂胚胎发育期间的热浪导致黄蜂全部死亡,并产生巨大、长寿的宿主。一龄期的热浪对黄蜂的成功率影响很小,而寄生蜂营养和激素关键的二龄期的热浪则大大降低了黄蜂的羽化和出蛹。发育早期经历的热浪的温度和持续时间决定了有多少比例的宿主出现完全的寄生蜂死亡和异常表型。我们的结果表明,极端温度事件的时间对于确定对这个宿主-寄生蜂系统的生态影响至关重要。相互作用的物种之间以及整个发育过程中的热耐受性差异将对生态系统对气候变化的反应产生重要影响。