Yee Wee L, Goughnour Robert B, Forbes Andrew A, Milnes Joshua M, Feder Jeffrey L
USDA-ARS, Temperate Tree Fruit & Vegetable Research Unit, 5230 Konnowac Pass Road, Wapato, WA 98951, USA.
Washington State University Extension, 1919 NE 78th Street, Vancouver, WA 98665, USA.
Environ Entomol. 2022 Apr 22;51(2):440-450. doi: 10.1093/ee/nvac009.
Seasonal temperatures select for eclosion timing of temperate insects and their parasitoids. In western North America, the fruit fly Rhagoletis zephyria Snow (Diptera: Tephritidae) is parasitized by the hymenopterous wasps Utetes lectoides (Gahan), an egg parasite, and Opius downesi Gahan, a larval parasite (both Braconidae). Eclosion of wasps should be timed with the presence of susceptible fly stages, but reports indicate U. lectoides ecloses in the absence of flies under no-chill conditions. Based on this, we tested the hypotheses that chill durations and no-chill temperatures both differentially regulate eclosion times of R. zephyria and its parasitic wasps. When fly puparia were chilled at ~3°C for 130-180 d, U. lectoides and O. downesi always eclosed on average later than flies. However, after 180-d chill, flies eclosed on average earlier than after 130- and 150-d chill, whereas eclosion times of U. lectoides and O. downesi were less or not affected by chill duration. When fly puparia were exposed to 20-22°C (no chill), U. lectoides eclosed before flies, with 88.9% of U. lectoides versus only 0.61% of flies eclosing. Taken together, findings show that eclosion times of flies are more sensitive to changes in chill duration than those of wasps. Flies are less sensitive than wasps to no-chill in that most flies do not respond by eclosing after no-chill while most wasps do. Our results suggest that shorter winters and longer summers due to climate change could cause mismatches in eclosion times of flies and wasps, with potentially significant evolutionary consequences.
季节性温度决定了温带昆虫及其寄生蜂的羽化时间。在北美西部,果实蝇Rhagoletis zephyria Snow(双翅目:实蝇科)受到膜翅目黄蜂Utetes lectoides(加汉)(一种卵寄生蜂)和Opius downesi加汉(一种幼虫寄生蜂)(均为茧蜂科)的寄生。黄蜂的羽化时间应与易感果蝇阶段的出现时间相匹配,但报告表明,在无低温条件下,Utetes lectoides在没有果蝇的情况下羽化。基于此,我们测试了以下假设:低温持续时间和无低温温度均会差异调节R. zephyria及其寄生蜂的羽化时间。当果蝇蛹在约3°C下冷藏130 - 180天,Utetes lectoides和O. downesi平均羽化时间总是比果蝇晚。然而,在冷藏180天后,果蝇的平均羽化时间比冷藏130天和150天后更早,而Utetes lectoides和O. downesi的羽化时间受冷藏持续时间的影响较小或不受影响。当果蝇蛹暴露在20 - 22°C(无低温)时,Utetes lectoides比果蝇先羽化,88.9%的Utetes lectoides羽化,而只有0.61%的果蝇羽化。综上所述,研究结果表明,果蝇的羽化时间比黄蜂对低温持续时间的变化更敏感。果蝇对无低温的敏感性低于黄蜂,因为大多数果蝇在无低温后不会通过羽化做出反应,而大多数黄蜂会。我们的结果表明,气候变化导致的冬季变短和夏季变长可能会导致果蝇和黄蜂羽化时间不匹配,从而可能产生重大的进化后果。