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蛹期日温幅对小菜蛾的种内和跨代生活史响应。

Within- and Trans-Generational Life History Responses to Diurnal Temperature Amplitudes of the Pupal Stage in the Diamondback Moth.

机构信息

Shanxi Key Laboratory of Integrated Pest Management in Agriculture, College of Plant Protection, Shanxi Agricultural University, Taiyuan 030031, China.

Shanxi Shouyang Dryland Agroecosystem National Observation and Research Station, Shouyang 031700, China.

出版信息

Environ Entomol. 2021 Aug 12;50(4):888-897. doi: 10.1093/ee/nvab044.

Abstract

Diurnal temperature fluctuations in nature can have a significant effect on many ectodermic traits. However, studies on the effects of diurnal temperature fluctuations on organisms, especially the effects on specific life stages, are still limited. We examined the immediate effects of the same average temperature (25°C) and different temperature amplitudes (±4, ±6, ±8, ±10, ±12°C) on the development and survival of Plutella xylostella (Lepidoptera: Plutellidae). We also assessed carry-over effects on adult longevity, reproduction, development, and survival of offspring across generations. The effect of moderate temperature amplitudes was similar to that of constant temperature. Wide temperature amplitudes inhibited the development of pupae, reduced total reproduction, lowered intrinsic rates of population growth, and slowed the development and survival of eggs on the first day, but the proportion of females ovipositing on the first three days increased. Insects coped with the adverse effects of wide temperature amplitudes by laying eggs as soon as possible. Our results confirmed that a logistic model based on daily average temperature cannot predict development rates under wide temperature amplitudes. These findings highlight the effect of environmental temperature fluctuations at the pupal stage on the development and oviposition patterns of P. xylostella and should be fully considered when predicting field occurrence.

摘要

自然环境中的昼夜温度波动会对许多外胚层特征产生重大影响。然而,关于昼夜温度波动对生物的影响,特别是对特定生命阶段的影响的研究仍然有限。我们研究了相同平均温度(25°C)和不同温度幅度(±4、±6、±8、±10、±12°C)对小菜蛾(鳞翅目:菜蛾科)发育和存活的即时影响。我们还评估了跨代对成虫寿命、繁殖、发育和后代存活的滞后效应。中等温度幅度的影响与恒温的影响相似。宽的温度幅度抑制了蛹的发育,降低了总繁殖量,降低了种群内在增长率,并减缓了卵在第一天的发育和存活,但前三天产卵的雌虫比例增加。昆虫通过尽快产卵来应对宽温度幅度的不利影响。我们的结果证实,基于日平均温度的逻辑模型不能预测宽温度幅度下的发育速度。这些发现强调了蛹期环境温度波动对小菜蛾发育和产卵模式的影响,在预测田间发生时应充分考虑。

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