Tanaka Kazuhiro, Watari Yasuhiko
General Education Division, Miyagi Gakuin Women's University, Sendai, Miyagi, Japan.
Laboratory of Biotechnology, Faculty of Education, Ashiya University, Ashiya, Japan.
Int J Biometeorol. 2017 Jun;61(6):1011-1016. doi: 10.1007/s00484-016-1280-2. Epub 2016 Dec 5.
The onion fly Delia antiqua advances its eclosion timing with decreasing temperature amplitude to compensate for a depth-dependent phase delay of the zeitgeber. To elucidate whether or not naturally occurring day-to-day variations in the amplitude of soil temperature cycle disturb this compensatory response, we monitored daily variations in the temperature amplitude in natural soils and evaluated the impact on adult eclosion timing. Our results indicated that both median and variance of the soil temperature amplitude become smaller as depth increases. Insertion of a larger temperature fluctuation into the thermoperiod with smaller temperature amplitude induced a stronger phase delay, while insertion of a smaller temperature fluctuation into the thermoperiod with larger temperature amplitude had a weaker phase-advancing effect. It is therefore expected that larger diurnal temperature fluctuations disturb the compensatory response, particularly if they occur at deeper locations, while smaller temperature fluctuations do so only at shallower locations. Under natural conditions, however, the probability of occurrence of smaller or larger temperature fluctuations in shallower or deeper soils, respectively, is relatively small. Thus, naturally occurring day-to-day variations in the temperature amplitude rarely disturb the compensatory response, thereby having a subtle or negligible impact on adult eclosion timing.
葱蝇(Delia antiqua)会随着温度振幅的降低而提前羽化时间,以补偿 Zeitgeber 与深度相关的相位延迟。为了阐明土壤温度周期振幅的自然日变化是否会干扰这种补偿反应,我们监测了天然土壤中温度振幅的每日变化,并评估了其对成虫羽化时间的影响。我们的结果表明,随着深度的增加,土壤温度振幅的中位数和方差都会变小。在温度振幅较小的热周期中插入较大的温度波动会导致更强的相位延迟,而在温度振幅较大的热周期中插入较小的温度波动则具有较弱的相位提前效应。因此,可以预期较大的昼夜温度波动会干扰补偿反应,特别是如果它们发生在较深的位置,而较小的温度波动只会在较浅的位置干扰补偿反应。然而,在自然条件下,较浅或较深土壤中分别出现较小或较大温度波动的概率相对较小。因此,温度振幅的自然日变化很少会干扰补偿反应,从而对成虫羽化时间产生微妙或可忽略不计的影响。