Gao Gui-Zhen, Lü Zhao-Zhi, Sun Ping, Xia De-Ping
Key Laboratory of Biogeography and Bioresource in Arid Land, Xinjiang Institute of Ecology and Geography, Chinese Academy of Sciences, Urumqi 830011, China.
Ying Yong Sheng Tai Xue Bao. 2012 Feb;23(2):506-10.
Aphis gossypii and Acyrthosiphon gossypii are the coexisting species on cotton plant, with their abundance differed within and among years. To explore whether the abundance difference was related to the different responses of the two aphid species to high temperature, a laboratory experiment was conducted to assess the mortality and reproduction of the two aphid species at high temperatures 32, 34, 36 and 38 degrees C. With the increasing temperature and prolonged exposure period, the cumulative mortality of the two aphid species increased, and Acyrthosiphon gossypii had a higher cumulative mortality than Aphis gossypii. The daily mortality of the aphids could be well simulated by complementary log-log (CLL) model. The median lethal temperature of the two aphid species estimated by CLL model decreased with prolonged exposure period. Under the same exposure period, the median lethal temperature of Aphis gossypii was higher than that of Acyrthosiphon gossypii. Within the range of 32-38 degrees C, the reproduction rate of the two aphid species decreased with increasing temperature, but Aphis gossypii had a significantly higher reproduction rate than Acyrthosiphon gossypii, indicating that at the temperature higher than 32 degrees C, Aphis gossypi had higher tolerance against high temperature than Acyrthosiphon gossypii, and consequently, had more competitive advantage under global warming.
棉蚜和棉长管蚜是棉花植株上的共存物种,它们在年份内和年份间的数量有所不同。为了探究数量差异是否与这两种蚜虫对高温的不同反应有关,进行了一项实验室实验,以评估这两种蚜虫在32、34、36和38摄氏度高温下的死亡率和繁殖率。随着温度升高和暴露时间延长,两种蚜虫的累积死亡率均增加,且棉长管蚜的累积死亡率高于棉蚜。蚜虫的每日死亡率可用互补对数-对数(CLL)模型很好地模拟。通过CLL模型估计的两种蚜虫的致死中温度随暴露时间延长而降低。在相同暴露时间下,棉蚜的致死中温度高于棉长管蚜。在32-38摄氏度范围内,两种蚜虫的繁殖率均随温度升高而降低,但棉蚜的繁殖率显著高于棉长管蚜,这表明在高于32摄氏度的温度下,棉蚜对高温的耐受性高于棉长管蚜,因此,在全球变暖的情况下具有更强的竞争优势。