Chen Chia-Yu, Chiu Ming-Chih, Kuo Mei-Hwa
Department of Entomology, National Chung Hsing University, Taichung, Taiwan.
Bull Entomol Res. 2013 Aug;103(4):406-13. doi: 10.1017/S0007485312000867. Epub 2013 Mar 1.
To estimate the net effect of climate change on natural populations, we must take into account the positive and negative effects of temperature oscillations and climate variability. Warming because of climate change will likely exceed the physiological optima of tropical insects, which currently live very close to their thermal optima. Tropical insects will be negatively affected if their optima are exceeded otherwise warming may affect them positively. We evaluate the demographic responses of the cowpea aphid, Aphis craccivora, to summer warming in subtropical and tropical Taiwan, and examine the effects of diel temperature oscillation on these responses. Aphids were reared at four temperatures (current summer mean, +1.4, +3.9 and +6.4 °C), the latter three simulating different levels of warming. At each average temperature, aphids experienced constant or oscillating (from -2.9 to +3.6 °C of each mean temperature) regimes. As the simulated summer temperatures increased, so did the negative effects on life-history traits and demographic parameters. Compared with aphids reared in constant temperatures, aphids reared in oscillating temperatures developed more slowly and had a longer mean generation time, but their net reproductive rate was higher. These findings demonstrate that climate warming will affect demographic parameters and life-history traits differentially. Studies that use constant temperatures are unlikely to accurately predict biotic responses to climate change.
为了评估气候变化对自然种群的净影响,我们必须考虑温度振荡和气候变率的正负效应。气候变化导致的变暖可能会超过热带昆虫的生理最适温度,而目前热带昆虫的生存温度非常接近其热最适温度。如果超过其最适温度,热带昆虫将受到负面影响,否则变暖可能会对它们产生积极影响。我们评估了豇豆蚜在亚热带和热带台湾地区对夏季变暖的种群统计学响应,并研究了昼夜温度振荡对这些响应的影响。蚜虫在四种温度(当前夏季平均温度、+1.4、+3.9和+6.4°C)下饲养,后三种温度模拟不同程度的变暖。在每个平均温度下,蚜虫经历恒温或振荡(每种平均温度在-2.9至+3.6°C之间振荡)环境。随着模拟夏季温度的升高,对生活史特征和种群统计学参数的负面影响也随之增加。与在恒温环境中饲养的蚜虫相比,在振荡温度环境中饲养的蚜虫发育较慢,平均世代时间较长,但其净繁殖率较高。这些发现表明,气候变暖将对种群统计学参数和生活史特征产生不同的影响。使用恒温的研究不太可能准确预测生物对气候变化的响应。