Guo Jian-Ying, Cong Lin, Wan Fang-Hao
State Key Laboratory for Biology of Plant Diseases and Insect Pests, Institute of Plant Protection, Chinese Academy of Agricultural Sciences, Beijing, China.
Insect Sci. 2013 Aug;20(4):541-9. doi: 10.1111/j.1744-7917.2012.01546.x. Epub 2012 Oct 5.
Insects are ectotherms and their ability to resist temperature stress is limited. The immediate effects of sub-lethal heat stress on insects are well documented, but longer-term effects of such stresses are rarely reported. In this study, survival, development and reproduction of the whitefly, Bemisia tabaci (Gennadius) (Hemiptera: Aleyrodidae) biotype B, were compared over five consecutive generations at 27, 31 and 35 °C and for one generation at 37 °C. Both temperature and generation significantly affected the fitness of the whitefly. These impacts were more dramatic with increasing generations and temperatures. Among the experimental temperatures, the most favorable for development and reproduction were 27 °C and 31 °C. At 27 °C, survival, development and fecundity were all stable over these five generations. At 31 °C, immature survival rate was the highest in the fifth generation, but female fecundities decreased in the fourth and fifth generations. At 35 °C, egg hatching rate, immature survival rate and female fecundity decreased significantly in the fourth and fifth generations. At 37 °C, survival of B. tabaci was not adversely affected, but female fecundity at 37 °C was less than 10% of that at 27 °C or 31 °C. These results demonstrate that the lethal high temperature for B. tabaci is over 37 °C, and the whitefly population continued expanding in the five generations at 35 °C. The ability of B. tabaci biotype B to survive high temperature stress will play an important role in its population extension under global warming.
昆虫是变温动物,它们抵抗温度胁迫的能力有限。亚致死热胁迫对昆虫的直接影响已有充分记录,但此类胁迫的长期影响鲜有报道。在本研究中,对烟粉虱Bemisia tabaci (Gennadius)(半翅目:粉虱科)B型生物型在27、31和35 °C下连续五代以及在37 °C下一代的存活、发育和繁殖情况进行了比较。温度和世代均显著影响烟粉虱的适合度。随着世代数和温度的增加,这些影响更为显著。在实验温度中,最有利于发育和繁殖的是27 °C和31 °C。在27 °C时,这五代的存活、发育和繁殖力均稳定。在31 °C时,第五代若虫存活率最高,但第四代和第五代雌虫繁殖力下降。在35 °C时,第四代和第五代的卵孵化率、若虫存活率和雌虫繁殖力均显著下降。在37 °C时,烟粉虱的存活未受到不利影响,但37 °C时的雌虫繁殖力不到27 °C或31 °C时的10%。这些结果表明,烟粉虱的致死高温超过37 °C,且烟粉虱种群在35 °C下的五代中持续扩大。烟粉虱B型生物型在高温胁迫下的存活能力将在全球变暖下其种群扩张中发挥重要作用。