Ma Fang-Zhou, Lü Zhi-Chuang, Wang Ren, Wan Fang-Hao
State Key Laboratory for Biology of Plant Diseases and Insect Pests, Institute of Plant Protection, Chinese Academy of Agricultural Sciences, Beijing, P. R. China.
State Key Laboratory for Biology of Plant Diseases and Insect Pests, Institute of Plant Protection, Chinese Academy of Agricultural Sciences, Beijing, P. R. China; Center for Management of Invasive Alien Species, Ministry of Agriculture, Beijing, P. R. China.
PLoS One. 2014 Jul 23;9(7):e103279. doi: 10.1371/journal.pone.0103279. eCollection 2014.
With advancing global climate change, the analysis of thermal tolerance and evolutionary potential is important in explaining the ecological adaptation and changes in the distribution of invasive species. To reveal the variation of heat resistance and evolutionary potential in the invasive Mediterranean cryptic species of Bemisia tabaci, we selected two Chinese populations-one from Harbin, N China, and one from Turpan, S China-that experience substantial heat and cold stress and conducted knockdown tests under static high- and low-temperature conditions. ANOVAs indicated significant effects of populations and sex on heat knockdown time and chill coma recovery time. The narrow-sense heritability (h2) estimates of heat tolerance based on a parental half-sibling breeding design ranged from 0.47 ± 0.03 to 0.51 ± 0.06, and the estimates of cold tolerance varied from 0.33 ± 0.07 to 0.36 ± 0.06. Additive genetic variances were significantly different from zero for both heat and cold tolerance. These results suggest that invasive B. tabaci Mediterranean cryptic species possesses a strong ability to respond to thermal selection and develops rapid resistance to climate change.
随着全球气候变化的加剧,分析热耐受性和进化潜力对于解释入侵物种的生态适应性和分布变化具有重要意义。为了揭示烟粉虱入侵性地中海隐种的耐热性和进化潜力的变化,我们选择了两个中国种群——一个来自中国北方的哈尔滨,另一个来自中国南方的吐鲁番,这两个种群经历了显著的热应激和冷应激,并在静态高温和低温条件下进行了击倒试验。方差分析表明,种群和性别对热击倒时间和冷昏迷恢复时间有显著影响。基于亲本半同胞育种设计的耐热性狭义遗传力(h2)估计值在0.47±0.03至0.51±0.06之间,耐寒性估计值在0.33±0.07至0.36±0.06之间。热耐受性和冷耐受性的加性遗传方差均显著不同于零。这些结果表明,入侵性烟粉虱地中海隐种具有很强的应对热选择的能力,并能迅速适应气候变化。