Oostra Vicencio, Saastamoinen Marjo, Zwaan Bas J, Wheat Christopher W
Department of Genetics, Evolution and Environment, University College London, The Darwin Building, Gower Street, London, WC1E 6BT, UK.
Department of Plant Sciences, Laboratory of Genetics, Wageningen University, PO Box 16, 6700AA, Wageningen, The Netherlands.
Nat Commun. 2018 Mar 8;9(1):1005. doi: 10.1038/s41467-018-03384-9.
Phenotypic plasticity, the expression of multiple phenotypes from one genome, is a widespread adaptation to short-term environmental fluctuations, but whether it facilitates evolutionary adaptation to climate change remains contentious. Here, we investigate seasonal plasticity and adaptive potential in an Afrotropical butterfly expressing distinct phenotypes in dry and wet seasons. We assess the transcriptional architecture of plasticity in a full-factorial analysis of heritable and environmental effects across 72 individuals, and reveal pervasive gene expression differences between the seasonal phenotypes. Strikingly, intra-population genetic variation for plasticity is largely absent, consistent with specialisation to a particular environmental cue reliably predicting seasonal transitions. Under climate change, deteriorating accuracy of predictive cues will likely aggravate maladaptive phenotype-environment mismatches and increase selective pressures on reaction norms. However, the observed paucity of genetic variation for plasticity limits evolutionary responses, potentially weakening prospects for population persistence. Thus, seasonally plastic species may be especially vulnerable to climate change.
表型可塑性,即一个基因组表达多种表型,是对短期环境波动的一种广泛适应,但它是否有助于对气候变化的进化适应仍存在争议。在这里,我们研究了一种在非洲热带地区的蝴蝶,它在旱季和雨季表现出不同的表型,研究其季节性可塑性和适应潜力。我们在对72个个体的遗传和环境效应进行全因子分析中评估可塑性的转录结构,并揭示季节性表型之间普遍存在的基因表达差异。令人惊讶的是,可塑性的种群内遗传变异基本不存在,这与专门适应可靠预测季节性转变的特定环境线索一致。在气候变化下,预测线索准确性的下降可能会加剧适应不良的表型-环境不匹配,并增加对反应规范的选择压力。然而,观察到的可塑性遗传变异的缺乏限制了进化反应,可能会削弱种群持续存在的前景。因此,具有季节性可塑性的物种可能特别容易受到气候变化的影响。