Hitsman Harry W, Simons Andrew M
Department of Biology, Carleton University, Ottawa, ON, Canada.
J Evol Biol. 2020 Oct;33(10):1405-1416. doi: 10.1111/jeb.13678. Epub 2020 Aug 2.
Variable environments may result in the evolution of adaptive phenotypic plasticity when cues reliably indicate an appropriate phenotype-environment match. Although adaptive plasticity is well established for phenological traits expressed across environments, local differentiation in norms of reaction is less well studied. The switch from the production of regular fronds to overwintering 'turions' in the greater duckweed Spirodela polyrhiza is vital to fitness and is expressed as a norm of reaction induced by falling temperatures associated with the onset of winter. However, the optimal norm of reaction to temperature is expected to differ across latitudes. Here, we test the hypothesis that a gradient in the length and predictability of growing seasons across latitudes results in the evolution of reaction norms characterized by earlier turion production at higher latitudes. We test this by collecting S. polyrhiza from replicate populations across seven latitudes from Ontario to Florida and then assessing differentiation in thermal reaction norms of turion production along a common temperature gradient. As predicted, northern populations produce turions at a lower birth order and earlier; a significant latitude-by-temperature interaction suggests that reaction norm differentiation has occurred. Our results provide evidence of differentiation in reaction norms across latitudes in a phenological trait, and we discuss how the adaptive significance of this plasticity might be further tested.
当线索可靠地指示出合适的表型 - 环境匹配时,多变的环境可能会导致适应性表型可塑性的进化。虽然适应性可塑性在跨环境表达的物候性状方面已得到充分证实,但反应规范中的局部分化研究较少。在大浮萍(Spirodela polyrhiza)中,从产生正常叶状体转变为越冬“冬芽”对其适合度至关重要,并且表现为一种由冬季开始时温度下降所诱导的反应规范。然而,预计对温度的最佳反应规范在不同纬度会有所不同。在这里,我们检验了这样一个假设:跨纬度生长季节的长度和可预测性梯度导致了反应规范的进化,其特征是在较高纬度更早产生冬芽。我们通过从安大略省到佛罗里达州的七个纬度的重复种群中收集多根紫萍来检验这一点,然后沿着共同的温度梯度评估冬芽产生的热反应规范的分化。正如预测的那样,北方种群以较低的出生顺序且更早地产生冬芽;显著的纬度 - 温度相互作用表明反应规范分化已经发生。我们的结果提供了一个物候性状跨纬度反应规范分化的证据,并且我们讨论了如何进一步检验这种可塑性的适应性意义。