Misión Biológica de Galicia - Consejo Superior de Investigaciones Científicas (MBG-CSIC), 36143, Pontevedra, Spain.
iuFOR-EiFAB, Campus Duques de Soria, Universidad de Valladolid, 42004, Soria, Spain.
Sci Rep. 2020 Jun 29;10(1):10584. doi: 10.1038/s41598-020-67158-4.
Intraspecific variation in plant defences is expected to be the result of adaptive and plastic responses to environmental conditions, where trade-offs between growth and defences are thought to play a key role shaping phenotypic patterns in defensive investment. Axial resin ducts are costly defensive structures that remain imprinted in the tree rings of conifers, therefore being a valuable proxy of defensive investment along the trees' lifespan. We aimed to disentangle climate-driven adaptive clines and plastic responses to both spatial and temporal environmental variation in resin duct production, and to explore growth-defence trade-offs. To that aim, we applied dendrochronological procedures to quantify annual growth and resin duct production during a 31-year-period in a Mediterranean pine species, including trees from nine populations planted in two common gardens. Both genetic factors and plastic responses modulated annual resin duct production. However, we found no evidence of adaptive clines with climate gradients driving population differentiation. Our results revealed a marked physiological trade-off between growth and defences, where the slope of the trade-off was genetically variable and associated with climatic gradients. Our results help to enlighten the evolutionary patterns and genetic basis of defensive allocation within species, particularly revealing a key role of growth-defence trade-offs.
植物防御的种内变异预计是对环境条件的适应性和可塑性反应的结果,其中生长和防御之间的权衡被认为在防御投资的表型模式形成中起着关键作用。轴向树脂导管是代价高昂的防御结构,它们在针叶树的年轮中留下印记,因此是防御投资沿着树木寿命的一个有价值的替代物。我们旨在厘清气候驱动的适应性梯度和对树脂导管产生的空间和时间环境变化的可塑性反应,并探讨生长-防御权衡。为此,我们应用树轮年代学方法来量化地中海松种在 31 年期间的年生长和树脂导管的产生,包括在两个普通花园种植的九个种群的树木。遗传因素和可塑性反应都调节了树脂导管的年度产生。然而,我们没有发现气候梯度驱动种群分化的适应性梯度的证据。我们的结果揭示了生长和防御之间明显的生理权衡,其中权衡的斜率具有遗传变异性,并与气候梯度相关。我们的结果有助于阐明物种内防御分配的进化模式和遗传基础,特别是揭示了生长-防御权衡的关键作用。