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Short‐term physiological plasticity: Trade‐off between drought and recovery responses in three Mediterranean Cistus species

机译:短期生理可塑性:三种地中海水仙属植物在干旱和恢复反应之间的权衡

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摘要

Short‐term physiological plasticity allows plants to thrive in highly variable environments such as the Mediterranean ecosystems. In such context, plants that maximize physiological performance under favorable conditions, such as Cistus spp., are generally reported to have a great cost in terms of plasticity (i.e., a high short‐term physiological plasticity) due to the severe reduction of physiological performance when stress factors occur. However, Cistus spp. also show a noticeable resilience ability in response to stress factors. We hypothesized that in Cistus species the short‐term physiological response to stress and that to subsequent recovery can show a positive trade‐off to offset the costs of the photosynthetic decline under drought. Gas exchange, chlorophyll fluorescence, and water relations were measured in C. salvifolius, C. monspeliensis, and C. creticus subsp. eriocephalus during an imposed experimental drought and subsequent recovery. Plants were grown outdoor in common garden conditions from seeds of different provenances. The short‐term physiological response to stress and that to recovery were quantified via phenotypic plasticity index (PIstress and PIrecovery, respectively). A linear regression analysis was used to identify the hypothesized trade‐off PIstress–PIrecovery. Accordingly, we found a positive trade‐off between PIstress and PIrecovery, which was consistent across species and provenances. This result contributes in explaining the profit, more than the cost, of a higher physiological plasticity in response to short‐term stress imposition for Cistus spp because the costs of a higher PIstress are payed back by an as much higher PIrecovery. The absence of leaf shedding during short‐term drought supports this view. The trade‐off well described the relative variations of gas exchange and water relation parameters. Moreover, the results were in accordance with the ecology of this species and provide the first evidence of a consistent trade‐off between the short‐term physiological responses to drought and recovery phases in Mediterranean species.
机译:短期的生理可塑性使植物能够在地中海生态系统等高度变化的环境中繁衍生息。在这种情况下,由于生理性能的严重降低,通常报道了在有利条件下使生理性能最大化的植物,例如Cistus spp。,在可塑性(即高的短期生理可塑性)方面具有很高的成本。当出现压力因素时。但是,Cistus属。还显示出对压力因素的显着回弹能力。我们假设在Cistus物种中,对压力的短期生理反应以及对随后恢复的生理反应可以显示出正的权衡关系,以抵消干旱条件下光合作用下降的代价。测量了C.salvifolius,C.monspeliensis和C.creticus亚种中的气体交换,叶绿素荧光和水的关系。实验性干旱和随后的恢复过程中,头脑畸形。植物是在不同的种源的普通花园条件下室外种植的。通过表型可塑性指数(分别为PIstress和PIrecovery)量化了对应激和对恢复的短期生理反应。线性回归分析用于确定假设的PIstress-PIrecovery。因此,我们发现PIstress和PIrecovery之间存在积极的权衡,这在物种和出处之间是一致的。该结果有助于解释更高的生理可塑性,以响应Cistus spp的短期胁迫,从而获得高于成本的利润,因为较高的PIstress的成本可以通过较高的PIrecovery偿还。短期干旱期间没有叶子脱落支持这种观点。权衡井描述了气体交换和水相关参数的相对变化。此外,结果与该物种的生态学相符,并为地中海物种对干旱的短期生理反应与恢复阶段之间的一致权衡提供了第一个证据。

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