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Modelling hydration and photosystem II activation in relation to in situ rain and humidity patterns: a tool to compare performance of rare and generalist epiphytic lichens

机译:与原位雨水和湿度模式相关的水合作用和光系统II激活建模:比较稀有和通配附生地衣性能的工具

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摘要

A dynamic water and activity model was developed to assess how efficiently lichens can exploit in situ rain and humid air. The capacity to rehydrate and activate photosynthesis [i.e. photosystem II (PSII)] by these water sources was compared among four hydrophilic and one generalist epiphytic lichen. Hydration status, potential (instant activation) and realized (delayed activation) day-light activity were simulated using a model based on species-specific hydration, PSII activation characteristics and in situ water content for Platismatia norvegica in three microclimatic scenarios. The results showed that delayed PSII activation could have profound effects on lichens' ability to exploit environmental water sources. During rain, realized activity was reduced by 19, 34 and 56% compared to simulations assuming instant activation for three hydrophilic lichens in the driest microclimate. During humid air, the reduction was 81% for the most extreme species and scenario, because of slow hydration and low equilibrium water content. Many and brief hydration events may thus hamper species with slow activation and fast desiccation kinetics. No evidence of compensation by a 'water-holding' morphology was observed among studied species. The developed model may provide a tool for identifying suitable habitats for long-term persistence of lichens with physiological constraints.
机译:建立了动态​​水和活动模型,以评估地衣如何有效利用原地雨水和潮湿的空气。补充水分和激活光合作用的能力[即在四个亲水性和一个普通附生地衣中比较了这些水源对“光系统II(PSII)”的影响。使用基于物种特定的水合作用,PSII活化特性和在三种微气候情况下诺维氏霉菌的原位含水量的模型,模拟了水合状态,电位(即时活化)和已实现(延迟活化)日光活动。结果表明,延迟的PSII活化可能对地衣开发环境水源的能力产生深远影响。与假定在最干燥的微气候中立即激活三个亲水性地衣的模拟模拟相比,在降雨期间,已实现的活动减少了19%,34%和56%。在潮湿的空气中,由于缓慢的水合作用和较低的平衡水含量,对于最极端的物种和情况,减少了81%。因此,许多短暂的水合作用可能会阻碍物种缓慢活化和快速脱水动力学。在所研究的物种中没有观察到通过“持水”形态补偿的证据。所开发的模型可以提供一种工具,用于识别具有生理限制的地衣的长期存留的合适栖息地。

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