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Warmer spring alleviated the impacts of 2018 European summer heatwave and drought on vegetation photosynthesis

机译:温暖的春天减轻了2018年欧洲夏季热浪和植被植被光合作用的影响

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Future projections of climate extremes are expected to become more frequent. Parts of Europe experienced an extensive heatwave and drought during 2018. However, its impacts on terrestrial carbon cycle remain elusive. Here we investigated the vegetation responses to the heatwave and drought during 2018 based on satellite solar-induced chlorophyll fluorescence (SIF) and near-infrared reflectance (NIRv) data, which were used to estimate gross primary productivity (GPP). Results showed that there were no significant (p= 0.60) reductions in GPP across most of Europe during April-August of 2018. The higher temperatures in spring enhanced vegetation GPP, largely alleviated the negative impacts of heatwave and drought on vegetation photosynthesis during the subsequent summer, which resulted in evident compensation effects. Concurrently, warmer spring also had lagged effects by diminishing soil moisture, accompanied by scarce precipitation, leading to water stress on plant growth during summer. This observation-based study highlights the need for more considerations of seasonal compensation and lagged effects on the interactions between climate extreme events and biosphere.
机译:预计气候极端的未来预测将变得更加频繁。 2018年,欧洲部分经历了广泛的热风和干旱。然而,它对陆地碳循环的影响仍然难以捉摸。在这里,我们研究了基于卫星太阳能诱导的叶绿素荧光(SIF)和近红外反射率(NIRV)数据来对2018年热浪和干旱的植被反应,用于估计总初级生产率(GPP)。结果表明,2018年4月,欧洲大部分欧洲的GPP没有显着的(P = 0.60)。春季增强植被GPP的较高温度,在很大程度上减轻了热浪和干旱在随后的植被光合作用上的负面影响夏天,导致明显的补偿效果。同时,较温暖的春天也通过减少土壤水分,伴随着稀缺的沉淀,导致夏季植物生长的水分胁迫。基于观察的研究突出了对季节性补偿和对气候极端事件与生物圈之间的相互作用的更多考虑因素的需要。

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