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首页> 外文期刊>Journal of Vegetation Science >Carbon sink strength of a Mediterranean cork oak understorey: how do semi-deciduous and evergreen shrubs face summer drought?
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Carbon sink strength of a Mediterranean cork oak understorey: how do semi-deciduous and evergreen shrubs face summer drought?

机译:地中海软木橡树下层的碳汇强度:半落叶灌木和常绿灌木如何面对夏季干旱?

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Questions How do semi-deciduous and evergreen shrubs exploit environmental resources during summer drought? What is the contribution of the understorey shrubby layer to ecosystem carbon assimilation? To what extent are carbon balance and transpiration impacted by a rain pulse? Location Cork oak open woodland in the Mediterranean region. Methods We used closed dynamic light and dark chambers to measure gas exchange (CO2 and H2O) in the dominant shrub understorey species Cistus salviifolius, Cistus crispus (semi-deciduous) and Ulex airensis (evergreen), together with plant physiological and morphological measurements during summer drought and autumn recovery. A hyperbolic light response model constrained by vapour pressure deficits was fitted for up-scaling shrub photosynthesis to the ecosystem level. The data were compared, on a daily and daytime basis, with gross primary productivity estimates from ecosystem eddy-covariance flux measurements. Results The onset of summer drought led to a significant leaf area reduction in semi-deciduous species. A general decrease in photosynthesis in all species was observed, while evapotranspiration and above-ground respiration fluxes contrasted among species during summer progression and autumn recovery. The shallow-rooted C.salviifolius was able to use light more efficiently than the other two species, although with poor stomatal control over water loss and consistently higher above-ground respiration rates, leading to lower water and carbon use efficiencies when compared with C.crispus. The deep-rooted shrub U.airensis maintained higher leaf water potentials and very low photosynthetic rates while decreasing transpiration rates throughout the summer drought. A summer rain pulse showed that shallow-rooted shrubs use water in an opportunistic way, with immediate leaf rehydration and concomitant photosynthesis increments. Conversely, deep-rooted shrubs (U.airensis) were unresponsive, only recovering photosynthesis with high soil water content. An opportunistic growth response may be disadvantageous to shallow-rooted shrubs in a future climate with extended dry summers and higher probability of rain pulse events. The prominent increase in transpiration rates and plant respiration costs observed during the dry conditions that followed the rain pulse, led to a reduced plant ability to recover after autumn rains. Conclusions The shrubs that naturaly colonized this montado understorey showed contrasting strategies to overcome summer drought, suggesting an efficient mosaic exploitation of seasonal environmental resources. The contribution of these shrubs to total ecosystem CO2 uptake during summer and autumn recovery was 17%. This high contribution implies that shrub density management decisions should consider a carbon balance perspective.
机译:问题在夏季干旱期间,半落叶灌木和常绿灌木如何开发环境资源?底层灌木层对生态系统碳同化有何贡献?降雨脉冲在多大程度上影响碳平衡和蒸腾作用?位置地中海地区的软木栎木开阔林地。方法我们使用封闭的动态光暗室来测量灌木丛下层种Cistus salviifolius,Cistus crispus(半落叶)和Ulex airensis(常绿)的气体交换(CO2和H2O),并在夏季进行植物生理和形态学测量干旱和秋季恢复。拟合了由蒸气压不足约束的双曲线光响应模型,用于将灌木的光合作用按比例放大至生态系统水平。每天和每天将数据与来自生态系统涡度-协方差通量测量的初级生产力估算值进行比较。结果夏季干旱的发作导致半落叶树种的叶面积明显减少。观察到所有物种的光合作用普遍下降,而在夏季进展和秋季恢复期间,不同物种之间的蒸散量和地上呼吸通量相反。尽管气孔对失水的控制能力较差,而且地上呼吸速率始终较高,但浅根C. salviifolius能够比其他两个物种更有效地利用光,与C相比,水和碳的利用效率较低。脆皮。在整个夏季干旱期间,根深蒂固的灌木U.airensis保持较高的叶片水势和非常低的光合速率,同时降低了蒸腾速率。夏季降雨脉冲表明,根深蒂固的灌木以机会主义的方式用水,叶片立即补液,并伴随着光合作用的增加。相反,深根灌木(U.airensis)没有反应,只能恢复土壤水分含量高的光合作用。在未来的气候中,机会性的生长反应可能不利于浅根灌木,因为夏季干旱更长,降雨脉冲事件的可能性更高。在降雨后的干旱条件下,蒸腾速率和植物呼吸成本显着增加,导致植物在秋季降雨后恢复的能力下降。结论自然地定居在此蒙塔多地下层的灌木丛显示出克服夏季干旱的相反策略,表明对季节性环境资源的有效镶嵌开发。在夏季和秋季恢复期间,这些灌木对生态系统二氧化碳吸收总量的贡献为17%。这种高贡献意味着灌木密度管理决策应考虑碳平衡的观点。

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