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首页> 外文期刊>The Journal of Applied Ecology >Disentangling the effect of drought on stand mortality and productivity in northern temperate and boreal forests
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Disentangling the effect of drought on stand mortality and productivity in northern temperate and boreal forests

机译:理站干旱的影响在温带北部死亡率和生产力和北方森林

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1.It has recently been reported that changing precipitation patterns increase tree mortality and reduce biomass accumulation in northern temperate and boreal forests.Functional diversity can mitigate the impacts of climate extremes in different types of ecosystems,but few studies have focused on tree functional diversity in forest ecosystems.It is critical to identify functional traits that could help anticipate the impact of drought on tree mortality,and how these affect above-ground tree biomass productivity at the ecosystem level.2.We tested how three functional traits (ratio of dry leaf mass per unit area [LMA],xylem pressure at which 50% of stem xylem conductivity is lost through cavitation [Ψ_(50)] and leaf area to sapwood ratio) influence severe drought impacts on stand mortality and productivity.We used structural equation modelling to compare the effect of a latent variable composed of these three traits between plots that had suffered drought and plots that had not,on the mortality and productivity of northern temperate and boreal forests of Québec,Canada.3.A latent variable composed of LMA and Ψ_(50) significantly explained drought-induced tree mortality,but did not explain stand productivity response to severe drought.Therefore,even if these traits relate to the ability of species to survive drought (drought tolerance) at the tree level,they did not affect the maintenance of plant productivity during drought events (drought resistance) at the stand scale.We hypothesize that the effect of tree mortality on productivity was likely compensated by the formation of canopy openings that stimulate the growth of surviving trees.4.Synthesis and applications.Our results show that mitigation of water loss and xylem resistance to cavitation contribute similarly to severe drought tolerance in trees within northern temperate and boreal forests.Therefore,including droughtresistant trees in fine-scale mixtures might mitigate the impacts of drought on forest productiv
机译:1.降水模式树的死亡率增加北部和减少生物量积累温带和寒带森林。可以减轻极端气候的影响不同类型的生态系统,但很少研究功能的多样性都集中在树森林生态系统。功能特征可以帮助预测干旱对树的影响死亡率,以及这些影响生物质生产力在地上树生态系统level.2。功能特征(比叶质量/干燥单位面积(LMA),木质部压力的50%茎木质部导丢失空化(Ψ_(50))和叶面积边材比)对站影响严重的干旱影响死亡率和生产力。方程模型比较的影响这三个特征组成的潜变量遭受干旱和土地之间的情节没有,在死亡率和生产力北部温带和寒带森林魁北克Canada.3。和Ψ_(50)显著解释道drought-induced树死亡,但没有解释站生产力反应严重干旱。物种生存的干旱的能力(耐旱)在树级别,他们做到了不影响植物生产力的维护在干旱事件(抗旱性)站的规模。树死亡率生产力是可能的补偿,树冠开张的形成刺激幸存的增长trees.4。表明,缓解水资源的浪费和木质部抗气蚀与贡献在北方严重干旱宽容在树上温带和寒带森林。此树精细混合物可能会减轻干旱对森林的影响

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