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首页> 外文期刊>Tree Physiology >Divergent phenological and leaf gas exchange strategies of two competing tree species drive contrasting responses to drought at their altitudinal boundary
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Divergent phenological and leaf gas exchange strategies of two competing tree species drive contrasting responses to drought at their altitudinal boundary

机译:两种竞争树种的发散鉴生叶片气体交换策略驱使对其在近边界的干旱方面的对比反应

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摘要

In Mediterranean mountains, Pinus sylvestris L. is expected to be displaced under a warming climate by more drought-tolerant species such as the sub-Mediterranean Quercus pyrenaica Willd. Understanding how environmental factors drive tree physiology and phenology is, therefore, essential to assess the effect of changing climatic conditions on the performance of these species and, ultimately, their distribution. We compared the cambial and leaf phenology and leaf gas exchange of Q. pyrenaica and P. sylvestris at their altitudinal boundary in Central Spain and assessed the environmental variables involved. Results indicate that P. sylvestris cambial phenology was more sensitive to weather conditions (temperature at the onset and water deficit at the end of the growing season) than Q. pyrenaica. On the other hand, Q. pyrenaica cambial and leaf phenology were synchronized and driven by photoperiod and temperatures. Pinus sylvestris showed lower photosynthetic nitrogen-use efficiency and higher intrinsic water-use efficiency than Q. pyrenaica as a result of a tighter stomatal control in response to summer dry conditions, despite its less negative midday leaf water potentials. These phenological and leaf gas exchange responses evidence a stronger sensitivity to drought of P. sylvestris than that of Q. pyrenaica, which may therefore hold a competitive advantage over P. sylvestris under the predicted increase in recurrence and intensity of drought events. On the other hand, both species could benefit from warmer springs through an advanced phenology, although this effect could be limited in Q. pyrenaica if it maintains a photoperiod control over the onset of xylogenesis.
机译:在地中海山脉中,Pinus Sylvestris L.预计通过更多的耐旱性等物种,如亚地中海栎属Pyrenaica Willd。了解环境因素如何驱动树生理学和候选,因此是评估改变气候条件对这些物种性能的影响,最终是它们的分布。我们比较了Q.Pyrenaica和P.Sylvestris的山脉和叶片候选和叶片气体交换在西班牙中部的高度边界,并评估了所涉及的环境变量。结果表明,P.Sylvestris Cambial Paphology对天气状况更敏感(在生长季节结束时发病和水赤字的温度)比Q. Pyrenaica。另一方面,Q.Pyrenaica Cambial和叶片候选通过光周期和温度同步和驱动。 Pinus Sylvestris表现出比Q.Pyrenaica的光合氮气使用效率和高度的内在水利用效率高,因为夏季干燥条件较小的气孔控制,尽管其较少的午间叶子水势。这些候生气交换反应证据对Sylvestris的干旱比Q. Pyrenaica的促进敏感性更强,因此可能在预测的繁殖和干旱事件的强度的预测增加下对P. Sylvestris进行竞争优势。另一方面,两种物种都可以通过先进的候选可以受益于较温暖的弹簧,尽管这种效果可以限制在Q.Pyrenaica中,如果它在Xyloyesis的开始上保持光周期控制。

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