...
首页> 外文期刊>Tree Physiology >Contrasting physiological responses to Mediterranean climate variability are revealed by intra-annual density fluctuations in tree rings of Quercus ilex L. and Pinus pinea L.
【24h】

Contrasting physiological responses to Mediterranean climate variability are revealed by intra-annual density fluctuations in tree rings of Quercus ilex L. and Pinus pinea L.

机译:对地中海气候变异性的对比生理反应是通过栎(Quercus Ilex L.和Pinus Pinea L.)的树束中的年度密度波动进行了对比的气候变异性。

获取原文
获取原文并翻译 | 示例

摘要

Mixed forests of Quercus ilex L. and Pinus pinea L. are widely found throughout the Mediterranean Basin, being representative of two co-existing functional types: evergreen-sclerophyllous drought-resistant species and Mediterranean-adapted drought-avoidant conifers. Their contrasting physiological strategies to cope with water deficit influence all the processes regulating their growth such as wood formation, leading to peculiar tree-ring anatomical features such as intra-annual density fluctuations (IADFs). Intra-annual density fluctuations are abrupt changes in wood anatomical traits within a tree ring, appearing as latewood-like cells within earlywood or earlywood-like cells within latewood, and are frequently found in Mediterranean species as a response to seasonal climate changes. In this study, we characterized the anatomical traits and composition of carbon and oxygen stable isotopes in IADFs occurring in tree rings of Q. ilex and P. pinea trees co-existing at a same site in Southern Italy, in order to link their xylem hydraulic properties with the related physiological mechanisms. The relationships between IADF occurrence and seasonal mean temperature and total precipitation were investigated, with the aim of assessing whether they can be used as indicators of species-specific responses to intra-annual climate fluctuations. Results show that IADF period of formation is during autumn months for both species. The influence of climate on IADF occurrence was found to be an indicator of species-specific response to climate: an increased stomatal conductance associated to the formation of a wood safer against embolism was found in Q. ilex, while a tighter stomatal control associated to a more efficient wood with regard to hydraulic conductivity occurred in P. pinea. Moreover, the assessment of the influence of climate on IADF occurrence indicates that, with rising temperatures, Q. ilex would form fewer IADFs compared with P. pinea. Other study cases are desirable to assess the suggested forecasts and to link the plasticity of the species to form IADFs with their effective adaptive capability to compete for resources, and to explain how it may influence future population development.
机译:Quercus Ilex L.和Pinus Pinea L的混合森林在整个地中海盆地中广泛地发现,代表了两种共存功能类型:常绿型耐旱性抗旱物种和地中海适应的干旱避税针叶树。它们对造影的生理策略应对水资源缺陷会影响调节其诸如木材形成等生长的所有过程,导致特殊的树木束缚特征,如年度密度波动(IADF)。年内密度波动的突然变化在树圈内的木材解剖学性状,作为胶水内的早期涂料或早期细胞内的乳胶状细胞,并且在地中海物种中经常被发现作为对季节性气候变化的反应。在这项研究中,我们在Q.Ilex和P.Inea树中的IADFS中的碳和氧稳定同位素的碳和氧稳定同位素的构成特征在于意大利南部的同一地点,以将其木质液压连结具有相关生理机制的性质。研究了IADF发生与季节性平均温度和总降水之间的关系,目的是评估它们是否可以用作对年度气候波动的物种特异性响应的指标。结果表明,两种物种的秋季地区的IADF期。将气候对IADF发生的影响成为对气候的特异性响应的指标:在Q.Ilex中发现了与形成木材更安全的木材的气孔导度增加,而与A相关的更严格的气孔控制。关于Pinea的液压导电性更有效的木材。此外,对气候对IADF发生的影响的评估表明,随着温度上升,Q.Ilex与P.Pinea相比,ILEX将形成更少的IADFS。其他研究案例是可取的,以评估所提出的预测,并将物种的可塑性与其有效适应性能力联系起来,以竞争资源,并解释如何影响未来的人口发展。

著录项

相似文献

  • 外文文献
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号