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首页> 外文期刊>Forest Ecology and Management >Acclimation and adaptation of leaf photosynthesis, respiration and phenology to climate change: A 30-year Larix gmelinii common-garden experiment
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Acclimation and adaptation of leaf photosynthesis, respiration and phenology to climate change: A 30-year Larix gmelinii common-garden experiment

机译:适应和适应叶片光合作用,呼吸和候选气候变化:30年落叶松奈里尼岛共用园林实验

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摘要

Acclimation and adaptation of leaf physiology and phenology to climate change have attracted substantial attention from forest ecology and global change science communities, but partitioning these two components in situ is challenging especially for adult trees. Here, we examined seasonal variations in leaf photosynthesis, respiration and phonology of Dahurian larch (Larix gmelinii) trees that were originated from six provenances and grown in a common garden for 30 years; and we partitioned these variations into genetic adaptation and phenotypic acclimation. Our results showed that both area-based maximum net photosynthetic rate (Pmax-a) and dark respiratory rate (R-d) differed significantly among the provenances, and co-varied with leaf nitrogen concentration and the environmental factors of the seed-source sites, which provides evidence for genetic adaptation of the leaf physiology to climate change. However, the leaf phenology (i.e., leaf unfolding and shedding) of the six provenances converged in the common garden, and was correlated with the local temperature, suggesting phenotypic acclimation of the leaf phenology to local habitat. The provenance differences in the Pmax-a and R-d varied with the growing stages, suggesting that measuring time at different growing stages can affect the comparison of the Pmax-a and R-d among the provenances. The temporal patterns of the Pmax-a, R-d and their correlations with the seasonal changes in the local temperature were indicative of a consistent thermal acclimation, but the magnitude and direction of the acclimation varied with temporal scale and provenance. The trees originated from cold habitats tended to have less thermal acclimation of Pmax-a and R-d to local temperature, implying that the trees from the cold edge of the larch range likely exhibit less responses to climate warming. Collectively, the acclimation and adaptation of the leaf physiology and phenology of Dahurian larch to climate change are of significance in managing and modeling responses of this important species in the Eurasian boreal forests to climate change.
机译:适应和适应气候变化的叶生理学和候选人士引起了森林生态和全球变革科学社区的大量关注,但局面划分这两个组成部分挑战,特别是成年树木。在这里,我们检查了叶片光合作用,令人兴奋的落叶松(Larix Gmelinii)树的季节性变化,这些树木起源于六种杂草,并在共同的花园中生长30年;我们将这些变化分为基因适应和表型适应。我们的研究结果表明,杂散的基于面积的最大净光合速率(PMAX-A)和暗呼吸速率(RD)在种类中有显着不同,并且与叶片氮浓度和种子源地点的环境因素共同不同,提供叶片生理到气候变化的遗传适应遗传适应证据。然而,六种杂种中含有六种杂种的叶子候选(即叶片展开和脱落),与局部温度相关,表明叶片候选的局部栖息地对局部栖息地的表型适应。 PMAX-A和R-D的差异随着越来越多的阶段而变化,表明在不同生长阶段的测量时间可以影响PMAX-A和R-D的比较。 PMAX-A,R-D的时间模式及其与局部温度的季节变化的相关性表示一致的热量适应,但适应的幅度和方向随时间尺度和出处而变化。源自冷栖息地的树木往往具有较少的热量适应PMAX-A和R-D至局部温度,这意味着落叶松的冷缘的树木可能会对气候变暖的反应较少。统称和改编Dahurian Larch叶片生理学和候选气候变化对欧亚北方森林中这一重要物种对气候变化的响应具有重要意义。

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