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首页> 外文期刊>Tree Physiology >Functional xylem anatomy of aspen exhibits greater change due to insect defoliation than to drought
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Functional xylem anatomy of aspen exhibits greater change due to insect defoliation than to drought

机译:昆虫脱叶的功能性木质蛋白解剖学表现出昆虫脱落而大于干旱的更大变化

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The study of tree rings can reveal long-term records of a tree's response to the environment. This dendroecological approach, when supplemented with finer-scale observations of the xylem anatomy, can provide novel information about a tree's year-to-year anatomical and hydraulic adjustments. Here we use this method in aspen (Populus tremuloides Michx.) to identify xylem response to drought and insect defoliation. Surprisingly, we found that precipitation influenced vessel diameter mostly in the trees' youth, while this correlation was less pronounced at maturity. This is likely due to a reduction in stress the stand experiences as it ages, and reflects an ability to mediate drought stress as trees mature. Defoliation events caused consistent and profound changes in fiber anatomy likely leading to reduced structural support to vessels. We therefore expect that in years of defoliation trees may be vulnerable to drought-induced cavitation when leaf area recovers. This study highlights how the inclusion of cellular level measurements in tree ring studies provides additional information on how stress events may alter tree functioning through alterations in structure.
机译:对树圈的研究可以揭示树对环境的响应的长期记录。这种分型方法,当补充了Xylem解剖学的更精细的观察时,可以提供关于树的年度解剖和水力调整的新颖信息。在这里,我们将这种方法在Aspen(Populus Trowuloides Michx。)以识别对干旱和昆虫脱液的反应。令人惊讶的是,我们发现降水影响了血管直径,大多数在树木中的青少年,而这种相关性在成熟时不太明显。这可能是由于压力降低了立场,因为它的年龄段,并反映了作为树木成熟的干旱压力的能力。落叶事件导致光纤解剖结构的一致和深刻变化可能导致对船只的结构支撑减少。因此,我们期望多年来,在叶面积恢复时,多年来可能易受干旱诱导的空化。本研究突出了树环研究中的蜂窝水平测量如何提供有关应力事件如何改变结构的额外信息,通过结构的改变来改变树木。

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