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Recovery of Physiological Traits in Saplings of Invasive Bischofia Tree Compared with Three Species Native to the Bonin Islands under Successive Drought and Irrigation Cycles

机译:在连续干旱和灌溉周期下入侵的比绍夫树幼树与波宁群岛的三种原生树种的生理性状恢复

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摘要

Partial leaf shedding induced by hydraulic failure under prolonged drought can prevent excess water consumption, resulting in delayed recovery of carbon productivity following rainfall. To understand the manner of water use of invasive species in oceanic island forests under a fluctuating water regime, leaf shedding, multiple physiological traits, and the progress of embolism in the stem xylem under repeated drought-irrigation cycles were examined in the potted saplings of an invasive species, Bischofia javanica Blume, and three endemic native species, Schima mertensiana (Sieb. Et Zucc,) Koitz., Hibiscus glaber Matsum, and Distylium lepidotum Nakai, from the Bonin Islands, Japan. The progress of xylem embolism was observed by cryo-scanning electron microscopy. The samples exhibited different processes of water saving and drought tolerance based on the different combinations of partial leaf shedding involved in embolized conduits following repeated de-rehydration. Predawn leaf water potential largely decreased with each successive drought-irrigation cycle for all tree species, except for B. javanica. B. javanica shed leaves conspicuously under drought and showed responsive stomatal conductance to VPD, which contributed to recover leaf gas exchange in the remaining leaves, following a restored water supply. In contrast, native tree species did not completely recover photosynthetic rates during the repeated drought-irrigation cycles. H. glaber and D. lepidotum preserved water in vessels and adjusted leaf osmotic rates but did not actively shed leaves. S. mertensiana exhibited partial leaf shedding during the first cycle with an osmotic adjustment, but they showed less responsive stomatal conductance to VPD. Our data indicate that invasive B. javanica saplings can effectively use water supplied suddenly under drought conditions. We predict that fluctuating precipitation in the future may change tree distributions even in mesic or moist sites in the Bonin Islands.
机译:在长期干旱下水力衰竭引起的部分叶子脱落可以防止过多的水消耗,从而导致降雨后碳生产率的恢复延迟。为了了解在水势波动的情况下海洋岛屿森林中入侵物种的水分利用方式,研究了在反复干旱灌溉周期下叶片脱落,多种生理特性以及茎木质部栓塞的进展情况。外来入侵物种Bischofia javanica Blume和来自日本波宁群岛的三种特有本地物种Schima mertensiana(Sieb。Et Zucc,)Koitz。,Hibiscus glaber Matsum和Distylium lepidotum Nakai。冷冻扫描电子显微镜观察到木质部栓塞的进展。基于反复脱水后栓塞导管中涉及的部分叶片脱落的不同组合,样品表现出不同的节水和耐旱过程。除爪哇芽孢杆菌外,所有树种的每个连续干旱灌溉周期都使黎明前叶片水势大大降低。 B. javanica在干旱下显着脱落,对VPD显示出气孔电导响应,这有助于恢复供水后在其余叶片中恢复叶片气体交换。相反,在反复的干旱灌溉周期中,本地树种无法完全恢复光合速率。 H. glaber和D. lepidotum保留了容器中的水分,并调节了叶的渗透率,但没有主动脱落。 S. mertensiana在第一个周期内表现出部分叶片脱落,并进行了渗透调节,但对VPD的气孔导度响应较小。我们的数据表明,入侵的非洲爪哇树苗可以有效利用干旱条件下突然供应的水。我们预测,未来降雨的波动可能会改变树木的分布,即使在波宁群岛的湿地或湿地中也是如此。

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