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首页> 外文期刊>Tree Physiology >Root temperature drives winter acclimation of shoot water relations in Cryptomeria japonica seedlings.
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Root temperature drives winter acclimation of shoot water relations in Cryptomeria japonica seedlings.

机译:根温度驱动冬季日本柳杉幼苗的茎水关系适应。

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摘要

In many temperate evergreen plant species, reductions in turgor loss point of leaves ( Psi tlp) and leaf osmotic potential at full turgor ( pi sat) occur from late summer to winter. To test the hypothesis that this seasonal change in leaf water relations is driven by root temperature, we manipulated the temperature of the roots and shoots of Cryptomeria japonica D. Don seedlings separately. Whole-plant warming diminished the seasonal changes in shoot water relations observed in the control plants, whereas shoot warming did not. Compared with the controls, root warming diminished the change in Psi tlp but not in pi sat, whereas cooling accelerated the seasonal changes in shoot water relations. These results indicate that: (1) temperature responses of roots are involved in the seasonal changes in Psi tlp from late summer to winter; and (2) root temperature is partly responsible for the simultaneous changes in pi sat. Whole-plant cooling caused increased root hydraulic resistance, suggesting that seasonal changes in shoot water relations represent adaptive responses to increased root hydraulic resistance at low root temperatures..
机译:在许多温带常绿植物物种中,从夏末到冬季,叶片的膨大损失点(Psi tlp)降低,而全膨化(pi sat)下的叶片渗透势降低。为了检验叶水关系的这种季节性变化是由根温度驱动的假设,我们分别操纵了日本柳杉和唐草幼苗的根和芽的温度。全株增温减少了在对照植物中观察到的枝水关系的季节性变化,而枝增温却没有。与对照相比,根系增温减少了Psi tlp的变化,但降低了pi sat的变化,而降温则加速了枝水关系的季节性变化。这些结果表明:(1)从夏末到冬季,根的温度响应与Psi tlp的季节变化有关; (2)根温是pi sat同时变化的部分原因。整株植物的冷却导致根系水力阻力增加,这表明枝条水分关系的季节性变化代表在低根系温度下对增加的根系水力阻力的适应性响应。

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