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Responses of Parameters for Electrical Impedance Spectroscopy and Pressure–Volume Curves to Drought Stress in Pinus bungeana Seedlings

机译:电阻抗光谱和压力体积曲线参数的响应在Pinus Bungeana幼苗中干旱胁迫

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Background and Objectives: Drought occurs more frequently in Northern China with the advent of climate change, which might increase the mortality of tree seedlings after afforestation due to hydraulic failure. Therefore, investigating water relations helps us understand the drought tolerance of tree seedlings. Electrical impedance spectroscopy (EIS) is widely used to assess the responses of plant tissues to stress factors and may potentially reveal the water relations of cells. The aim of this study is to reveal the relationships between EIS and water related parameters, produced by pressure–volume (PV) curves in lacebark pine ( Pinus bungeana Zucc. ) seedlings reacting to drought stress. Materials and Methods: Four-year-old pot seedlings were divided into three parts (0, 5, and 10 days of drought) before planting, the treated seedlings were then replanted, and finally exposed to post-planting drought treatments with the following soil relative water contents: (i) adequate irrigation (75%–80%), (ii) light drought (55%–60%), (iii) moderate drought (35%–40%), and (iv), severe drought (15%–20%). During the post-planting growth phase, the EIS parameters of needles and shoots, and the parameters of PV curves, were measured coincidently; thus, the correlations between them could be obtained. Results: The extracellular resistance ( r e ) of needles and shoots were substantially reduced after four weeks of severe post-planting drought stress. Meanwhile, the osmotic potential at the turgor-loss point (ψ tlp ) and the saturation water osmotic potential (ψ sat ) of shoots decreased after drought stress, indicating an osmotic adjustment in acclimating to drought. The highest correlations were found between the intracellular resistance ( r i ) of the shoots and ψ tlp and ψ sat . Conclusions: EIS parameters can be used as a measure of drought tolerance. The change in intracellular resistance is related to the osmotic potential of the cell and cell wall elasticity. Extracellular resistance is a parameter that shows cell membrane damage in response to drought stress in lacebark pine seedlings.
机译:背景和目标:随着气候变化的出现,北方北方的干旱发生了,这可能会增加由于液压故障导致的植树造林后树苗的死亡率。因此,调查水关系有助于我们了解树幼苗的耐旱性。电阻抗光谱(EIS)广泛用于评估植物组织对应力因子的反应,可能潜在揭示细胞的水关系。本研究的目的是揭示EIS和水相关参数之间的关系,由Lacebark Pine(PinusBungeana Zucccc.)植物中的压力体积(PV)曲线产生的关系。幼苗对干旱胁迫反应。材料和方法:在种植之前,四岁的盆栽幼苗分为三个部分(0,5和10天的干旱),然后将经过处理的幼苗重新涂覆,最后暴露于种植后的干旱治疗,具有以下土壤相对含水含量:(i)充足的灌溉(75%-80%),(ii)轻水干旱(55%-60%),(III)中等干旱(35%-40%),和(IV),严重干旱(15%-20%)。在种植后的生长阶段,针对针刺和芽的EIS参数以及PV曲线的参数,巧合;因此,可以获得它们之间的相关性。结果:经过四周的植物后干旱胁迫后,针刺和芽的细胞外阻力(R e)显着降低。同时,在干旱胁迫后,Turgor损失点(ψTLP)和饱和水渗透潜力(ψSAT)的渗透潜力降低,表明渗透到干旱方面的渗透调整。在芽的细胞内耐药性(R I)和ψTLP和ψ周围之间发现了最高的相关性。结论:EIS参数可用作耐旱性的衡量标准。细胞内抗性的变化与细胞和细胞壁弹性的渗透潜力有关。细胞外抗性是表现出伴随着Lacebark松树幼苗的干旱胁迫的细胞膜损伤的参数。

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