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Seasonal variations in tree water use and physiology correlate with soil salinity and soil water content in remnant woodlands on saline soils

机译:盐渍土壤上残留林地中树木水分利用和生理的季节性变化与土壤盐分和土壤含水量有关

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摘要

Ecophysiological studies of remnant woodlands in saline environments are scarce. We investigated seasonal fluctuations in soil water and salinity together with leaf and branch traits (area-based maximum assimilation (Amax), foliar nitrogen, specific leaf area (SLA) and Huber value (Hv)) and sap velocities of Eucalyptus macrorhyncha at four semi-arid sites in south-eastern Australia. Summer and winter soil salinities (10 cm depth) were 15-35 dS m⁻¹ and 8-10 dS m⁻¹ respectively. Gravimetric soil water content in the upper 20 cm was 2-5% in summer and 7-23% in winter, resulting in a significant inverse correlation between soil water and soil salinity. We found significant correlations between soil conditions and plant traits and function across seasons. Soil water content was significantly correlated with foliar N, SLA, Hv and maximum sap velocity while soil salinity was significantly correlated with Amax, Hv and maximum sap velocity. Correlations indicate co-variation of soil conditions and plant physiology in response to environmental conditions such as solar radiation and vapour pressure deficit (D). E. macrorhyncha tolerates the dual stresses of high salinity and low soil water during summer. While the plants appeared unhealthy, our data show that remnant vegetation can remain functional even in close proximity to saline scalds.
机译:在盐碱环境中,剩余林地的生态生理研究很少。我们调查了土壤水分和盐分的季节性波动以及叶片和枝条特征(基于区域的最大同化(Amax),叶面氮,比叶面积(SLA)和Huber值(Hv))和四个半小时桉树的汁液流速。澳大利亚东南部的干旱地区。夏季和冬季的土壤盐度(深度为10 cm)分别为15-35 dS m -1和8-10 dS m -1。上部20 cm的重量土壤含水量在夏季为2-5%,在冬季为7-23%,这导致土壤水分与土壤盐分显着负相关。我们发现土壤条件与植物性状和季节功能之间存在显着的相关性。土壤含水量与叶面氮,SLA,Hv和最大树液速度显着相关,而土壤盐分与Amax,Hv和最大树液速度显着相关。相关性表明土壤条件和植物生理随环境条件(例如太阳辐射和蒸气压亏缺(D))的变化而变化。夏季,E。macrorhyncha耐受高盐度和低土壤水分的双重胁迫。尽管这些植物看起来不健康,但我们的数据表明,即使紧邻盐渍地,残留的植被仍可以保持功能。

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