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Ecophysiological response of Lippia gracilis (Verbanaceae) to duration of salt stress

机译:Lippia Gracilis(Verbanaceae)到盐胁迫持续时间的生理学响应

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The objective of this work was to investigate the effects of salinized water on Lippia gracilis by determining the ion accumulation capacity and morphophysiological changes as a function of salinity and time of exposure to stress. L. gracilis was irrigated with water containing different concentrations of salts and electrical conductivities. The analyses were conducted 25 and 50 days after stress (DAS), in leaf, stem/branches, and roots. Plant height (Hplants), basal stem diameter (lstem), and mean unitary leaf area (ULA) were determined. After that, the plant material was dried, and the total dry biomass (TDB) (in g plant(-1)), leaf dry biomass (LDB), stem dry biomass (SDB), and the roots dry biomass (RDB) were determined. Based on these data, the following variables were calculated: total leaf area (TLA) in cm(2) plant(-1); biomass allocation fraction (BAF) obtained by dividing the biomass of the stem, leaves, and roots, separately, with the total plant biomass; relative growth rate (RGR); net assimilation rate (NAR); leaf area ratio (LAR); specific leaf area (SLA); and sclerophylly index (SI). The concentrations of potassium and sodium ions were quantified by atomic absorption spectrophotometry and the chloride ion concentration was determined by argentometric titration. L. gracilis showed a variable response to salt stress as a function of time, having a considerable capacity to withstand an increasing load of toxic ions, while maintaining a positive growth rate, highlighting the potential use of the species in moderately saline environments.
机译:这项工作的目的是通过测定作为盐度的函数和暴露于应力的时间的离子积聚能力和语气生理学变化来研究盐渍化水对洛杉矶Gracilis的影响。 L.用含有不同浓度的盐和电导率的水灌溉Gracilis。分析在压力(DAS),叶片,茎/分支和根中进行25和50天。测定植物高度(磨平),基底杆直径(系统)和平均叶片区域(ULA)。之后,将植物材料干燥,总干生物量(TDB)(在G植物(-1)中),叶干生物量(LDB),茎干生物量(SDB)和根部干生物量(RDB)是决定。基于这些数据,计算下列变量:CM(2)植物中的总叶面积(TLA);通过将茎,叶子和根部的生物质分开,分别与总植物生物质分开而获得的生物质分配级分(BAF);相对生长速度(RGR);净同化率(NAR);叶面积比(LAR);特定叶面积(SLA);和硬粒指数(SI)。通过原子吸收分光光度法定量钾和钠离子的浓度,并通过现有滴定法测定氯离子浓度。 L. Gracilis表现出对盐胁迫的变量响应,具有时间的函数,具有相当大的能力,以承受增加的毒性离子负荷,同时保持阳性生长速率,突出显示在中等盐水环境中物种的潜在使用。

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