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Agronomic and physiological response of giant reed (Arundo donax L.) to soil salinity

机译:芦苇对土壤盐分的农艺和生理响应

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The soil salinity increase in the Mediterranean basin is one of the consequences of the climate change. The aim of this study was to evaluate the adaptability of giant reed ( Arundo donax L.) to salinity, in conditions of higher temperatures, in order to hypothesise the future use of giant reed under these conditions. The trial was carried out in pots under a permanent metal structure, open on the sides and with a clear PE on the top. Four levels of soil salinity in the range 3.3-15.5 dS m-1 were imposed. The stem number of the most stressed treatment was about 45% lower than the control and also the stem height was lower than in all other treatments. The green and yellow leaf number decreased as the soil salinity increased, and their sum was significantly lower in the two most stressed treatments. Osmotic potential of the leaf sap was not affected by salinity. Leaf water potential and stomatal conductance in the saline treatments were lower than in the control. Assimilation rate showed similar pattern of stomatal conductance. Intrinsic WUE remained almost stable until July and increased during August under the most stressful conditions. PSII photochemistry was not affected by soil salinity. Biomass yield was not different from the control until to soil ECe 12.0 dS m -1 : only the most stressed treatment (15.5 dS m -1 ) caused yield losses (50%). Tolerance threshold to salinity was 11.2 dS m-1 and the relative yield losses were 11.6% per dS m -1 .
机译:地中海盆地土壤盐分的增加是气候变化的后果之一。这项研究的目的是评估在高温条件下巨型芦苇(Arundo donax L.)对盐度的适应性,以推测在这些条件下巨型芦苇的未来用途。该试验在具有永久金属结构的花盆中进行,该花盆的侧面是敞开的,顶部是透明的PE。施加了土壤盐度的四个级别,范围为3.3-15.5 dS m-1。最受压力的处理的茎数比对照低约45%,并且茎高也低于所有其他处理。随着土壤盐分的增加,绿叶和黄叶的数量减少,而在两种压力最大的处理中,它们的总和显着降低。叶汁的渗透势不受盐度的影响。盐处理下的叶片水势和气孔导度均低于对照。同化率显示相似的气孔导度模式。在最紧张的条件下,本征WUE一直保持稳定,直到7月,在8月增加。 PSII光化学不受土壤盐分的影响。直到土壤ECe 12.0 dS m -1为止,生物质产量与对照无差异:只有最紧张的处理(15.5 dS m -1)导致产量损失(50%)。盐度的耐受阈值为11.2 dS m-1,相对产量损失为11.6%/ dS m -1。

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