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首页> 外文期刊>Scientia horticulturae >The effect of soil moisture depletion on Stevia (Stevia rebaudiana Bertoni) grown in greenhouse conditions: Growth, steviol glycosides content, soluble sugars and total antioxidant capacity
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The effect of soil moisture depletion on Stevia (Stevia rebaudiana Bertoni) grown in greenhouse conditions: Growth, steviol glycosides content, soluble sugars and total antioxidant capacity

机译:土壤水分耗竭对温室条件下甜叶菊(Stevia rebaudiana Bertoni)的影响:生长,甜菊糖苷含量,可溶性糖和总抗氧化能力

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The purpose of the present study was to determine threshold values of soil moisture content for Stevia (Stevia rebaudiana Bertoni) and to evaluate the effects of drought stress on the main metabolites. of this species. For these purposes, a greenhouse experiment was carried out with four soil moisture levels and plant growth, steviol glycoside (SVglys) contents, soluble sugars and antioxidant capacity were investigated at variable soil moisture content. Irrigation was scheduled at 3, 6, 9 and 12-day irrigation intervals, based on soil moisture content at 90, 75, 60 and 45% of field capacity (FC) respectively. The results showed that soil water depletion up to 60% FC (9-day irrigation interval) had no negative effect on plant growth and leaf dry weight, whereas a significant growth reduction occurred at 45% FC (12-day irrigation interval). Similarly, the total SVglys content increased when soil moisture was depleted to 60% FC (9-day irrigation interval), but these metabolites contents decreased by 45% FC treatment. Although Stevia growth and SVglys content significantly decreased under severe drought stress (45% FC), the total antioxidant capacity and soluble sugars increased in the identical condition. The obtained results suggest that Stevia plants can grow well with a soil water content near to 60% FC, showing a good SVglys content. The Stevia tolerance to mild water stress is noteworthy, especially in water limited regions. In addition, it was found that soil water depleted to 45% FC was detrimental to Stevia in greenhouse conditions. The improvement of antioxidant capacity and soluble sugar content by soil water stress conditions could be considered as physiological and biochemical responses to a progressive drought stress in Stevia and may be an acclimation response to drought stress. (C) 2014 Elsevier B.V. All rights reserved.
机译:本研究的目的是确定甜叶菊(Stevia rebaudiana Bertoni)的土壤水分含量阈值,并评估干旱胁迫对主要代谢产物的影响。这个物种。为此,在四个土壤湿度和植物生长条件下进行了温室试验,研究了在不同土壤湿度下甜菊糖苷(SVglys)含量,可溶性糖和抗氧化能力。根据土壤含水量分别为田间持水量(FC)的90%,75%,60%和45%来安排灌溉,分别间隔3、6、9和12天。结果表明,高达60%FC(9天灌溉间隔)的土壤水分耗竭对植物生长和叶片干重没有负面影响,而45%FC(12天灌溉间隔)的土壤水分减少显着。同样,当土壤水分耗尽至60%FC(9天灌溉间隔)时,总SVglys含量增加,但是这些代谢产物的含量通过45%FC处理而降低。尽管在严重干旱胁迫下(45%FC)甜叶菊生长和SVglys含量显着下降,但在相同条件下总抗氧化能力和可溶性糖增加。获得的结果表明,在含水量接近60%FC的情况下,甜叶菊植物可以生长良好,显示出良好的SVglys含量。甜菊对轻度水分胁迫的耐受性是值得注意的,尤其是在缺水地区。此外,已发现在温室条件下,土壤水分消耗至FC的45%有害于甜叶菊。土壤水分胁迫条件下抗氧化能力和可溶性糖含量的提高可以被认为是甜菊对渐进干旱胁迫的生理和生化反应,并且可能是对干旱胁迫的适应反应。 (C)2014 Elsevier B.V.保留所有权利。

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