首页> 外文期刊>Journal of Science and Technology of Greenhouse Culture >Response of quantitative and physiological parameters of stevia (Stevia rebaudiana Bertoni) medicinal plant to salinity stress under controlled conditions
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Response of quantitative and physiological parameters of stevia (Stevia rebaudiana Bertoni) medicinal plant to salinity stress under controlled conditions

机译:甜叶菊药用植物的数量和生理参数在控制条件下对盐分胁迫的响应

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The present study was aimed to investigate the response of the growth and physiological parameters of stevia (Stevia rebaudiana Bertoni) medicinal plant to salinity stress using a pot experiment in 2014. Ten levels of salt stress (0, 30, 60, 90, 120, 150, 180, 210, 240 and 270 mM of NaCl) were arranged in randomized complete block design with three replicates. Regression analysis of data indicated that some measured parameters such as stem diameter, plant height, green leaf number in plant, relative water content (RWC), chlorophyll a, b, leaf greening (SPAD value), leaf fresh weight, root and shoot dry weights linearly decreased when NaCl amount increased in the growing media. Green leaf number in plant and leaf greening (SPAD value) were more sensitive than other mentioned parameters. However, the response of some determined parameters such as electrolyte leakage, chlorophyll a/b ratio, stem, root, shoot and total fresh weights along with leaf, stem and shoot fresh weights were described by a segmented model. In conclusion, stevia plant could tolerate salt stress up to 80 mM and then its growth and physiological parameters significantly and adversely affected. Results, also, revealed that physiological parameters were more sensitive to salt stress than morphological parameters.
机译:本研究旨在通过2014年的盆栽试验研究甜叶菊(Stevia rebaudiana Bertoni)药用植物的生长和生理参数对盐分胁迫的响应。十种盐胁迫水平(0、30、60、90、120,将150、180、210、240和270 mM NaCl安排在具有三个重复的随机完整区组设计中。数据的回归分析表明,一些测得的参数如茎直径,株高,植物中的绿叶数,相对含水量(RWC),叶绿素a,b,叶绿化(SPAD值),叶鲜重,根和茎干当生长培养基中的氯化钠含量增加时,重量线性下降。植物中的绿叶数和叶片绿化(SPAD值)比其他提到的参数更敏感。但是,通过分段模型描述了一些确定的参数的响应,例如电解质泄漏,叶绿​​素a / b比率,茎,根,枝条和总鲜重以及叶,茎和枝条的鲜重。总之,甜叶菊植物可以耐受高达80 mM的盐胁迫,然后对其生长和生理参数产生显着不利影响。结果还表明,生理参数对盐胁迫的敏感性高于形态参数。

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