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首页> 外文期刊>Journal of Science and Technology of Greenhouse Culture >Study of beet bagasse effect on biochemical characteristics, photosynthetic pigments and antioxidant activity of leaf extracts of peppermint (Mentha piperita L.) under drought stress conditions
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Study of beet bagasse effect on biochemical characteristics, photosynthetic pigments and antioxidant activity of leaf extracts of peppermint (Mentha piperita L.) under drought stress conditions

机译:甜菜渣对干旱胁迫下薄荷叶提取物的生化特性,光合色素和抗氧化活性的影响

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摘要

To study the effects of drought stress and soil application of beet bagasse on biochemical characteristics, photosynthetic pigments content and antioxidant activity of peppermint (Mentha piperita L.) leaf, a pot experiment was conducted in 2015 at Ferdowsi University of Mashhad. The experiment was carried out as a factorial experiment based on completely randomized design with four treatments of drought stress (30, 50, 70 and 90% of field capacity) and three levels of soil application of beet bagasse (0, 10, 20% by volume) in 3 replications. The results showed that the highest amounts of chlorophyll a, chlorophyll index, ratio of chlorophyll a/b, carotenoid and relative water content were obtained in 90% stress of field capacity and 20% application of beet bagasse, so that increasing stress levels reduced the aforementioned characteristics. Furthermore, the application of bagasse created significant changes in the above characteristics. The highest contents of chlorophyll b, total chlorophyll, antioxidant activity and electrolyte leakage were obtained in 30% drought stress of field capacity and without use of sugar beet bagasse treatment, so that was equal to 47/19, 49/48 mg/kg fresh weight, 91/2% and 75/93%, respectively. Application of beet bagasse at this level of drought stress caused a significant reduction in these traits. Based on the results obtained, it is clear that application of beet bagasse in the medium due to high water absorption and retention, improves biochemical traits and photosynthetic pigments in the peppermint.
机译:为了研究干旱胁迫和甜菜渣在土壤中的施用对薄荷(Mentha piperita L.)叶片生化特性,光合色素含量和抗氧化活性的影响,于2015年在马什哈德的Ferdowsi大学进行了盆栽试验。该实验是基于完全随机设计的因子分析实验,采用四种处理干旱胁迫(田间持水量的30%,50%,70%和90%)和三种水平的甜菜蔗渣施肥(0、10、20%)卷),共3次复制。结果表明,在90%的田间胁迫和20%的甜菜蔗渣施用量下,获得了最高量的叶绿素a,叶绿素指数,叶绿素a / b比率,类胡萝卜素和相对水含量,因此增加胁迫水平降低了前述特征。此外,蔗渣的应用在上述特性上产生了重大变化。在不使用糖用甜菜蔗渣处理的30%干旱胁迫下,获得最高的叶绿素b含量,总叶绿素,抗氧化活性和电解质渗漏,分别等于47 / 19、49 / 48 mg / kg新鲜重量分别为91/2%和75/93%。在此干旱压力水平下使用甜菜蔗渣导致这些性状的显着降低。根据获得的结果,很明显,甜菜蔗渣在培养基中的应用由于其高的吸水率和保水性而改善了薄荷的生化特性和光合色素。

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