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首页> 外文期刊>Allelopathy Journal >Water stress induced physiological and biochemical changes in Piper betle L. and Ricinus communis L. plants and their effects on Spodoptera litura
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Water stress induced physiological and biochemical changes in Piper betle L. and Ricinus communis L. plants and their effects on Spodoptera litura

机译:水分胁迫诱导Pipe菜和蓖麻植物的生理生化变化及其对斜纹夜蛾的影响

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摘要

Plant responds to stresses by developing adaptive changes, which some times are complex and can be synergistically or antagonistically adjusted by the plant defense mechanisms. We studied the abiotic stress induced changes in physiological, biochemical and oxidative level reactions caused by drought stress in Piper betle L. (Piperaceae) and Ricinus communis L. (Euphorbiaceae) plants and their influence on the feeding performance of herbivore, Spodoptera litura: Under drought stress, the leaf chlorophyll and relative water content (RWC) in both test plants were decreased than controls. In piper and castor plants, the quantitative analysis was carried out on leaf biochemicals (carbohydrates, proteins, amino acids, flavonoids and phenols) under drought conditions. The decrease in the individual phenolic acids in both plants due to stress caused by water deficit was determined using HPLC analysis. The reduced levels of primary metabolites were evident in both plants, while flavonoid content enhanced along with amino acid content in castor plants. These changes created a favorable environment for S. litura and increased the feeding rate in both drought affected castor and piper plants than their normal plants. Increased levels of antioxidative enzymes [superoxide dismutase (SOD), peroxidase (POD) and catalase (CAT)] in leaves of P. betle and R. communis indicate their defensive and/or protective role against the ROS generated under drought conditions. It was concluded that drought conditions induced the defense responses in both P. betle and R. communis plants, which regulated the herbivore feeding performance.
机译:植物通过产生适应性变化来应对压力,适应性变化有时很复杂,并且可以通过植物防御机制协同或拮抗地进行调节。我们研究了非生物胁迫诱导的胡椒(Piper betle L.(Piperaceae)和Ricinus communis L.(Euphorbiaceae))干旱胁迫引起的生理,生化和氧化水平反应的变化及其对草食动物斜纹夜蛾摄食性能的影响:干旱胁迫下,两种试验植物的叶绿素和相对含水量(RWC)均低于对照。在块茎和蓖麻植物中,在干旱条件下对叶片生物化学物质(碳水化合物,蛋白质,氨基酸,类黄酮和酚)进行了定量分析。使用HPLC分析确定了由于缺水引起的胁迫,两种植物中的各个酚酸的减少。两种植物中初级代谢产物的含量均降低,而蓖麻植物中的类黄酮含量随氨基酸含量增加而增加。这些变化为斜纹链球菌创造了良好的环境,并增加了受干旱影响的蓖麻和块茎植物的饲喂率。甲壳虫和野菜叶片中抗氧化酶[超氧化物歧化酶(SOD),过氧化物酶(POD)和过氧化氢酶(CAT)]含量增加,表明它们对干旱条件下产生的ROS具有防御和/或保护作用。得出的结论是,干旱条件诱导了拟南芥和共生植物的防御反应,从而调节了草食动物的摄食性能。

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