首页> 外文期刊>Journal of Plant Growth Regulation >Water Stress-Induced Responses in the Growth, Cuticular Wax Composition, Chloroplast Pigments and Soluble Protein Content, and Redox Metabolism of Two Genotypes of Ricinus communis L.
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Water Stress-Induced Responses in the Growth, Cuticular Wax Composition, Chloroplast Pigments and Soluble Protein Content, and Redox Metabolism of Two Genotypes of Ricinus communis L.

机译:水胁迫诱导的生长,切口蜡组合物,叶绿体颜料和可溶性蛋白质含量的反应,以及Ricinus Communis L的两种基因型的氧化还原代谢。

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摘要

The aim of this study was to investigate the physiological and biochemical responses to three different water regimes in two castor bean genotypes (BRS Energia and BRS Nordestina) with different drought tolerance. After 67 days of sowing and 28 days under different water stress levels, some growth parameters were affected by increased stress, resulting in lower height, root, and shoot biomass, leaf area, and number of mature leaves. The increase in cuticular wax load on leaves was prominent under higher water stress. Triterpene and primary alcohols were the main constituent classes identified, but their content did not change under water deficit. Changes primarily occurred in the n-alkane and fatty acid classes. Water stress caused an increase in hydrogen peroxide and malondialdehyde content, a decrease in soluble protein content, and an increase in the activity of key enzymes of the antioxidant defense system (SOD, CAT, and APX). The BRS Nordestina genotype demonstrated a more efficient protection mechanism against drought compared to BRS Energia.
机译:本研究旨在研究具有不同耐旱性的两个蓖麻基因型(BRS Energia和BRS Nordestina)对三种不同水分条件的生理生化反应。在不同水分胁迫水平下,播种67天后和播种28天后,一些生长参数受到胁迫增加的影响,导致高度、根和地上部生物量、叶面积和成熟叶片数降低。在较高水分胁迫下,叶片角质层蜡质含量显著增加。三萜和伯醇是确定的主要成分类别,但它们的含量在水分亏缺下没有变化。变化主要发生在正构烷烃和脂肪酸类中。水分胁迫导致过氧化氢和丙二醛含量增加,可溶性蛋白质含量降低,抗氧化防御系统关键酶(SOD、CAT和APX)活性增加。与BRS Energia相比,BRS Nordestina基因型表现出更有效的抗旱机制。

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