P. juliflora (Swartz) DC植物分析述评。

Surendra Argal, W. Bhat, M. A. Ahanger, R. Agarwal
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引用次数: 2

摘要

黄花拟豆(Sw.)直流。是一种外来植物,具有在干旱、盐碱、极端土壤pH值和重金属胁迫下生长的潜力,这是其他植物生长和生产力受到最不利影响的胁迫条件。黄花草(Sw.)直流。具有不同生物活性的植物化学物质。然而,外来物种的入侵对世界各地的生态系统功能、生物多样性、水资源供应和自然景观造成了威胁。本报告主要介绍了胡杨不同发育阶段的植物化学分析和酶学分析。直流。多种植物化学物质和酶,包括那些参与抗氧化和自由基清除活性的物质,有助于植物在不利条件下的生存。与抗氧化剂活性有关的酶的活性在老叶片中更大,这可能有助于植物抵抗氧化胁迫的有害影响,随着年龄的增长而增加。然而,胡杨次生代谢物(单宁、总酚和植酸)的积累。直流。在幼叶和节间比老叶更大。叶片和节间的钠、钙含量随年龄增长而增加,钾、氯含量随年龄增长而减少。绿豆草可以帮助去除钠和氯化物,从而使其在改善/开垦这些土壤中有用,因为它可以生长在富含这些盐的土壤中。通过改变控制其表达的调节过程来操纵抗氧化系统可能提供一种额外的改进手段。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Note on Phyto Analysis of P. juliflora (Swartz) DC.
Prosopis juliflora (Sw.) DC. is an exotic plant having potential to grow in drought, salinity, extremes of soil pH and heavy metal stress, that is the stress conditions in which the growth and productivity of other plants are most adversely affected. P. juliflora (Sw.) DC. is having phytochemicals with varying biological activities. Nevertheless, invasive alien species pose a threat to ecosystem functioning, biodiversity, water availability and beauty of natural areas over the world. The current report encompasses phytochemical analysis and enzyme assay at different developmental stages of P. juliflora (Sw.) DC. A variety of phytochemicals and enzymes including those involved in antioxidant and free-radical scavenging activities contribute to the survival of the plant under adverse conditions. Activity of the enzymes involved in antioxidants activity was greater in older leaves probably helping the plants withstanding the deleterious effects of oxidative stresses increasing with age. However, accumulation of secondary metabolites (tannins, total phenols and phytic acid) in P. juliflora (Sw.) DC. is greater in younger leaves and internodes in comparison to older ones. Sodium and calcium percentage increases, whereas potassium and chloride decreases with age in leaves as well as internodes. P. juliflora can help for the removal of sodium and chloride and therefore making it useful in improvement/reclamation of such soils, as it can grow in soils rich in such salts. Manoeuvring the antioxidant systems by altering the regulatory processes controlling their expression may provide an additional means of improvement.
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