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Minimising toxicity of cadmium in plants-role of plant growth regulators

机译:使镉在植物中的毒性最小化-植物生长调节剂的作用

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摘要

A range of man-made activities promote the enrichment of world-wide agricultural soils with a myriad of chemical pollutants including cadmium (Cd). Owing to its significant toxic consequences in plants, Cd has been one of extensively studied metals. However, sustainable strategies for minimising Cd impacts in plants have been little explored. Plant growth regulators (PGRs) are known for their role in the regulation of numerous developmental processes. Among major PGRs, plant hormones (such as auxins, gibberellins, cytokinins, abscisic acid, jasmonic acid, ethylene and salicylic acid), nitric oxide (a gaseous signalling molecule), brassinosteroids (steroidal phytohormones) and polyamines (group of phytohormone-like aliphatic amine natural compounds with aliphatic nitrogen structure) have gained attention by agronomist and physiologist as a sustainable media to induce tolerance in abiotic-stressed plants. Considering recent literature, this paper: (a) overviews Cd status in soil and its toxicity in plants, (b) introduces major PGRs and overviews their signalling in Cd-exposed plants, (c) appraises mechanisms potentially involved in PGR-mediated enhanced plant tolerance to Cd and (d) highlights key aspects so far unexplored in the subject area.
机译:一系列的人为活动促进了包括镉(Cd)在内的无数化学污染物对全球农业土壤的富集。由于其对植物的显着毒性后果,镉已成为广泛研究的金属之一。但是,几乎没有探索使镉对植物的影响最小化的可持续策略。植物生长调节剂(PGR)以其在调节许多发育过程中的作用而闻名。在主要的植物遗传资源中,植物激素(例如植物生长素,赤霉素,细胞分裂素,脱落酸,茉莉酸,乙烯和水杨酸),一氧化氮(一种气体信号分子),油菜素固醇(甾体植物激素)和多胺(类植物激素脂族脂肪族)胺类具有脂肪族氮结构的天然化合物)已被农艺师和生理学家所关注,作为在非生物胁迫植物中诱导耐受性的可持续媒介。考虑到最近的文献,本文:(a)概述了土壤中Cd的状态及其在植物中的毒性,(b)介绍了主要的PGR,并概述了其在Cd暴露的植物中的信号传导,(c)评估了PGR介导的增强植物的潜在机制对Cd和(d)的耐受性突出了该领域迄今为止尚未探索的关键方面。

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