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Nickel; whether toxic or essential for plants and environment - A review

机译:镍; 无论是植物和环境有毒还是必不可少的 - 审查

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摘要

Nickel (Ni) is becoming a toxic pollutant in agricultural environments. Due to its diverse uses from a range of common household items to industrial applications, it is essential to examine Ni bioavailability in soil and plants. Ni occurs in the environment (soil, water and air) in very small concentrations and eventually taken up by plants through roots once it becomes available in soil. It is an essential nutrient for normal plant growth and development and required for the activation of several enzymes such as urease, and glyoxalase-I. Ni plays important roles in a wide range of physiological processes including seed germination, vegetative and reproductive growth, photosynthesis as well as in nitrogen metabolism. Therefore, plants cannot endure their life cycle without adequate Ni supply. However, excessive Ni concentration can lead to induce ROS production affecting numerous physiological and biochemical processes such as photosynthesis, transpiration, as well as mineral nutrition and causes phytotoxicity in plants. ROS production intensifies the disintegration of plasma membranes and deactivates functioning of vital enzymes through lipid peroxidation. This review article explores the essential roles of Ni in the life cycle of plant as well as its toxic effects in details. In conclusion, we have proposed different viable approaches for remediation of Ni-contaminated soils.
机译:镍(NI)正在农业环境中成为毒性污染物。由于其各种普通家庭物品的不同用途,因此必须检查土壤和植物中的Ni生物利用度。 Ni在非常小的浓度下发生环境(土壤,水和空气),并最终通过植物通过根部通过根部可用土壤。它是正常植物生长和发育的基本营养素,并要求激活几种酶如脲酶和乙醛酸酶-1。 NI在各种生理过程中起重要作用,包括种子萌发,营养和生殖生长,光合作用以及氮代谢。因此,植物不能在没有足够的Ni供应的情况下忍受他们的生命周期。然而,过量的Ni浓度可以导致诱导ROS产生影响许多生理和生化过程,例如光合作用,蒸腾,矿物营养,并导致植物中的植物毒性。 ROS生产加剧了血浆膜的崩解,并通过脂质过氧化失活的功能。该审查文章探讨了NI在植物生命周期中的基本作用以及其细节中的毒性效应。总之,我们提出了不同可行的治疗Ni污染土壤的可行方法。

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