Zinc Hyperaccumulation in Plants: A Review

Author:

Balafrej HabibaORCID,Bogusz Didier,Triqui Zine-El AbidineORCID,Guedira Abdelkarim,Bendaou Najib,Smouni AbdelazizORCID,Fahr MounaORCID

Abstract

Zinc is an essential microelement involved in many aspects of plant growth and development. Abnormal zinc amounts, mostly due to human activities, can be toxic to flora, fauna, and humans. In plants, excess zinc causes morphological, biochemical, and physiological disorders. Some plants have the ability to resist and even accumulate zinc in their tissues. To date, 28 plant species have been described as zinc hyperaccumulators. These plants display several morphological, physiological, and biochemical adaptations resulting from the activation of molecular Zn hyperaccumulation mechanisms. These adaptations can be varied between species and within populations. In this review, we describe the physiological and biochemical as well as molecular mechanisms involved in zinc hyperaccumulation in plants.

Publisher

MDPI AG

Subject

Plant Science,Ecology,Ecology, Evolution, Behavior and Systematics

Reference182 articles.

1. Marschner’s Mineral Nutrition of Higher Plants;Marschner,2011

2. Arbuscular mycorrhizal influence on zinc nutrition in crop plants – A meta-analysis

3. Plant nutrition status, yield and quality of satsuma mandarin (Citrus unshiu Marc.) under soil application of Fe-EDDHA and combination with zinc and manganese in calcareous soil

4. Zinc Metalloenzymes in Plants;Castillo-González;Interciencia,2018

5. Zinc in crop production and interaction with phosphorus;Mousavi;Aust. J. Basic and Appl. Sci.,2011

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