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Boron: Functions and Approaches to Enhance Its Availability in Plants for Sustainable Agriculture

Boron (B) is an essential trace element required for the physiological functioning of higher plants. B deficiency is considered as a nutritional disorder that adversely affects the metabolism and growth of plants. B is involved in the structural and functional integrity of the cell wall and membrane...

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Autores principales: Shireen, Fareeha, Nawaz, Muhammad Azher, Chen, Chen, Zhang, Qikai, Zheng, Zuhua, Sohail, Hamza, Sun, Jingyu, Cao, Haishun, Huang, Yuan, Bie, Zhilong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6073895/
https://www.ncbi.nlm.nih.gov/pubmed/29937514
http://dx.doi.org/10.3390/ijms19071856
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author Shireen, Fareeha
Nawaz, Muhammad Azher
Chen, Chen
Zhang, Qikai
Zheng, Zuhua
Sohail, Hamza
Sun, Jingyu
Cao, Haishun
Huang, Yuan
Bie, Zhilong
author_facet Shireen, Fareeha
Nawaz, Muhammad Azher
Chen, Chen
Zhang, Qikai
Zheng, Zuhua
Sohail, Hamza
Sun, Jingyu
Cao, Haishun
Huang, Yuan
Bie, Zhilong
author_sort Shireen, Fareeha
collection PubMed
description Boron (B) is an essential trace element required for the physiological functioning of higher plants. B deficiency is considered as a nutritional disorder that adversely affects the metabolism and growth of plants. B is involved in the structural and functional integrity of the cell wall and membranes, ion fluxes (H(+), K(+), PO(4)(3−), Rb(+), Ca(2+)) across the membranes, cell division and elongation, nitrogen and carbohydrate metabolism, sugar transport, cytoskeletal proteins, and plasmalemma-bound enzymes, nucleic acid, indoleacetic acid, polyamines, ascorbic acid, and phenol metabolism and transport. This review critically examines the functions of B in plants, deficiency symptoms, and the mechanism of B uptake and transport under limited B conditions. B deficiency can be mitigated by inorganic fertilizer supplementation, but the deleterious impact of frequent fertilizer application disrupts soil fertility and creates environmental pollution. Considering this, we have summarized the available information regarding alternative approaches, such as root structural modification, grafting, application of biostimulators (mycorrhizal fungi (MF) and rhizobacteria), and nanotechnology, that can be effectively utilized for B acquisition, leading to resource conservation. Additionally, we have discussed several new aspects, such as the combination of grafting or MF with nanotechnology, combined inoculation of arbuscular MF and rhizobacteria, melatonin application, and the use of natural and synthetic chelators, that possibly play a role in B uptake and translocation under B stress conditions.
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spelling pubmed-60738952018-08-13 Boron: Functions and Approaches to Enhance Its Availability in Plants for Sustainable Agriculture Shireen, Fareeha Nawaz, Muhammad Azher Chen, Chen Zhang, Qikai Zheng, Zuhua Sohail, Hamza Sun, Jingyu Cao, Haishun Huang, Yuan Bie, Zhilong Int J Mol Sci Review Boron (B) is an essential trace element required for the physiological functioning of higher plants. B deficiency is considered as a nutritional disorder that adversely affects the metabolism and growth of plants. B is involved in the structural and functional integrity of the cell wall and membranes, ion fluxes (H(+), K(+), PO(4)(3−), Rb(+), Ca(2+)) across the membranes, cell division and elongation, nitrogen and carbohydrate metabolism, sugar transport, cytoskeletal proteins, and plasmalemma-bound enzymes, nucleic acid, indoleacetic acid, polyamines, ascorbic acid, and phenol metabolism and transport. This review critically examines the functions of B in plants, deficiency symptoms, and the mechanism of B uptake and transport under limited B conditions. B deficiency can be mitigated by inorganic fertilizer supplementation, but the deleterious impact of frequent fertilizer application disrupts soil fertility and creates environmental pollution. Considering this, we have summarized the available information regarding alternative approaches, such as root structural modification, grafting, application of biostimulators (mycorrhizal fungi (MF) and rhizobacteria), and nanotechnology, that can be effectively utilized for B acquisition, leading to resource conservation. Additionally, we have discussed several new aspects, such as the combination of grafting or MF with nanotechnology, combined inoculation of arbuscular MF and rhizobacteria, melatonin application, and the use of natural and synthetic chelators, that possibly play a role in B uptake and translocation under B stress conditions. MDPI 2018-06-24 /pmc/articles/PMC6073895/ /pubmed/29937514 http://dx.doi.org/10.3390/ijms19071856 Text en © 2018 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Review
Shireen, Fareeha
Nawaz, Muhammad Azher
Chen, Chen
Zhang, Qikai
Zheng, Zuhua
Sohail, Hamza
Sun, Jingyu
Cao, Haishun
Huang, Yuan
Bie, Zhilong
Boron: Functions and Approaches to Enhance Its Availability in Plants for Sustainable Agriculture
title Boron: Functions and Approaches to Enhance Its Availability in Plants for Sustainable Agriculture
title_full Boron: Functions and Approaches to Enhance Its Availability in Plants for Sustainable Agriculture
title_fullStr Boron: Functions and Approaches to Enhance Its Availability in Plants for Sustainable Agriculture
title_full_unstemmed Boron: Functions and Approaches to Enhance Its Availability in Plants for Sustainable Agriculture
title_short Boron: Functions and Approaches to Enhance Its Availability in Plants for Sustainable Agriculture
title_sort boron: functions and approaches to enhance its availability in plants for sustainable agriculture
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6073895/
https://www.ncbi.nlm.nih.gov/pubmed/29937514
http://dx.doi.org/10.3390/ijms19071856
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