Abstract

Boron is an essential plant micronutrient taken up via the roots mostly in the form of boric acid. Its important role in plant metabolism involves the stabilization of molecules with cis-diol groups. The element is involved in the cell wall and membrane structure and functioning; therefore, it participates in numerous ion, metabolite, and hormone transport reactions. Boron has an extremely narrow range between deficiency and toxicity, and inadequate boron supply exhibits a detrimental effect on the yield of agricultural plants. The deficiency problem can be solved by fertilization, whereas soil boron toxicity can be ameliorated using various procedures; however, these approaches are costly and time-consuming, and they often show temporary effects. Plant species, as well as the genotypes within the species, dramatically differ in terms of boron requirements; thus, the available soil boron which is deficient for one crop may exhibit toxic effects on another. The widely documented intraspecies genetic variability regarding boron utilization efficiency and toxicity tolerance, together with the knowledge of the physiology and genetics of boron, should result in the development of efficient and tolerant varieties that may represent a long-term sustainable solution for the problem of inadequate or excess boron supply.

Highlights

  • Plants require essential macro and micronutrients for normal growth and development

  • Boron (B) is a chemical element belonging to group 13 of the periodic system of elements (III A according to Chemical Abstracts Service (CAS) and III B according to old International Union of Pure and Applied Chemistry (IUPAC) nomenclature), displaying metallic and non-metallic properties, with the capability of producing both acids and bases

  • Borate transporters (BOR) functioning under boron deficiency were firstly determined in Arabidopsis [93,99,100,101], and its homologues were reported for rice, wheat, maize, and other plant species [102,103,104,105,106]

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Summary

Introduction

Plants require essential macro and micronutrients for normal growth and development. The inadequate supply of a nutrient, whether leading to deficiency or toxicity, affects plant growth and results in yield and quality losses in agricultural plants. This review deals with boron as a unique chemical element and plant micronutrient

Boron Is an Essential Micronutrient for Higher Plants
Roles of Boron in Plant Metabolism
Boron Uptake
Sources of Boron
Soil Boron
Alleviation of the Effects of Boron Deficiency and Toxicity
Boron Deficiency
Boron Toxicity
Findings
Summary
Full Text
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