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

机译:硼:提高可持续农业植物中硼的可用性的功能和方法

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摘要

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+, PO43−, Rb+, Ca2+) 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.
机译:硼(B)是高等植物生理功能所需的必需微量元素。 B缺乏症被认为是对植物的代谢和生长造成不利影响的营养失调。 B与细胞壁和细胞膜的结构和功能完整性,离子通量(H + ,K + ,PO4 3 − ,跨膜的Rb + ,Ca 2 + ),细胞分裂和伸长,氮和碳水化合物代谢,糖转运,细胞骨架蛋白和质膜结合酶,核酸,吲哚乙酸,多胺,抗坏血酸和苯酚的代谢和运输。这项审查严格审查了B在植物中的功能,缺乏症状以及在有限的B条件下B吸收和运输的机制。硼的缺乏可以通过添加无机肥料来缓解,但是频繁施用肥料的有害影响会破坏土壤肥力并造成环境污染。考虑到这一点,我们总结了有关替代方法的可用信息,例如根结构修饰,嫁接,生物刺激剂(菌根真菌(MF)和根瘤菌)的应用以及纳米技术,这些技术可以有效地用于B的获取,从而节省资源。 。此外,我们已经讨论了几个新的方面,例如嫁接或MF与纳米技术的结合,丛枝MF和根瘤菌的联合接种,褪黑激素的应用以及天然和合成螯合剂的使用,这些可能在B的吸收和转运中起作用在B压力条件下。

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