硅,一种准必需元素:土壤中的含量、肥料制度、最佳用量以及植物的吸收量

IF 6.1 2区 生物学 Q1 PLANT SCIENCES
Vandana Thakral , Gaurav Raturi , Sreeja Sudhakaran , Rushil Mandlik , Yogesh Sharma , S.M. Shivaraj , Durgesh Kumar Tripathi , Humira Sonah , Rupesh Deshmukh
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引用次数: 0

摘要

硅(Si)的重要性一直是一个争论不休的问题,因为人们认为它对大多数植物的生命周期并不重要。但在许多植物中都观察到了内源硅和补充硅的有益效果。硅在缓解植物的生物和非生物胁迫方面起着关键作用,它既是一种物理屏障,又能影响参与胁迫耐受的分子途径,因此被广泛认为是 "准必需 "元素。在土壤中,大部分硅以矿物硅酸盐的复杂形式存在,植物无法吸收。单硅酸[Si(OH)4]是土壤中唯一可被植物利用的硅形式(PAS)。植物吸收硅的能力与土壤中 PAS 的浓度呈正相关。由于许多耕地土壤往往缺乏足够的 PAS,因此在各种作物栽培系统中通过使用硅基肥料来补充硅已成为一种普遍做法。本综述概述了使用天然和化学来源的硅作为肥料、不同的硅肥施用制度,最后确定了观察植物有益效果所需的最佳硅浓度。此外,考虑到植物形态、矿物质分布和转运体表达等各种自然因素,还讨论了不同的数学模型,这些模型定义了整株植物吸收硅的矿物质动力学。这里提供的信息将进一步帮助人们加深对硅作用的理解,从而促进在作物生产中有效地利用硅元素作为肥料。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Silicon, a quasi-essential element: Availability in soil, fertilizer regime, optimum dosage, and uptake in plants

The essentiality of silicon (Si) has always been a matter of debate as it is not considered crucial for the lifecycles of most plants. But beneficial effects of endogenous Si and its supplementation have been observed in many plants. Silicon plays a pivotal role in alleviating the biotic and abiotic stress in plants by acting as a physical barrier as well as affecting molecular pathways involved in stress tolerance, thus widely considered as “quasi-essential”. In soil, most of Si is found in complex forms as mineral silicates which is not available for plant uptake. Monosilicic acid [Si(OH)4] is the only plant-available form of silicon (PAS) present in the soil. The ability of a plant to uptake Si is positively correlated with the PAS concentration of the soil. Since many cultivated soils often lack a sufficient amount of PAS, it has become common practice to supplement Si through the use of Si-based fertilizers in various crop cultivation systems. This review outlines the use of natural and chemical sources of Si as fertilizer, different regimes of Si fertilization, and conclude by identifying the optimum concentration of Si required to observe the beneficial effects in plants. Also, the different mathematical models defining the mineral dynamics for Si uptake at whole plant scale considering various natural factors like plant morphology, mineral distribution, and transporter expression have been discussed. Information provided here will further help in increasing understanding of Si role and thereby facilitate efficient exploration of the element as a fertilizer in crop production.

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来源期刊
Plant Physiology and Biochemistry
Plant Physiology and Biochemistry 生物-植物科学
CiteScore
11.10
自引率
3.10%
发文量
410
审稿时长
33 days
期刊介绍: Plant Physiology and Biochemistry publishes original theoretical, experimental and technical contributions in the various fields of plant physiology (biochemistry, physiology, structure, genetics, plant-microbe interactions, etc.) at diverse levels of integration (molecular, subcellular, cellular, organ, whole plant, environmental). Opinions expressed in the journal are the sole responsibility of the authors and publication does not imply the editors'' agreement. Manuscripts describing molecular-genetic and/or gene expression data that are not integrated with biochemical analysis and/or actual measurements of plant physiological processes are not suitable for PPB. Also "Omics" studies (transcriptomics, proteomics, metabolomics, etc.) reporting descriptive analysis without an element of functional validation assays, will not be considered. Similarly, applied agronomic or phytochemical studies that generate no new, fundamental insights in plant physiological and/or biochemical processes are not suitable for publication in PPB. Plant Physiology and Biochemistry publishes several types of articles: Reviews, Papers and Short Papers. Articles for Reviews are either invited by the editor or proposed by the authors for the editor''s prior agreement. Reviews should not exceed 40 typewritten pages and Short Papers no more than approximately 8 typewritten pages. The fundamental character of Plant Physiology and Biochemistry remains that of a journal for original results.
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