活性二氧化硅对维持土壤健康的重要性

IF 4.1 2区 农林科学 Q1 AGRONOMY
Jörg Schaller, Markus Kleber, Daniel Puppe, Mathias Stein, Michael Sommer, Matthias C. Rillig
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引用次数: 0

摘要

背景和目的土壤健康对粮食和纤维生产、养分循环和供水等生态系统服务的可持续性至关重要。土壤健康可以通过物理、生物和化学指标的组合来评估。越来越多的证据表明,活性二氧化硅是控制土壤功能的重要因素。我们解释了活性二氧化硅,特别是溶解的硅酸和无定形二氧化硅,如何被用作评估土壤健康的新指标,补充甚至取代传统指标。结论在干旱和土壤退化的胁迫条件下,活性二氧化硅对土壤健康的关键作用尤为重要。活性二氧化硅的状态比目前使用的指标更早地表明土壤退化,因为活性二氧化硅耗尽之后是土壤退化。我们推荐合适的方法和基准来评估活性二氧化硅。此外,我们建议进一步研究以提高我们对活性二氧化硅对土壤健康的重要性的认识。我们呼吁土壤研究界将活性二氧化硅作为土壤健康评估的一个指标。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The importance of reactive silica for maintaining soil health

Background and aim

Soil health is vital for the sustainability of ecosystem services such as food and fiber production, nutrient cycling and water supply. Soil health can be assessed through a combination of physical, biological and chemical metrics. There is emerging evidence that reactive silica is a strong factor controlling soil functions.

Scope

We explain how reactive silica, specifically dissolved silicic acid and amorphous silica, can be used as a new metric for assessing soil health, complementing traditional metrics or even substituting for them.

Conclusion

The pivotal role of reactive silica for soil health is particularly important under stress conditions that are typically associated with drought and soil degradation. The status of reactive silica indicates soil degradation earlier than the currently used metrics, because reactive silica depletion is followed by soil degradation. We recommend suitable methods and benchmarks for assessing reactive silica. Furthermore, we suggest further research to improve our understanding of the importance of reactive silica for soil health. We call upon the soil research community to include reactive silica as a metric for soil health assessment.

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来源期刊
Plant and Soil
Plant and Soil 农林科学-农艺学
CiteScore
8.20
自引率
8.20%
发文量
543
审稿时长
2.5 months
期刊介绍: Plant and Soil publishes original papers and review articles exploring the interface of plant biology and soil sciences, and that enhance our mechanistic understanding of plant-soil interactions. We focus on the interface of plant biology and soil sciences, and seek those manuscripts with a strong mechanistic component which develop and test hypotheses aimed at understanding underlying mechanisms of plant-soil interactions. Manuscripts can include both fundamental and applied aspects of mineral nutrition, plant water relations, symbiotic and pathogenic plant-microbe interactions, root anatomy and morphology, soil biology, ecology, agrochemistry and agrophysics, as long as they are hypothesis-driven and enhance our mechanistic understanding. Articles including a major molecular or modelling component also fall within the scope of the journal. All contributions appear in the English language, with consistent spelling, using either American or British English.
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