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腐殖质中结构-性质-功能关系对植物生物活性的解释

Structure-Property-Function Relationship in Humic Substances to Explain the Biological Activity in Plants.

作者信息

García Andrés Calderín, de Souza Luiz Gilberto Ambrosio, Pereira Marcos Gervasio, Castro Rosane Nora, García-Mina José María, Zonta Everaldo, Lisboa Francy Junior Gonçalves, Berbara Ricardo Luis Louro

机构信息

Federal Rural University of Rio de Janeiro, Soil Science Dept. Rodovia BR 465 km 7, Seropédica, RJ, CEP 23890-000, Brazil.

Federal Rural University of Rio de Janeiro, Chemistry Department, Rodovia BR 465 km 7, Seropédica, RJ, CEP 23890-000, Brazil.

出版信息

Sci Rep. 2016 Feb 10;6:20798. doi: 10.1038/srep20798.

Abstract

Knowledge of the structure-property-function relationship of humic substances (HSs) is key for understanding their role in soil. Despite progress, studies on this topic are still under discussion. We analyzed 37 humic fractions with respect to their isotopic composition, structural characteristics, and properties responsible for stimulating plant root parameters. We showed that regardless of the source of origin of the carbon (C3 or C4), soil-extracted HSs and humic acids (HAs) are structurally similar to each other. The more labile and functionalized HS fraction is responsible for root emission, whereas the more recalcitrant and less functionalized HA fraction is related to root growth. Labile structures promote root stimulation at lower concentrations, while recalcitrant structures require higher concentrations to promote a similar stimulus. These findings show that lability and recalcitrance, which are derived properties of humic fractions, are related to the type and intensity of their bioactivity. In summary, the comparison of humic fractions allowed a better understanding of the relationship between the source of origin of plant carbon and the structure, properties, and type and intensity of the bioactivity of HSs in plants. In this study, scientific concepts are unified and the basis for the agronomic use of HSs is established.

摘要

了解腐殖质(HSs)的结构-性质-功能关系是理解其在土壤中作用的关键。尽管取得了进展,但关于这一主题的研究仍在讨论中。我们分析了37种腐殖质组分的同位素组成、结构特征以及刺激植物根系参数的性质。我们发现,无论碳源(C3或C4)如何,土壤提取的HSs和腐殖酸(HAs)在结构上彼此相似。更不稳定且功能化的HS组分负责根系排放,而更难降解且功能化程度较低的HA组分与根系生长有关。不稳定结构在较低浓度下促进根系刺激,而难降解结构需要更高浓度才能促进类似的刺激。这些发现表明,作为腐殖质组分衍生特性的不稳定性和难降解性与它们生物活性的类型和强度有关。总之,腐殖质组分的比较有助于更好地理解植物碳源与HSs在植物中的结构、性质、生物活性类型和强度之间的关系。在本研究中,科学概念得到统一,HSs农艺应用的基础得以确立。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5523/4748406/0c4595502b9a/srep20798-f1.jpg

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