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从实验室到田间:腐殖物质在露地和温室条件下作为生物刺激剂和生物防治剂的作用

From Lab to Field: Role of Humic Substances Under Open-Field and Greenhouse Conditions as Biostimulant and Biocontrol Agent.

作者信息

Jindo Keiji, Olivares Fábio Lopes, Malcher Deyse Jacqueline da Paixão, Sánchez-Monedero Miguel Angel, Kempenaar Corné, Canellas Luciano Pasqualoto

机构信息

Agrosystems Research, Wageningen University and Research, Wageningen, Netherlands.

Núcleo de Desenvolvimento de Insumos Biológicos para a Agricultura (NUDIBA), Universidade Estadual do Norte Fluminense Darcy Ribeiro, UENF, Rio de Janeiro, Brazil.

出版信息

Front Plant Sci. 2020 May 12;11:426. doi: 10.3389/fpls.2020.00426. eCollection 2020.

Abstract

The demand for biostimulants has been growing at an annual rate of 10 and 12.4% in Europe and Northern America, respectively. The beneficial effects of humic substances (HS) as biostimulants of plant growth have been well-known since the 1980s, and they can be supportive to a circular economy if they are extracted from different renewable resources of organic matter including harvest residues, wastewater, sewage sludge, and manure. This paper presents an overview of the scientific outputs on application methods of HS in different conditions. Firstly, the functionality of HS in the primary and secondary metabolism under stressed and non-stressed cropping conditions is discussed along with crop protection against pathogens. Secondly, the advantages and limitations of five different types of HS application under open-fields and greenhouse conditions are described. Key factors, such as the chemical structure of HS, application method, optimal rate, and field circumstances, play a crucial role in enhancing plant growth by HS treatment as a biostimulant. If we can get a better grip on these factors, HS has the potential to become a part of circular agriculture.

摘要

在欧洲和北美,对生物刺激剂的需求分别以每年10%和12.4%的速度增长。自20世纪80年代以来,腐殖质(HS)作为植物生长生物刺激剂的有益作用就已为人所知,如果从包括收获残余物、废水、污水污泥和粪便在内的不同有机可再生资源中提取,它们有助于循环经济。本文概述了在不同条件下HS应用方法的科学成果。首先,讨论了HS在胁迫和非胁迫种植条件下在初级和次级代谢中的功能以及对病原体的作物保护。其次,描述了在露天田地和温室条件下五种不同类型HS应用的优缺点。关键因素,如HS的化学结构、应用方法、最佳用量和田间环境,在通过HS处理作为生物刺激剂促进植物生长方面起着至关重要的作用。如果我们能更好地掌握这些因素,HS有可能成为循环农业的一部分。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2fd8/7247854/b477807428c7/fpls-11-00426-g001.jpg

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