4.6 Review

Chemical Structure and Biological Activity of Humic Substances Define Their Role as Plant Growth Promoters

Journal

MOLECULES
Volume 26, Issue 8, Pages -

Publisher

MDPI
DOI: 10.3390/molecules26082256

Keywords

humic substances; hydrophobicity; hydrophily; growth promoters; hormone-like activity; auxin; nutrition; biological activity

Funding

  1. Caratterizzazione chimica-biologica di sostanze umiche [DOR2082752/20]

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Humic substances (HS) are recognized as natural growth promoters in sustainable agriculture, with their biological activity in plants being influenced by factors such as chemical structure and molecular size. These substances target key physiological pathways in plants to enhance growth and development.
Humic substances (HS) are dominant components of soil organic matter and are recognized as natural, effective growth promoters to be used in sustainable agriculture. In recent years, many efforts have been made to get insights on the relationship between HS chemical structure and their biological activity in plants using combinatory approaches. Relevant results highlight the existence of key functional groups in HS that might trigger positive local and systemic physiological responses via a complex network of hormone-like signaling pathways. The biological activity of HS finely relies on their dosage, origin, molecular size, degree of hydrophobicity and aromaticity, and spatial distribution of hydrophilic and hydrophobic domains. The molecular size of HS also impacts their mode of action in plants, as low molecular size HS can enter the root cells and directly elicit intracellular signals, while high molecular size HS bind to external cell receptors to induce molecular responses. Main targets of HS in plants are nutrient transporters, plasma membrane H+-ATPases, hormone routes, genes/enzymes involved in nitrogen assimilation, cell division, and development. This review aims to give a detailed survey of the mechanisms associated to the growth regulatory functions of HS in view of their use in sustainable technologies.

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