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Structure and action mechanism of humic substances for plant stimulationsStructure and action mechanism of humic substances for plant stimulations

Other Titles
Structure and action mechanism of humic substances for plant stimulations
Authors
전종록김외연차준영
Issue Date
2018
Publisher
한국초지조사료학회
Keywords
Humic substances; Molecular mechanism; Plant stimulation; Structure-function relationship
Citation
한국초지조사료학회지, v.38, no.3, pp 175 - 179
Pages
5
Indexed
KCI
Journal Title
한국초지조사료학회지
Volume
38
Number
3
Start Page
175
End Page
179
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/12579
DOI
10.5333/KGFS.2018.38.3.175
ISSN
2287-5824
2287-5832
Abstract
Humic substances that can be obtained from coal resources such as leonardite in a bulk scale have been employed as crop stimulators and soil conditioners. The polymeric organics containing a variety of aromatic and aliphatic structures are known to activate plants in a multifunctional way, thus resulting in enhanced germination rate and abiotic stress resistance concomitant with induction of numerous genes and proteins. Although detailed structural-functional relationship of humic substances for plant stimulations has not been deciphered yet, cutting-edge analytical tools have unraveled critical features of humic architectures that could be linked to the action mechanisms of their plant stimulations. In this review article, we introduce key findings of humic structures and related biological functions that boost plant growth and abiotic stress resistance. Oxygen-based functional groups and plant hormone-like structures combined with labile and recalcitrant carbon backbones are believed to be critical moieties to induce plant stimulations. Some proteins such as HIGH-AFFINITY K+ TRANSPORTER 1, phospholipase A2 and H+-ATPase have been also recognized as key players that could be critically involved in humic substance-driven changes in plant physiology.
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