PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
April 21, 2026Physiologia Plantarum2 citationsOpen Access

Humic Acid Induces an Adaptive Stress Response During Early Signaling in Rice

View Full Paper
JSJosé Nivaldo de Oliveira SátiroAGAndrés Calderín GarcíaASAndressa Fabiane Faria de Souza

Key Points

  • The research aims to identify the molecular mechanisms by which humic acids act as biostimulants in rice.
  • Utilized RNA sequencing to analyze transcriptional responses in rice roots after exposure to humic acid for 4 hours.
  • Measured changes in gene expression to assess the effects on stress-related pathways and redox homeostasis.
  • Humic acid treatment induced the expression of 231 genes while repressing only seven, indicating a strong stimulatory effect.
  • Activated pathways related to redox balance, glucathione metabolism, and jasmonate signaling, reflecting enhanced adaptive responses.
  • The transcriptional response was consistent with a eustress-like state, promoting defense mechanisms without stress injury signs.

Abstract

ABSTRACT Humic substances (HS) are widely recognized as plant biostimulants, yet the molecular mechanisms underlying their mode of action remain incompletely defined. Here, we used RNA sequencing to investigate the early transcriptional responses of rice roots exposed for only 4 h to vermicompost‐derived humic acid (HA). Our results reveal a rapid and pronounced transcriptional reprogramming consistent with the establishment of a eustress‐like physiological state. HA treatment induced 231 genes, whereas only seven were repressed, indicating a predominantly stimulatory effect on gene expression. The induced genes were significantly enriched in functional categories related to redox homeostasis, glutathione metabolism, oxidoreductase and peroxidase activities, and cellular detoxification, suggesting an immediate adjustment of intracellular redox balance and antioxidant capacity. Concomitantly, pathways associated with phenylpropanoid metabolism, oxylipin biosynthesis, and jasmonate‐mediated signaling were activated, together with the induction of transcription factors from the WRKY and C2H2 zinc finger families, supporting early regulatory control of defense‐related networks. The coordinated activation of redox‐ and hormone‐associated pathways indicates that HA rapidly modulates ROS‐dependent signaling and integrates it with jasmonate‐centered responses. Importantly, this transcriptional signature is consistent with a eustress‐like state in which defense and adaptive mechanisms are mobilized without evidence of acute stress injury. Collectively, our findings establish a mechanistic framework for HS action in which HA functions as a chemical eustressor that rapidly reconfigures redox–hormone crosstalk, positioning reactive oxygen species signaling as a central integrative hub underlying the biostimulant and adaptive effects of humic substances in plants.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Sátiro et al. (2026) studied this question.

synapsesocial.com/papers/69e71423cb99343efc98d800https://doi.org/10.1111/ppl.70877
Ask AI
Helpful
Bookmark
Share
View Full Paper

Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1fastp: an ultra-fast all-in-one FASTQ preprocessor2018 · 31,282 citations
  2. 2Decoding the role of OsPRX83 in enhancing osmotic stress tolerance in rice through ABA-dependent pathways and ROS scavenging2024 · 7 citations
  3. 3A novel rice C2H2-type zinc finger protein, ZFP36, is a key player involved in abscisic acid-induced antioxidant defence and oxidative stress tolerance in rice2014 · 284 citations
  4. 4Humic Acids Isolated from Earthworm Compost Enhance Root Elongation, Lateral Root Emergence, and Plasma Membrane H+-ATPase Activity in Maize Roots2002 · 844 citations
  5. 5Elevating plant immunity by translational regulation of a rice WRKY transcription factor2023 · 26 citations