AI Article Synopsis

  • Stress in plants leads to harmful levels of reactive oxygen species (ROS) and carbonyl compounds, which can hinder growth and cause cellular toxicity.
  • It's important to balance the production and breakdown of these reactive species to maintain normal plant functions, and detoxification mechanisms are key for managing stress impacts.
  • Root-associated microbes enhance plants' stress tolerance by improving antioxidant responses and maintaining redox homeostasis, thereby helping plants cope with stress more effectively.

Article Abstract

One of the general consequences of stress in plants is the accumulation of reactive oxygen (ROS) and carbonyl species (like methylglyoxal) to levels that are detrimental for plant growth. These reactive species are inherently produced in all organisms and serve different physiological functions but their excessive accumulation results in cellular toxicity. It is, therefore, essential to restore equilibrium between their synthesis and breakdown to ensure normal cellular functioning. Detoxification mechanisms that scavenge these reactive species are considered important for stress mitigation as they maintain redox balance by restricting the levels of ROS, methylglyoxal and other reactive species in the cellular milieu. Stress tolerance imparted to plants by root-associated microbes involves a multitude of mechanisms, including maintenance of redox homeostasis. By improving the overall antioxidant response in plants, microbes can strengthen defense pathways and hence, the adaptive abilities of plants to sustain growth under stress. Hence, through this review we wish to highlight the contribution of root microbiota in modulating the levels of reactive species and thereby, maintaining redox homeostasis in plants as one of the important mechanisms of stress alleviation. Further, we also examine the microbial mechanisms of resistance to oxidative stress and their role in combating plant stress.

Download full-text PDF

Source
http://dx.doi.org/10.1016/j.plantsci.2023.111922DOI Listing

Publication Analysis

Top Keywords

reactive species
16
redox homeostasis
12
stress
8
stress mitigation
8
plants
6
reactive
5
species
5
role methylglyoxal
4
redox
4
methylglyoxal redox
4

Similar Publications

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!