Encapsulated plant growth regulators and associative microorganisms: Nature-based solutions to mitigate the effects of climate change on plants

Plant Sci. 2023 Jun:331:111688. doi: 10.1016/j.plantsci.2023.111688. Epub 2023 Mar 22.

Abstract

Over the past decades, the atmospheric CO2 concentration and global average temperature have been increasing, and this trend is projected to soon become more severe. This scenario of climate change intensifies abiotic stress factors (such as drought, flooding, salinity, and ultraviolet radiation) that threaten forest and associated ecosystems as well as crop production. These factors can negatively affect plant growth and development with a consequent reduction in plant biomass accumulation and yield, in addition to increasing plant susceptibility to biotic stresses. Recently, biostimulants have become a hotspot as an effective and sustainable alternative to alleviate the negative effects of stresses on plants. However, the majority of biostimulants have poor stability under environmental conditions, which leads to premature degradation, shortening their biological activity. To solve these bottlenecks, micro- and nano-based formulations containing biostimulant molecules and/or microorganisms are gaining attention, as they demonstrate several advantages over their conventional formulations. In this review, we focus on the encapsulation of plant growth regulators and plant associative microorganisms as a strategy to boost their application for plant protection against abiotic stresses. We also address the potential limitations and challenges faced for the implementation of this technology, as well as possibilities regarding future research.

Keywords: Biostimulants; Microencapsulation; Nanobiotechnology; Plant growth regulators; Plant growth-promoting rhizobacteria; Seed priming.

Publication types

  • Review

MeSH terms

  • Climate Change*
  • Ecosystem
  • Plant Growth Regulators* / metabolism
  • Plants / metabolism
  • Ultraviolet Rays

Substances

  • Plant Growth Regulators