Skip to content

Role of proline under changing environments

Shamsul Hayat, Qaiser Hayat, Mohammed Nasser Alyemeni, Arif Shafi Wani, John Pichtel, Aqil Ahmad

Plant Signaling & Behavior · 2012 · 2,877 citationsOpen access

Abstract

When exposed to stressful conditions, plants accumulate an array of metabolites, particularly amino acids. Amino acids have traditionally been considered as precursors to and constituents of proteins, and play an important role in plant metabolism and development. A large body of data suggests a positive correlation between proline accumulation and plant stress. Proline, an amino acid, plays a highly beneficial role in plants exposed to various stress conditions. Besides acting as an excellent osmolyte, proline plays three major roles during stress, i.e., as a metal chelator, an antioxidative defense molecule and a signaling molecule. Review of the literature indicates that a stressful environment results in an overproduction of proline in plants which in turn imparts stress tolerance by maintaining cell turgor or osmotic balance; stabilizing membranes thereby preventing electrolyte leakage; and bringing concentrations of reactive oxygen species (ROS) within normal ranges, thus preventing oxidative burst in plants. Reports indicate enhanced stress tolerance when proline is supplied exogenously at low concentrations. However, some reports indicate toxic effects of proline when supplied exogenously at higher concentrations. In this article, we review and discuss the effects of exogenous proline on plants exposed to various abiotic stresses. Numerous examples of successful application of exogenous proline to improve stress tolerance are presented. The roles played by exogenous proline under varying environments have been critically examined and reviewed.

Cite this paper

Hayat, S., Hayat, Q., Alyemeni, M. N., Wani, A. S., Pichtel, J., & Ahmad, A. (2012). Role of proline under changing environments. Plant Signaling & Behavior, 7(11), 1456–1466. https://doi.org/10.4161/psb.21949

Read it with every claim anchored

Add this paper to a project, ask questions of it, and get answers that point to the exact passage.

Start free
  1. Mechanisms of Salinity Tolerance2008
  2. S ALT AND D ROUGHT S TRESS S IGNAL T RANSDUCTION IN P LANTS2002
  3. P LANT C ELLULAR AND M OLECULAR R ESPONSES TO H IGH S ALINITY2000
  4. Na+ Tolerance and Na+ Transport in Higher Plants2003
  5. Abscisic Acid: Emergence of a Core Signaling Network2010

Metadata from OpenAlex (CC0). Citations are generated from the published record.