Putrescine Mitigates High Temperature Effects by Modulating Morpho-Physiological and Biochemical Attributes in Brassica juncea Seedlings

Author:

Sharma Parul1ORCID,Lakra Nita2ORCID,Ahlawat Yogesh3ORCID,Zaid Abbu45ORCID,Abd-ElGawad Ahmed M.6ORCID,Elansary Hosam O.6ORCID,Gupta Anita5

Affiliation:

1. Department of Botany and Plant Physiology, College of Basic Science and Humanities, CCS Haryana Agricultural University, Hisar 125004, India

2. Department of Molecular Biology & Biotechnology, College of Biotechnology, CCS Haryana Agricultural University, Hisar 125004, India

3. Department of Biological Sciences, Michigan Technological University, Houghton, MI 49931, USA

4. Plant Physiology and Biochemistry Section, Department of Botany, Aligarh Muslim University, Aligarh 202002, India

5. Department of Botany, GGM Science College, Cluster University of Jammu, Jammu 180001, India

6. Department of Plant Production, College of Food & Agriculture Sciences, King Saud University, P.O. Box 2460, Riyadh 11451, Saudi Arabia

Abstract

A variety of environmental issues are affecting crops all across the world, but rising temperatures are posing the greatest threat. High temperature has been found to drastically inhibit seedling emergence and cause leaf necrosis at the seedling stage, which results in poor plant stand and significantly decreased yields. Polyamines (PAs) are positively charged, low-molecular-weight aliphatic nitrogenous bases present in all living organisms and are involved in various biological processes in plant growth and development, including senescence and response to different abiotic stresses. Putrescine (Put) functions as a master growth regulator that promotes optimal plant development and greater stress tolerance. Here, the current study aimed to elucidate how Put (1 mM) functions in reducing the negative impacts of high temperature on four varieties of Brassica juncea (RH-1707, RH-1708, RH-1566 and RH-1999-42). Exposure of plants to high temperature resulted in decrease in growth parameters, chlorophyll content and relative water content. Simultaneously, increases were found in antioxidant enzymes, electrolyte leakage, lipid peroxidation, hydrogen peroxide content and stomatal density. High temperature more significantly affected varieties RH-1707 and RH-1708, while RH-1566 and RH-1999-42 showed lesser effects. Exogenous application of Put mitigated the negative impacts of high temperature by enhancing growth, chlorophyll content, relative water content and antioxidant enzyme activities and, simultaneously, it reduces oxidative damage and stomatal density. This study specifies that varieties RH-1707 and RH-1708 are sensitive whereas RH-1566 and RH-1999-42 are tolerant of high temperature and provides an insight into the effectiveness of Put in mitigating the effects of high temperature to a significant extent in B. juncea seedlings.

Funder

King Saud University Researchers Supporting Project

Publisher

MDPI AG

Subject

Agronomy and Crop Science

Reference80 articles.

1. Heat stress related physiological and metabolic traits in peanut seedlings;Singh;Peanut Sci.,2016

2. DAC (2019). Agricultural Statistics at a Glance, Directorate of Economics and Statistics, Department of Agriculture, Cooperation and Farmers Welfare, Ministry of Agriculture and Farmers Welfare, Government of India.

3. Protective mechanisms of heat tolerance in crop plants;Asthir;J. Plant Interact.,2015

4. Effect of high temperature on crop growth and yield;Lobel;Prog. Agric. Eng. Sci.,2003

5. Heat tolerance in plants: An overview;Wahid;Environ. Exp. Bot.,2007

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