Elevated CO2 and Water Stress in Combination in Plants: Brothers in Arms or Partners in Crime?

Author:

Shanker Arun KumarORCID,Gunnapaneni Deepika,Bhanu Divya,Vanaja Maddi,Lakshmi Narayana Jyothi,Yadav Sushil Kumar,Prabhakar MathyamORCID,Singh Vinod Kumar

Abstract

The changing dynamics in the climate are the primary and important determinants of agriculture productivity. The effects of this changing climate on overall productivity in agriculture can be understood when we study the effects of individual components contributing to the changing climate on plants and crops. Elevated CO2 (eCO2) and drought due to high variability in rainfall is one of the important manifestations of the changing climate. There is a considerable amount of literature that addresses climate effects on plant systems from molecules to ecosystems. Of particular interest is the effect of increased CO2 on plants in relation to drought and water stress. As it is known that one of the consistent effects of increased CO2 in the atmosphere is increased photosynthesis, especially in C3 plants, it will be interesting to know the effect of drought in relation to elevated CO2. The potential of elevated CO2 ameliorating the effects of water deficit stress is evident from literature, which suggests that these two agents are brothers in arms protecting the plant from stress rather than partners in crime, specifically for water deficit when in isolation. The possible mechanisms by which this occurs will be discussed in this minireview. Interpreting the effects of short-term and long-term exposure of plants to elevated CO2 in the context of ameliorating the negative impacts of drought will show us the possible ways by which there can be effective adaption to crops in the changing climate scenario.

Funder

National Innovation on Climate Resilient Agriculture

Publisher

MDPI AG

Subject

General Agricultural and Biological Sciences,General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology

Reference91 articles.

1. World Agriculture Towards 2030/2050: The 2012 Revision;Alexandratos,2012

2. World Population Prospects: The 2012 Revision, Key Findings and Advance Tables,2012

3. Global Warming of 1.5 °C,2018

4. Global Carbon Budget 2019

5. Climate Change 2007: Impacts, Adaptation and Vulnerability,2007

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