Metabolomics‐driven investigation of plant defense response against pest and pathogen attack

Author:

Kumari Megha12,Yagnik Kalpesh Nath12,Gupta Vaishali1,Singh Indrakant K.3,Gupta Ravi4ORCID,Verma Praveen K.5,Singh Archana126ORCID

Affiliation:

1. Department of Plant Molecular Biology University of Delhi South Campus New Delhi India

2. Department of Botany, Hansraj College University of Delhi Delhi India

3. Molecular Biology Research Lab, Department of Zoology, Deshbandhu College University of Delhi New Delhi India

4. College of General Education Kookmin University Seoul Republic of Korea

5. Plant‐Immunity Laboratory, School of Life Sciences Jawaharlal Nehru University New Delhi India

6. Delhi School of Climate Change and Sustainability, Institution of Eminence, Maharishi Karnad Bhawan University of Delhi India

Abstract

AbstractThe advancement of metabolomics has assisted in the identification of various bewildering characteristics of the biological system. Metabolomics is a standard approach, facilitating crucial aspects of system biology with absolute quantification of metabolites using minimum samples, based on liquid/gas chromatography, mass spectrometry and nuclear magnetic resonance. The metabolome profiling has narrowed the wide gaps of missing information and has enhanced the understanding of a wide spectrum of plant–environment interactions by highlighting the complex pathways regulating biochemical reactions and cellular physiology under a particular set of conditions. This high throughput technique also plays a prominent role in combined analyses of plant metabolomics and other omics datasets. Plant metabolomics has opened a wide paradigm of opportunities for developing stress‐tolerant plants, ensuring better food quality and quantity. However, despite advantageous methods and databases, the technique has a few limitations, such as ineffective 3D capturing of metabolites, low comprehensiveness, and lack of cell‐based sampling. In the future, an expansion of plant–pathogen and plant–pest response towards the metabolite architecture is necessary to understand the intricacies of plant defence against invaders, elucidation of metabolic pathway operational during defence and developing a direct correlation between metabolites and biotic stresses. Our aim is to provide an overview of metabolomics and its utilities for the identification of biomarkers or key metabolites associated with biotic stress, devising improved diagnostic methods to efficiently assess pest and pathogen attack and generating improved crop varieties with the help of combined application of analytical and molecular tools.

Publisher

Wiley

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