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Metabolomics-Driven Mining of Metabolite Resources: Applications and Prospects for Improving Vegetable Crops

Vegetable crops possess a prominent nutri-metabolite pool that not only contributes to the crop performance in the fields, but also offers nutritional security for humans. In the pursuit of identifying, quantifying and functionally characterizing the cellular metabolome pool, biomolecule separation...

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Autores principales: Singh, Dhananjaya Pratap, Bisen, Mansi Singh, Shukla, Renu, Prabha, Ratna, Maurya, Sudarshan, Reddy, Yesaru S., Singh, Prabhakar Mohan, Rai, Nagendra, Chaubey, Tribhuwan, Chaturvedi, Krishna Kumar, Srivastava, Sudhir, Farooqi, Mohammad Samir, Gupta, Vijai Kumar, Sarma, Birinchi K., Rai, Anil, Behera, Tusar Kanti
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9603451/
https://www.ncbi.nlm.nih.gov/pubmed/36292920
http://dx.doi.org/10.3390/ijms232012062
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author Singh, Dhananjaya Pratap
Bisen, Mansi Singh
Shukla, Renu
Prabha, Ratna
Maurya, Sudarshan
Reddy, Yesaru S.
Singh, Prabhakar Mohan
Rai, Nagendra
Chaubey, Tribhuwan
Chaturvedi, Krishna Kumar
Srivastava, Sudhir
Farooqi, Mohammad Samir
Gupta, Vijai Kumar
Sarma, Birinchi K.
Rai, Anil
Behera, Tusar Kanti
author_facet Singh, Dhananjaya Pratap
Bisen, Mansi Singh
Shukla, Renu
Prabha, Ratna
Maurya, Sudarshan
Reddy, Yesaru S.
Singh, Prabhakar Mohan
Rai, Nagendra
Chaubey, Tribhuwan
Chaturvedi, Krishna Kumar
Srivastava, Sudhir
Farooqi, Mohammad Samir
Gupta, Vijai Kumar
Sarma, Birinchi K.
Rai, Anil
Behera, Tusar Kanti
author_sort Singh, Dhananjaya Pratap
collection PubMed
description Vegetable crops possess a prominent nutri-metabolite pool that not only contributes to the crop performance in the fields, but also offers nutritional security for humans. In the pursuit of identifying, quantifying and functionally characterizing the cellular metabolome pool, biomolecule separation technologies, data acquisition platforms, chemical libraries, bioinformatics tools, databases and visualization techniques have come to play significant role. High-throughput metabolomics unravels structurally diverse nutrition-rich metabolites and their entangled interactions in vegetable plants. It has helped to link identified phytometabolites with unique phenotypic traits, nutri-functional characters, defense mechanisms and crop productivity. In this study, we explore mining diverse metabolites, localizing cellular metabolic pathways, classifying functional biomolecules and establishing linkages between metabolic fluxes and genomic regulations, using comprehensive metabolomics deciphers of the plant’s performance in the environment. We discuss exemplary reports covering the implications of metabolomics, addressing metabolic changes in vegetable plants during crop domestication, stage-dependent growth, fruit development, nutri-metabolic capabilities, climatic impacts, plant-microbe-pest interactions and anthropogenic activities. Efforts leading to identify biomarker metabolites, candidate proteins and the genes responsible for plant health, defense mechanisms and nutri-rich crop produce are documented. With the insights on metabolite-QTL (mQTL) driven genetic architecture, molecular breeding in vegetable crops can be revolutionized for developing better nutritional capabilities, improved tolerance against diseases/pests and enhanced climate resilience in plants.
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spelling pubmed-96034512022-10-27 Metabolomics-Driven Mining of Metabolite Resources: Applications and Prospects for Improving Vegetable Crops Singh, Dhananjaya Pratap Bisen, Mansi Singh Shukla, Renu Prabha, Ratna Maurya, Sudarshan Reddy, Yesaru S. Singh, Prabhakar Mohan Rai, Nagendra Chaubey, Tribhuwan Chaturvedi, Krishna Kumar Srivastava, Sudhir Farooqi, Mohammad Samir Gupta, Vijai Kumar Sarma, Birinchi K. Rai, Anil Behera, Tusar Kanti Int J Mol Sci Review Vegetable crops possess a prominent nutri-metabolite pool that not only contributes to the crop performance in the fields, but also offers nutritional security for humans. In the pursuit of identifying, quantifying and functionally characterizing the cellular metabolome pool, biomolecule separation technologies, data acquisition platforms, chemical libraries, bioinformatics tools, databases and visualization techniques have come to play significant role. High-throughput metabolomics unravels structurally diverse nutrition-rich metabolites and their entangled interactions in vegetable plants. It has helped to link identified phytometabolites with unique phenotypic traits, nutri-functional characters, defense mechanisms and crop productivity. In this study, we explore mining diverse metabolites, localizing cellular metabolic pathways, classifying functional biomolecules and establishing linkages between metabolic fluxes and genomic regulations, using comprehensive metabolomics deciphers of the plant’s performance in the environment. We discuss exemplary reports covering the implications of metabolomics, addressing metabolic changes in vegetable plants during crop domestication, stage-dependent growth, fruit development, nutri-metabolic capabilities, climatic impacts, plant-microbe-pest interactions and anthropogenic activities. Efforts leading to identify biomarker metabolites, candidate proteins and the genes responsible for plant health, defense mechanisms and nutri-rich crop produce are documented. With the insights on metabolite-QTL (mQTL) driven genetic architecture, molecular breeding in vegetable crops can be revolutionized for developing better nutritional capabilities, improved tolerance against diseases/pests and enhanced climate resilience in plants. MDPI 2022-10-11 /pmc/articles/PMC9603451/ /pubmed/36292920 http://dx.doi.org/10.3390/ijms232012062 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Review
Singh, Dhananjaya Pratap
Bisen, Mansi Singh
Shukla, Renu
Prabha, Ratna
Maurya, Sudarshan
Reddy, Yesaru S.
Singh, Prabhakar Mohan
Rai, Nagendra
Chaubey, Tribhuwan
Chaturvedi, Krishna Kumar
Srivastava, Sudhir
Farooqi, Mohammad Samir
Gupta, Vijai Kumar
Sarma, Birinchi K.
Rai, Anil
Behera, Tusar Kanti
Metabolomics-Driven Mining of Metabolite Resources: Applications and Prospects for Improving Vegetable Crops
title Metabolomics-Driven Mining of Metabolite Resources: Applications and Prospects for Improving Vegetable Crops
title_full Metabolomics-Driven Mining of Metabolite Resources: Applications and Prospects for Improving Vegetable Crops
title_fullStr Metabolomics-Driven Mining of Metabolite Resources: Applications and Prospects for Improving Vegetable Crops
title_full_unstemmed Metabolomics-Driven Mining of Metabolite Resources: Applications and Prospects for Improving Vegetable Crops
title_short Metabolomics-Driven Mining of Metabolite Resources: Applications and Prospects for Improving Vegetable Crops
title_sort metabolomics-driven mining of metabolite resources: applications and prospects for improving vegetable crops
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9603451/
https://www.ncbi.nlm.nih.gov/pubmed/36292920
http://dx.doi.org/10.3390/ijms232012062
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