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OMICs, Epigenetics, and Genome Editing Techniques for Food and Nutritional Security

The incredible success of crop breeding and agricultural innovation in the last century greatly contributed to the Green Revolution, which significantly increased yields and ensures food security, despite the population explosion. However, new challenges such as rapid climate change, deteriorating s...

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Autores principales: Gogolev, Yuri V., Ahmar, Sunny, Akpinar, Bala Ani, Budak, Hikmet, Kiryushkin, Alexey S., Gorshkov, Vladimir Y., Hensel, Goetz, Demchenko, Kirill N., Kovalchuk, Igor, Mora-Poblete, Freddy, Muslu, Tugdem, Tsers, Ivan D., Yadav, Narendra Singh, Korzun, Viktor
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8309286/
https://www.ncbi.nlm.nih.gov/pubmed/34371624
http://dx.doi.org/10.3390/plants10071423
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author Gogolev, Yuri V.
Ahmar, Sunny
Akpinar, Bala Ani
Budak, Hikmet
Kiryushkin, Alexey S.
Gorshkov, Vladimir Y.
Hensel, Goetz
Demchenko, Kirill N.
Kovalchuk, Igor
Mora-Poblete, Freddy
Muslu, Tugdem
Tsers, Ivan D.
Yadav, Narendra Singh
Korzun, Viktor
author_facet Gogolev, Yuri V.
Ahmar, Sunny
Akpinar, Bala Ani
Budak, Hikmet
Kiryushkin, Alexey S.
Gorshkov, Vladimir Y.
Hensel, Goetz
Demchenko, Kirill N.
Kovalchuk, Igor
Mora-Poblete, Freddy
Muslu, Tugdem
Tsers, Ivan D.
Yadav, Narendra Singh
Korzun, Viktor
author_sort Gogolev, Yuri V.
collection PubMed
description The incredible success of crop breeding and agricultural innovation in the last century greatly contributed to the Green Revolution, which significantly increased yields and ensures food security, despite the population explosion. However, new challenges such as rapid climate change, deteriorating soil, and the accumulation of pollutants require much faster responses and more effective solutions that cannot be achieved through traditional breeding. Further prospects for increasing the efficiency of agriculture are undoubtedly associated with the inclusion in the breeding strategy of new knowledge obtained using high-throughput technologies and new tools in the future to ensure the design of new plant genomes and predict the desired phenotype. This article provides an overview of the current state of research in these areas, as well as the study of soil and plant microbiomes, and the prospective use of their potential in a new field of microbiome engineering. In terms of genomic and phenomic predictions, we also propose an integrated approach that combines high-density genotyping and high-throughput phenotyping techniques, which can improve the prediction accuracy of quantitative traits in crop species.
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spelling pubmed-83092862021-07-25 OMICs, Epigenetics, and Genome Editing Techniques for Food and Nutritional Security Gogolev, Yuri V. Ahmar, Sunny Akpinar, Bala Ani Budak, Hikmet Kiryushkin, Alexey S. Gorshkov, Vladimir Y. Hensel, Goetz Demchenko, Kirill N. Kovalchuk, Igor Mora-Poblete, Freddy Muslu, Tugdem Tsers, Ivan D. Yadav, Narendra Singh Korzun, Viktor Plants (Basel) Review The incredible success of crop breeding and agricultural innovation in the last century greatly contributed to the Green Revolution, which significantly increased yields and ensures food security, despite the population explosion. However, new challenges such as rapid climate change, deteriorating soil, and the accumulation of pollutants require much faster responses and more effective solutions that cannot be achieved through traditional breeding. Further prospects for increasing the efficiency of agriculture are undoubtedly associated with the inclusion in the breeding strategy of new knowledge obtained using high-throughput technologies and new tools in the future to ensure the design of new plant genomes and predict the desired phenotype. This article provides an overview of the current state of research in these areas, as well as the study of soil and plant microbiomes, and the prospective use of their potential in a new field of microbiome engineering. In terms of genomic and phenomic predictions, we also propose an integrated approach that combines high-density genotyping and high-throughput phenotyping techniques, which can improve the prediction accuracy of quantitative traits in crop species. MDPI 2021-07-12 /pmc/articles/PMC8309286/ /pubmed/34371624 http://dx.doi.org/10.3390/plants10071423 Text en © 2021 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
Gogolev, Yuri V.
Ahmar, Sunny
Akpinar, Bala Ani
Budak, Hikmet
Kiryushkin, Alexey S.
Gorshkov, Vladimir Y.
Hensel, Goetz
Demchenko, Kirill N.
Kovalchuk, Igor
Mora-Poblete, Freddy
Muslu, Tugdem
Tsers, Ivan D.
Yadav, Narendra Singh
Korzun, Viktor
OMICs, Epigenetics, and Genome Editing Techniques for Food and Nutritional Security
title OMICs, Epigenetics, and Genome Editing Techniques for Food and Nutritional Security
title_full OMICs, Epigenetics, and Genome Editing Techniques for Food and Nutritional Security
title_fullStr OMICs, Epigenetics, and Genome Editing Techniques for Food and Nutritional Security
title_full_unstemmed OMICs, Epigenetics, and Genome Editing Techniques for Food and Nutritional Security
title_short OMICs, Epigenetics, and Genome Editing Techniques for Food and Nutritional Security
title_sort omics, epigenetics, and genome editing techniques for food and nutritional security
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8309286/
https://www.ncbi.nlm.nih.gov/pubmed/34371624
http://dx.doi.org/10.3390/plants10071423
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