Cargando…

Genetic Diversity, QTL Mapping, and Marker-Assisted Selection Technology in Cotton (Gossypium spp.)

Cotton genetic resources contain diverse economically important traits that can be used widely in breeding approaches to create of high-yielding elite cultivars with superior fiber quality and adapted to biotic and abiotic stresses. Nevertheless, the creation of new cultivars using conventional bree...

Descripción completa

Detalles Bibliográficos
Autores principales: Kushanov, Fakhriddin N., Turaev, Ozod S., Ernazarova, Dilrabo K., Gapparov, Bunyod M., Oripova, Barno B., Kudratova, Mukhlisa K., Rafieva, Feruza U., Khalikov, Kuvandik K., Erjigitov, Doston Sh., Khidirov, Mukhammad T., Kholova, Madina D., Khusenov, Naim N., Amanboyeva, Roza S., Saha, Sukumar, Yu, John Z., Abdurakhmonov, Ibrokhim Y.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8716771/
https://www.ncbi.nlm.nih.gov/pubmed/34975965
http://dx.doi.org/10.3389/fpls.2021.779386
_version_ 1784624388525522944
author Kushanov, Fakhriddin N.
Turaev, Ozod S.
Ernazarova, Dilrabo K.
Gapparov, Bunyod M.
Oripova, Barno B.
Kudratova, Mukhlisa K.
Rafieva, Feruza U.
Khalikov, Kuvandik K.
Erjigitov, Doston Sh.
Khidirov, Mukhammad T.
Kholova, Madina D.
Khusenov, Naim N.
Amanboyeva, Roza S.
Saha, Sukumar
Yu, John Z.
Abdurakhmonov, Ibrokhim Y.
author_facet Kushanov, Fakhriddin N.
Turaev, Ozod S.
Ernazarova, Dilrabo K.
Gapparov, Bunyod M.
Oripova, Barno B.
Kudratova, Mukhlisa K.
Rafieva, Feruza U.
Khalikov, Kuvandik K.
Erjigitov, Doston Sh.
Khidirov, Mukhammad T.
Kholova, Madina D.
Khusenov, Naim N.
Amanboyeva, Roza S.
Saha, Sukumar
Yu, John Z.
Abdurakhmonov, Ibrokhim Y.
author_sort Kushanov, Fakhriddin N.
collection PubMed
description Cotton genetic resources contain diverse economically important traits that can be used widely in breeding approaches to create of high-yielding elite cultivars with superior fiber quality and adapted to biotic and abiotic stresses. Nevertheless, the creation of new cultivars using conventional breeding methods is limited by the cost and proved to be time consuming process, also requires a space to make field observations and measurements. Decoding genomes of cotton species greatly facilitated generating large-scale high-throughput DNA markers and identification of QTLs that allows confirmation of candidate genes, and use them in marker-assisted selection (MAS)-based breeding programs. With the advances of quantitative trait loci (QTL) mapping and genome-wide-association study approaches, DNA markers associated with valuable traits significantly accelerate breeding processes by replacing the selection with a phenotype to the selection at the DNA or gene level. In this review, we discuss the evolution and genetic diversity of cotton Gossypium genus, molecular markers and their types, genetic mapping and QTL analysis, application, and perspectives of MAS-based approaches in cotton breeding.
format Online
Article
Text
id pubmed-8716771
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-87167712021-12-31 Genetic Diversity, QTL Mapping, and Marker-Assisted Selection Technology in Cotton (Gossypium spp.) Kushanov, Fakhriddin N. Turaev, Ozod S. Ernazarova, Dilrabo K. Gapparov, Bunyod M. Oripova, Barno B. Kudratova, Mukhlisa K. Rafieva, Feruza U. Khalikov, Kuvandik K. Erjigitov, Doston Sh. Khidirov, Mukhammad T. Kholova, Madina D. Khusenov, Naim N. Amanboyeva, Roza S. Saha, Sukumar Yu, John Z. Abdurakhmonov, Ibrokhim Y. Front Plant Sci Plant Science Cotton genetic resources contain diverse economically important traits that can be used widely in breeding approaches to create of high-yielding elite cultivars with superior fiber quality and adapted to biotic and abiotic stresses. Nevertheless, the creation of new cultivars using conventional breeding methods is limited by the cost and proved to be time consuming process, also requires a space to make field observations and measurements. Decoding genomes of cotton species greatly facilitated generating large-scale high-throughput DNA markers and identification of QTLs that allows confirmation of candidate genes, and use them in marker-assisted selection (MAS)-based breeding programs. With the advances of quantitative trait loci (QTL) mapping and genome-wide-association study approaches, DNA markers associated with valuable traits significantly accelerate breeding processes by replacing the selection with a phenotype to the selection at the DNA or gene level. In this review, we discuss the evolution and genetic diversity of cotton Gossypium genus, molecular markers and their types, genetic mapping and QTL analysis, application, and perspectives of MAS-based approaches in cotton breeding. Frontiers Media S.A. 2021-12-16 /pmc/articles/PMC8716771/ /pubmed/34975965 http://dx.doi.org/10.3389/fpls.2021.779386 Text en Copyright © 2021 Kushanov, Turaev, Ernazarova, Gapparov, Oripova, Kudratova, Rafieva, Khalikov, Erjigitov, Khidirov, Kholova, Khusenov, Amanboyeva, Saha, Yu and Abdurakhmonov. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Plant Science
Kushanov, Fakhriddin N.
Turaev, Ozod S.
Ernazarova, Dilrabo K.
Gapparov, Bunyod M.
Oripova, Barno B.
Kudratova, Mukhlisa K.
Rafieva, Feruza U.
Khalikov, Kuvandik K.
Erjigitov, Doston Sh.
Khidirov, Mukhammad T.
Kholova, Madina D.
Khusenov, Naim N.
Amanboyeva, Roza S.
Saha, Sukumar
Yu, John Z.
Abdurakhmonov, Ibrokhim Y.
Genetic Diversity, QTL Mapping, and Marker-Assisted Selection Technology in Cotton (Gossypium spp.)
title Genetic Diversity, QTL Mapping, and Marker-Assisted Selection Technology in Cotton (Gossypium spp.)
title_full Genetic Diversity, QTL Mapping, and Marker-Assisted Selection Technology in Cotton (Gossypium spp.)
title_fullStr Genetic Diversity, QTL Mapping, and Marker-Assisted Selection Technology in Cotton (Gossypium spp.)
title_full_unstemmed Genetic Diversity, QTL Mapping, and Marker-Assisted Selection Technology in Cotton (Gossypium spp.)
title_short Genetic Diversity, QTL Mapping, and Marker-Assisted Selection Technology in Cotton (Gossypium spp.)
title_sort genetic diversity, qtl mapping, and marker-assisted selection technology in cotton (gossypium spp.)
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8716771/
https://www.ncbi.nlm.nih.gov/pubmed/34975965
http://dx.doi.org/10.3389/fpls.2021.779386
work_keys_str_mv AT kushanovfakhriddinn geneticdiversityqtlmappingandmarkerassistedselectiontechnologyincottongossypiumspp
AT turaevozods geneticdiversityqtlmappingandmarkerassistedselectiontechnologyincottongossypiumspp
AT ernazarovadilrabok geneticdiversityqtlmappingandmarkerassistedselectiontechnologyincottongossypiumspp
AT gapparovbunyodm geneticdiversityqtlmappingandmarkerassistedselectiontechnologyincottongossypiumspp
AT oripovabarnob geneticdiversityqtlmappingandmarkerassistedselectiontechnologyincottongossypiumspp
AT kudratovamukhlisak geneticdiversityqtlmappingandmarkerassistedselectiontechnologyincottongossypiumspp
AT rafievaferuzau geneticdiversityqtlmappingandmarkerassistedselectiontechnologyincottongossypiumspp
AT khalikovkuvandikk geneticdiversityqtlmappingandmarkerassistedselectiontechnologyincottongossypiumspp
AT erjigitovdostonsh geneticdiversityqtlmappingandmarkerassistedselectiontechnologyincottongossypiumspp
AT khidirovmukhammadt geneticdiversityqtlmappingandmarkerassistedselectiontechnologyincottongossypiumspp
AT kholovamadinad geneticdiversityqtlmappingandmarkerassistedselectiontechnologyincottongossypiumspp
AT khusenovnaimn geneticdiversityqtlmappingandmarkerassistedselectiontechnologyincottongossypiumspp
AT amanboyevarozas geneticdiversityqtlmappingandmarkerassistedselectiontechnologyincottongossypiumspp
AT sahasukumar geneticdiversityqtlmappingandmarkerassistedselectiontechnologyincottongossypiumspp
AT yujohnz geneticdiversityqtlmappingandmarkerassistedselectiontechnologyincottongossypiumspp
AT abdurakhmonovibrokhimy geneticdiversityqtlmappingandmarkerassistedselectiontechnologyincottongossypiumspp