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Introgressing Subgenome Components from Brassica rapa and B. carinata to B. juncea for Broadening Its Genetic Base and Exploring Intersubgenomic Heterosis

Brassica juncea (A(j)A(j)B(j)B(j)), is an allotetraploid that arose from two diploid species, B. rapa (A(r)A(r)) and B. nigra (B(n)B(n)). It is an old oilseed crop with unique favorable traits, but the genetic improvement on this species is limited. We developed an approach to broaden its genetic ba...

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Autores principales: Wei, Zili, Wang, Meng, Chang, Shihao, Wu, Chao, Liu, Peifa, Meng, Jinling, Zou, Jun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5112257/
https://www.ncbi.nlm.nih.gov/pubmed/27909440
http://dx.doi.org/10.3389/fpls.2016.01677
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author Wei, Zili
Wang, Meng
Chang, Shihao
Wu, Chao
Liu, Peifa
Meng, Jinling
Zou, Jun
author_facet Wei, Zili
Wang, Meng
Chang, Shihao
Wu, Chao
Liu, Peifa
Meng, Jinling
Zou, Jun
author_sort Wei, Zili
collection PubMed
description Brassica juncea (A(j)A(j)B(j)B(j)), is an allotetraploid that arose from two diploid species, B. rapa (A(r)A(r)) and B. nigra (B(n)B(n)). It is an old oilseed crop with unique favorable traits, but the genetic improvement on this species is limited. We developed an approach to broaden its genetic base within several generations by intensive selection. The A(r) subgenome from the Asian oil crop B. rapa (A(r)A(r)) and the B(c) subgenome from the African oil crop B. carinata (B(c)B(c)C(c)C(c)) were combined in a synthesized allohexaploid (A(r)A(r)B(c)B(c)C(c)C(c)), which was crossed with traditional B. juncea to generate pentaploid F(1) hybrids (A(r)A(j)B(c)B(j)C(c)), with subsequent self-pollination to obtain newly synthesized B. juncea (A(r/j)A(r)/(j)B(c/j)B(c)/(j)). After intensive cytological screening and phenotypic selection of fertility and agronomic traits, a population of new-type B. juncea was obtained and was found to be genetically stable at the F(6) generation. The new-type B. juncea possesses good fertility and rich genetic diversity and is distinctly divergent but not isolated from traditional B. juncea, as revealed by population genetic analysis with molecular markers. More than half of its genome was modified, showing exotic introgression and novel variation. In addition to the improvement in some traits of the new-type B. juncea lines, a considerable potential for heterosis was observed in inter-subgenomic hybrids between new-type B. juncea lines and traditional B. juncea accessions. The new-type B. juncea exhibited a stable chromosome number and a novel genome composition through multiple generations, providing insight into how to significantly broaden the genetic base of crops with subgenome introgression from their related species and the potential of exploring inter-subgenomic heterosis for hybrid breeding.
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spelling pubmed-51122572016-12-01 Introgressing Subgenome Components from Brassica rapa and B. carinata to B. juncea for Broadening Its Genetic Base and Exploring Intersubgenomic Heterosis Wei, Zili Wang, Meng Chang, Shihao Wu, Chao Liu, Peifa Meng, Jinling Zou, Jun Front Plant Sci Plant Science Brassica juncea (A(j)A(j)B(j)B(j)), is an allotetraploid that arose from two diploid species, B. rapa (A(r)A(r)) and B. nigra (B(n)B(n)). It is an old oilseed crop with unique favorable traits, but the genetic improvement on this species is limited. We developed an approach to broaden its genetic base within several generations by intensive selection. The A(r) subgenome from the Asian oil crop B. rapa (A(r)A(r)) and the B(c) subgenome from the African oil crop B. carinata (B(c)B(c)C(c)C(c)) were combined in a synthesized allohexaploid (A(r)A(r)B(c)B(c)C(c)C(c)), which was crossed with traditional B. juncea to generate pentaploid F(1) hybrids (A(r)A(j)B(c)B(j)C(c)), with subsequent self-pollination to obtain newly synthesized B. juncea (A(r/j)A(r)/(j)B(c/j)B(c)/(j)). After intensive cytological screening and phenotypic selection of fertility and agronomic traits, a population of new-type B. juncea was obtained and was found to be genetically stable at the F(6) generation. The new-type B. juncea possesses good fertility and rich genetic diversity and is distinctly divergent but not isolated from traditional B. juncea, as revealed by population genetic analysis with molecular markers. More than half of its genome was modified, showing exotic introgression and novel variation. In addition to the improvement in some traits of the new-type B. juncea lines, a considerable potential for heterosis was observed in inter-subgenomic hybrids between new-type B. juncea lines and traditional B. juncea accessions. The new-type B. juncea exhibited a stable chromosome number and a novel genome composition through multiple generations, providing insight into how to significantly broaden the genetic base of crops with subgenome introgression from their related species and the potential of exploring inter-subgenomic heterosis for hybrid breeding. Frontiers Media S.A. 2016-11-17 /pmc/articles/PMC5112257/ /pubmed/27909440 http://dx.doi.org/10.3389/fpls.2016.01677 Text en Copyright © 2016 Wei, Wang, Chang, Wu, Liu, Meng and Zou. http://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) or licensor 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
Wei, Zili
Wang, Meng
Chang, Shihao
Wu, Chao
Liu, Peifa
Meng, Jinling
Zou, Jun
Introgressing Subgenome Components from Brassica rapa and B. carinata to B. juncea for Broadening Its Genetic Base and Exploring Intersubgenomic Heterosis
title Introgressing Subgenome Components from Brassica rapa and B. carinata to B. juncea for Broadening Its Genetic Base and Exploring Intersubgenomic Heterosis
title_full Introgressing Subgenome Components from Brassica rapa and B. carinata to B. juncea for Broadening Its Genetic Base and Exploring Intersubgenomic Heterosis
title_fullStr Introgressing Subgenome Components from Brassica rapa and B. carinata to B. juncea for Broadening Its Genetic Base and Exploring Intersubgenomic Heterosis
title_full_unstemmed Introgressing Subgenome Components from Brassica rapa and B. carinata to B. juncea for Broadening Its Genetic Base and Exploring Intersubgenomic Heterosis
title_short Introgressing Subgenome Components from Brassica rapa and B. carinata to B. juncea for Broadening Its Genetic Base and Exploring Intersubgenomic Heterosis
title_sort introgressing subgenome components from brassica rapa and b. carinata to b. juncea for broadening its genetic base and exploring intersubgenomic heterosis
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5112257/
https://www.ncbi.nlm.nih.gov/pubmed/27909440
http://dx.doi.org/10.3389/fpls.2016.01677
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