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Sequence and structure of Brassica rapa chromosome A3

BACKGROUND: The species Brassica rapa includes important vegetable and oil crops. It also serves as an excellent model system to study polyploidy-related genome evolution because of its paleohexaploid ancestry and its close evolutionary relationships with Arabidopsis thaliana and other Brassica spec...

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Autores principales: Mun, Jeong-Hwan, Kwon, Soo-Jin, Seol, Young-Joo, Kim, Jin A, Jin, Mina, Kim, Jung Sun, Lim, Myung-Ho, Lee, Soo-In, Hong, Joon Ki, Park, Tae-Ho, Lee, Sang-Choon, Kim, Beom-Jin, Seo, Mi-Suk, Baek, Seunghoon, Lee, Min-Jee, Shin, Ja Young, Hahn, Jang-Ho, Hwang, Yoon-Jung, Lim, Ki-Byung, Park, Jee Young, Lee, Jonghoon, Yang, Tae-Jin, Yu, Hee-Ju, Choi, Ik-Young, Choi, Beom-Soon, Choi, Su Ryun, Ramchiary, Nirala, Lim, Yong Pyo, Fraser, Fiona, Drou, Nizar, Soumpourou, Eleni, Trick, Martin, Bancroft, Ian, Sharpe, Andrew G, Parkin, Isobel AP, Batley, Jacqueline, Edwards, Dave, Park, Beom-Seok
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2965386/
https://www.ncbi.nlm.nih.gov/pubmed/20875114
http://dx.doi.org/10.1186/gb-2010-11-9-r94
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author Mun, Jeong-Hwan
Kwon, Soo-Jin
Seol, Young-Joo
Kim, Jin A
Jin, Mina
Kim, Jung Sun
Lim, Myung-Ho
Lee, Soo-In
Hong, Joon Ki
Park, Tae-Ho
Lee, Sang-Choon
Kim, Beom-Jin
Seo, Mi-Suk
Baek, Seunghoon
Lee, Min-Jee
Shin, Ja Young
Hahn, Jang-Ho
Hwang, Yoon-Jung
Lim, Ki-Byung
Park, Jee Young
Lee, Jonghoon
Yang, Tae-Jin
Yu, Hee-Ju
Choi, Ik-Young
Choi, Beom-Soon
Choi, Su Ryun
Ramchiary, Nirala
Lim, Yong Pyo
Fraser, Fiona
Drou, Nizar
Soumpourou, Eleni
Trick, Martin
Bancroft, Ian
Sharpe, Andrew G
Parkin, Isobel AP
Batley, Jacqueline
Edwards, Dave
Park, Beom-Seok
author_facet Mun, Jeong-Hwan
Kwon, Soo-Jin
Seol, Young-Joo
Kim, Jin A
Jin, Mina
Kim, Jung Sun
Lim, Myung-Ho
Lee, Soo-In
Hong, Joon Ki
Park, Tae-Ho
Lee, Sang-Choon
Kim, Beom-Jin
Seo, Mi-Suk
Baek, Seunghoon
Lee, Min-Jee
Shin, Ja Young
Hahn, Jang-Ho
Hwang, Yoon-Jung
Lim, Ki-Byung
Park, Jee Young
Lee, Jonghoon
Yang, Tae-Jin
Yu, Hee-Ju
Choi, Ik-Young
Choi, Beom-Soon
Choi, Su Ryun
Ramchiary, Nirala
Lim, Yong Pyo
Fraser, Fiona
Drou, Nizar
Soumpourou, Eleni
Trick, Martin
Bancroft, Ian
Sharpe, Andrew G
Parkin, Isobel AP
Batley, Jacqueline
Edwards, Dave
Park, Beom-Seok
author_sort Mun, Jeong-Hwan
collection PubMed
description BACKGROUND: The species Brassica rapa includes important vegetable and oil crops. It also serves as an excellent model system to study polyploidy-related genome evolution because of its paleohexaploid ancestry and its close evolutionary relationships with Arabidopsis thaliana and other Brassica species with larger genomes. Therefore, its genome sequence will be used to accelerate both basic research on genome evolution and applied research across the cultivated Brassica species. RESULTS: We have determined and analyzed the sequence of B. rapa chromosome A3. We obtained 31.9 Mb of sequences, organized into nine contigs, which incorporated 348 overlapping BAC clones. Annotation revealed 7,058 protein-coding genes, with an average gene density of 4.6 kb per gene. Analysis of chromosome collinearity with the A. thaliana genome identified conserved synteny blocks encompassing the whole of the B. rapa chromosome A3 and sections of four A. thaliana chromosomes. The frequency of tandem duplication of genes differed between the conserved genome segments in B. rapa and A. thaliana, indicating differential rates of occurrence/retention of such duplicate copies of genes. Analysis of 'ancestral karyotype' genome building blocks enabled the development of a hypothetical model for the derivation of the B. rapa chromosome A3. CONCLUSIONS: We report the near-complete chromosome sequence from a dicotyledonous crop species. This provides an example of the complexity of genome evolution following polyploidy. The high degree of contiguity afforded by the clone-by-clone approach provides a benchmark for the performance of whole genome shotgun approaches presently being applied in B. rapa and other species with complex genomes.
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spelling pubmed-29653862010-10-28 Sequence and structure of Brassica rapa chromosome A3 Mun, Jeong-Hwan Kwon, Soo-Jin Seol, Young-Joo Kim, Jin A Jin, Mina Kim, Jung Sun Lim, Myung-Ho Lee, Soo-In Hong, Joon Ki Park, Tae-Ho Lee, Sang-Choon Kim, Beom-Jin Seo, Mi-Suk Baek, Seunghoon Lee, Min-Jee Shin, Ja Young Hahn, Jang-Ho Hwang, Yoon-Jung Lim, Ki-Byung Park, Jee Young Lee, Jonghoon Yang, Tae-Jin Yu, Hee-Ju Choi, Ik-Young Choi, Beom-Soon Choi, Su Ryun Ramchiary, Nirala Lim, Yong Pyo Fraser, Fiona Drou, Nizar Soumpourou, Eleni Trick, Martin Bancroft, Ian Sharpe, Andrew G Parkin, Isobel AP Batley, Jacqueline Edwards, Dave Park, Beom-Seok Genome Biol Research BACKGROUND: The species Brassica rapa includes important vegetable and oil crops. It also serves as an excellent model system to study polyploidy-related genome evolution because of its paleohexaploid ancestry and its close evolutionary relationships with Arabidopsis thaliana and other Brassica species with larger genomes. Therefore, its genome sequence will be used to accelerate both basic research on genome evolution and applied research across the cultivated Brassica species. RESULTS: We have determined and analyzed the sequence of B. rapa chromosome A3. We obtained 31.9 Mb of sequences, organized into nine contigs, which incorporated 348 overlapping BAC clones. Annotation revealed 7,058 protein-coding genes, with an average gene density of 4.6 kb per gene. Analysis of chromosome collinearity with the A. thaliana genome identified conserved synteny blocks encompassing the whole of the B. rapa chromosome A3 and sections of four A. thaliana chromosomes. The frequency of tandem duplication of genes differed between the conserved genome segments in B. rapa and A. thaliana, indicating differential rates of occurrence/retention of such duplicate copies of genes. Analysis of 'ancestral karyotype' genome building blocks enabled the development of a hypothetical model for the derivation of the B. rapa chromosome A3. CONCLUSIONS: We report the near-complete chromosome sequence from a dicotyledonous crop species. This provides an example of the complexity of genome evolution following polyploidy. The high degree of contiguity afforded by the clone-by-clone approach provides a benchmark for the performance of whole genome shotgun approaches presently being applied in B. rapa and other species with complex genomes. BioMed Central 2010 2010-09-27 /pmc/articles/PMC2965386/ /pubmed/20875114 http://dx.doi.org/10.1186/gb-2010-11-9-r94 Text en Copyright ©2010 Mun et al.; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research
Mun, Jeong-Hwan
Kwon, Soo-Jin
Seol, Young-Joo
Kim, Jin A
Jin, Mina
Kim, Jung Sun
Lim, Myung-Ho
Lee, Soo-In
Hong, Joon Ki
Park, Tae-Ho
Lee, Sang-Choon
Kim, Beom-Jin
Seo, Mi-Suk
Baek, Seunghoon
Lee, Min-Jee
Shin, Ja Young
Hahn, Jang-Ho
Hwang, Yoon-Jung
Lim, Ki-Byung
Park, Jee Young
Lee, Jonghoon
Yang, Tae-Jin
Yu, Hee-Ju
Choi, Ik-Young
Choi, Beom-Soon
Choi, Su Ryun
Ramchiary, Nirala
Lim, Yong Pyo
Fraser, Fiona
Drou, Nizar
Soumpourou, Eleni
Trick, Martin
Bancroft, Ian
Sharpe, Andrew G
Parkin, Isobel AP
Batley, Jacqueline
Edwards, Dave
Park, Beom-Seok
Sequence and structure of Brassica rapa chromosome A3
title Sequence and structure of Brassica rapa chromosome A3
title_full Sequence and structure of Brassica rapa chromosome A3
title_fullStr Sequence and structure of Brassica rapa chromosome A3
title_full_unstemmed Sequence and structure of Brassica rapa chromosome A3
title_short Sequence and structure of Brassica rapa chromosome A3
title_sort sequence and structure of brassica rapa chromosome a3
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2965386/
https://www.ncbi.nlm.nih.gov/pubmed/20875114
http://dx.doi.org/10.1186/gb-2010-11-9-r94
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