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Draft genome sequence of Solanum aethiopicum provides insights into disease resistance, drought tolerance, and the evolution of the genome
BACKGROUND: The African eggplant (Solanum aethiopicum) is a nutritious traditional vegetable used in many African countries, including Uganda and Nigeria. It is thought to have been domesticated in Africa from its wild relative, Solanum anguivi. S. aethiopicum has been routinely used as a source of...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Oxford University Press
2019
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6771550/ https://www.ncbi.nlm.nih.gov/pubmed/31574156 http://dx.doi.org/10.1093/gigascience/giz115 |
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author | Song, Bo Song, Yue Fu, Yuan Kizito, Elizabeth Balyejusa Kamenya, Sandra Ndagire Kabod, Pamela Nahamya Liu, Huan Muthemba, Samuel Kariba, Robert Njuguna, Joyce Maina, Solomon Stomeo, Francesca Djikeng, Appolinaire Hendre, Prasad S Chen, Xiaoli Chen, Wenbin Li, Xiuli Sun, Wenjing Wang, Sibo Cheng, Shifeng Muchugi, Alice Jamnadass, Ramni Shapiro, Howard-Yana Van Deynze, Allen Yang, Huanming Wang, Jian Xu, Xun Odeny, Damaris Achieng Liu, Xin |
author_facet | Song, Bo Song, Yue Fu, Yuan Kizito, Elizabeth Balyejusa Kamenya, Sandra Ndagire Kabod, Pamela Nahamya Liu, Huan Muthemba, Samuel Kariba, Robert Njuguna, Joyce Maina, Solomon Stomeo, Francesca Djikeng, Appolinaire Hendre, Prasad S Chen, Xiaoli Chen, Wenbin Li, Xiuli Sun, Wenjing Wang, Sibo Cheng, Shifeng Muchugi, Alice Jamnadass, Ramni Shapiro, Howard-Yana Van Deynze, Allen Yang, Huanming Wang, Jian Xu, Xun Odeny, Damaris Achieng Liu, Xin |
author_sort | Song, Bo |
collection | PubMed |
description | BACKGROUND: The African eggplant (Solanum aethiopicum) is a nutritious traditional vegetable used in many African countries, including Uganda and Nigeria. It is thought to have been domesticated in Africa from its wild relative, Solanum anguivi. S. aethiopicum has been routinely used as a source of disease resistance genes for several Solanaceae crops, including Solanum melongena. A lack of genomic resources has meant that breeding of S. aethiopicum has lagged behind other vegetable crops. RESULTS: We assembled a 1.02-Gb draft genome of S. aethiopicum, which contained predominantly repetitive sequences (78.9%). We annotated 37,681 gene models, including 34,906 protein-coding genes. Expansion of disease resistance genes was observed via 2 rounds of amplification of long terminal repeat retrotransposons, which may have occurred ∼1.25 and 3.5 million years ago, respectively. By resequencing 65 S. aethiopicum and S. anguivi genotypes, 18,614,838 single-nucleotide polymorphisms were identified, of which 34,171 were located within disease resistance genes. Analysis of domestication and demographic history revealed active selection for genes involved in drought tolerance in both “Gilo” and “Shum” groups. A pan-genome of S. aethiopicum was assembled, containing 51,351 protein-coding genes; 7,069 of these genes were missing from the reference genome. CONCLUSIONS: The genome sequence of S. aethiopicum enhances our understanding of its biotic and abiotic resistance. The single-nucleotide polymorphisms identified are immediately available for use by breeders. The information provided here will accelerate selection and breeding of the African eggplant, as well as other crops within the Solanaceae family. |
format | Online Article Text |
id | pubmed-6771550 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2019 |
publisher | Oxford University Press |
record_format | MEDLINE/PubMed |
spelling | pubmed-67715502019-10-07 Draft genome sequence of Solanum aethiopicum provides insights into disease resistance, drought tolerance, and the evolution of the genome Song, Bo Song, Yue Fu, Yuan Kizito, Elizabeth Balyejusa Kamenya, Sandra Ndagire Kabod, Pamela Nahamya Liu, Huan Muthemba, Samuel Kariba, Robert Njuguna, Joyce Maina, Solomon Stomeo, Francesca Djikeng, Appolinaire Hendre, Prasad S Chen, Xiaoli Chen, Wenbin Li, Xiuli Sun, Wenjing Wang, Sibo Cheng, Shifeng Muchugi, Alice Jamnadass, Ramni Shapiro, Howard-Yana Van Deynze, Allen Yang, Huanming Wang, Jian Xu, Xun Odeny, Damaris Achieng Liu, Xin Gigascience Research BACKGROUND: The African eggplant (Solanum aethiopicum) is a nutritious traditional vegetable used in many African countries, including Uganda and Nigeria. It is thought to have been domesticated in Africa from its wild relative, Solanum anguivi. S. aethiopicum has been routinely used as a source of disease resistance genes for several Solanaceae crops, including Solanum melongena. A lack of genomic resources has meant that breeding of S. aethiopicum has lagged behind other vegetable crops. RESULTS: We assembled a 1.02-Gb draft genome of S. aethiopicum, which contained predominantly repetitive sequences (78.9%). We annotated 37,681 gene models, including 34,906 protein-coding genes. Expansion of disease resistance genes was observed via 2 rounds of amplification of long terminal repeat retrotransposons, which may have occurred ∼1.25 and 3.5 million years ago, respectively. By resequencing 65 S. aethiopicum and S. anguivi genotypes, 18,614,838 single-nucleotide polymorphisms were identified, of which 34,171 were located within disease resistance genes. Analysis of domestication and demographic history revealed active selection for genes involved in drought tolerance in both “Gilo” and “Shum” groups. A pan-genome of S. aethiopicum was assembled, containing 51,351 protein-coding genes; 7,069 of these genes were missing from the reference genome. CONCLUSIONS: The genome sequence of S. aethiopicum enhances our understanding of its biotic and abiotic resistance. The single-nucleotide polymorphisms identified are immediately available for use by breeders. The information provided here will accelerate selection and breeding of the African eggplant, as well as other crops within the Solanaceae family. Oxford University Press 2019-10-01 /pmc/articles/PMC6771550/ /pubmed/31574156 http://dx.doi.org/10.1093/gigascience/giz115 Text en © The Author(s) 2019. Published by Oxford University Press. http://creativecommons.org/licenses/by/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited. |
spellingShingle | Research Song, Bo Song, Yue Fu, Yuan Kizito, Elizabeth Balyejusa Kamenya, Sandra Ndagire Kabod, Pamela Nahamya Liu, Huan Muthemba, Samuel Kariba, Robert Njuguna, Joyce Maina, Solomon Stomeo, Francesca Djikeng, Appolinaire Hendre, Prasad S Chen, Xiaoli Chen, Wenbin Li, Xiuli Sun, Wenjing Wang, Sibo Cheng, Shifeng Muchugi, Alice Jamnadass, Ramni Shapiro, Howard-Yana Van Deynze, Allen Yang, Huanming Wang, Jian Xu, Xun Odeny, Damaris Achieng Liu, Xin Draft genome sequence of Solanum aethiopicum provides insights into disease resistance, drought tolerance, and the evolution of the genome |
title | Draft genome sequence of Solanum aethiopicum provides insights into disease resistance, drought tolerance, and the evolution of the genome |
title_full | Draft genome sequence of Solanum aethiopicum provides insights into disease resistance, drought tolerance, and the evolution of the genome |
title_fullStr | Draft genome sequence of Solanum aethiopicum provides insights into disease resistance, drought tolerance, and the evolution of the genome |
title_full_unstemmed | Draft genome sequence of Solanum aethiopicum provides insights into disease resistance, drought tolerance, and the evolution of the genome |
title_short | Draft genome sequence of Solanum aethiopicum provides insights into disease resistance, drought tolerance, and the evolution of the genome |
title_sort | draft genome sequence of solanum aethiopicum provides insights into disease resistance, drought tolerance, and the evolution of the genome |
topic | Research |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6771550/ https://www.ncbi.nlm.nih.gov/pubmed/31574156 http://dx.doi.org/10.1093/gigascience/giz115 |
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