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The high-quality genome of pummelo provides insights into the tissue-specific regulation of citric acid and anthocyanin during domestication

Citric acid and anthocyanin contents were co-selected during Citrus domestication. Pummelo is a founding species in the Citrus genus, but the domestication of pummelo has not been well studied. Here, we compared the citric acid and anthocyanin contents of a low citric acid pummelo (Citrus maxima LCA...

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Autores principales: Lu, Zhihao, Huang, Yue, Mao, Sangyin, Wu, Fangfang, Liu, Yong, Mao, Xiangqing, Adhikari, Prakash Babu, Xu, Yuantao, Wang, Lun, Zuo, Hao, Rao, Muhammad Junaid, Xu, Qiang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9552194/
https://www.ncbi.nlm.nih.gov/pubmed/36238347
http://dx.doi.org/10.1093/hr/uhac175
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author Lu, Zhihao
Huang, Yue
Mao, Sangyin
Wu, Fangfang
Liu, Yong
Mao, Xiangqing
Adhikari, Prakash Babu
Xu, Yuantao
Wang, Lun
Zuo, Hao
Rao, Muhammad Junaid
Xu, Qiang
author_facet Lu, Zhihao
Huang, Yue
Mao, Sangyin
Wu, Fangfang
Liu, Yong
Mao, Xiangqing
Adhikari, Prakash Babu
Xu, Yuantao
Wang, Lun
Zuo, Hao
Rao, Muhammad Junaid
Xu, Qiang
author_sort Lu, Zhihao
collection PubMed
description Citric acid and anthocyanin contents were co-selected during Citrus domestication. Pummelo is a founding species in the Citrus genus, but the domestication of pummelo has not been well studied. Here, we compared the citric acid and anthocyanin contents of a low citric acid pummelo (Citrus maxima LCA) and its high citric acid variety (HCA) from the same cultivation area in China. Our study revealed that, unlike the LCA type, the HCA variety accumulated anthocyanin in the pericarp early in fruit development. To investigate the genetic basis of acid and anthocyanin enrichment in HCA pulp and pericarp, respectively, we generated a chromosome-scale HCA genome using long-read sequence reads and Hi-C sequencing data. Transcriptome analysis and transient overexpression assays showed that the accumulation of citric acid and anthocyanin was associated with high expression of CgANTHOCYANIN1 (CgAN1), and two different MYBs transcription factors (CgPH4 and CgRuby1), respectively. Moreover, the CgAN1 promoter was more methylated in the LCA pulp than in the HCA pulp. Treatment with a DNA methylation inhibitor, 5-azacytidine, alleviated the CgAN1 promoter hypermethylation in the LCA pulp, leading to increased CgAN1 expression and citric acid content. This study provides a new high-quality pummelo genome and insight into the molecular mechanism behind the change in tissue-specific citric acid and anthocyanin accumulation during pummelo domestication and provides a conceptual basis for precise genetic manipulation in fruit flavor breeding.
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spelling pubmed-95521942022-10-12 The high-quality genome of pummelo provides insights into the tissue-specific regulation of citric acid and anthocyanin during domestication Lu, Zhihao Huang, Yue Mao, Sangyin Wu, Fangfang Liu, Yong Mao, Xiangqing Adhikari, Prakash Babu Xu, Yuantao Wang, Lun Zuo, Hao Rao, Muhammad Junaid Xu, Qiang Hortic Res Article Citric acid and anthocyanin contents were co-selected during Citrus domestication. Pummelo is a founding species in the Citrus genus, but the domestication of pummelo has not been well studied. Here, we compared the citric acid and anthocyanin contents of a low citric acid pummelo (Citrus maxima LCA) and its high citric acid variety (HCA) from the same cultivation area in China. Our study revealed that, unlike the LCA type, the HCA variety accumulated anthocyanin in the pericarp early in fruit development. To investigate the genetic basis of acid and anthocyanin enrichment in HCA pulp and pericarp, respectively, we generated a chromosome-scale HCA genome using long-read sequence reads and Hi-C sequencing data. Transcriptome analysis and transient overexpression assays showed that the accumulation of citric acid and anthocyanin was associated with high expression of CgANTHOCYANIN1 (CgAN1), and two different MYBs transcription factors (CgPH4 and CgRuby1), respectively. Moreover, the CgAN1 promoter was more methylated in the LCA pulp than in the HCA pulp. Treatment with a DNA methylation inhibitor, 5-azacytidine, alleviated the CgAN1 promoter hypermethylation in the LCA pulp, leading to increased CgAN1 expression and citric acid content. This study provides a new high-quality pummelo genome and insight into the molecular mechanism behind the change in tissue-specific citric acid and anthocyanin accumulation during pummelo domestication and provides a conceptual basis for precise genetic manipulation in fruit flavor breeding. Oxford University Press 2022-08-04 /pmc/articles/PMC9552194/ /pubmed/36238347 http://dx.doi.org/10.1093/hr/uhac175 Text en © The Author(s) 2022. Published by Oxford University Press on behalf of Nanjing Agricultural University. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Article
Lu, Zhihao
Huang, Yue
Mao, Sangyin
Wu, Fangfang
Liu, Yong
Mao, Xiangqing
Adhikari, Prakash Babu
Xu, Yuantao
Wang, Lun
Zuo, Hao
Rao, Muhammad Junaid
Xu, Qiang
The high-quality genome of pummelo provides insights into the tissue-specific regulation of citric acid and anthocyanin during domestication
title The high-quality genome of pummelo provides insights into the tissue-specific regulation of citric acid and anthocyanin during domestication
title_full The high-quality genome of pummelo provides insights into the tissue-specific regulation of citric acid and anthocyanin during domestication
title_fullStr The high-quality genome of pummelo provides insights into the tissue-specific regulation of citric acid and anthocyanin during domestication
title_full_unstemmed The high-quality genome of pummelo provides insights into the tissue-specific regulation of citric acid and anthocyanin during domestication
title_short The high-quality genome of pummelo provides insights into the tissue-specific regulation of citric acid and anthocyanin during domestication
title_sort high-quality genome of pummelo provides insights into the tissue-specific regulation of citric acid and anthocyanin during domestication
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9552194/
https://www.ncbi.nlm.nih.gov/pubmed/36238347
http://dx.doi.org/10.1093/hr/uhac175
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