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The reference genome and full-length transcriptome of pakchoi provide insights into cuticle formation and heat adaption

Brassica rapa includes various vegetables with high economic value. Among them, green petiole type pakchoi (B. rapa ssp. chinensis) is one of the major vegetables grown in southern China. Compared with other B. rapa varieties, green petiole type pakchoi shows a higher level of heat resistance, which...

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Autores principales: Xu, Huimin, Wang, Chunhua, Shao, Guirong, Wu, Shasha, Liu, Peng, Cao, Ping, Jiang, Peng, Wang, Shubin, Zhu, Hong, Lin, Xiao, Tauqeer, Arfa, Lin, Yizhang, Chen, Wei, Huang, Weiqun, Wen, Qingfang, Chang, Jiang, Zhong, Fenglin, Wu, Shuang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9358696/
https://www.ncbi.nlm.nih.gov/pubmed/35949690
http://dx.doi.org/10.1093/hr/uhac123
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author Xu, Huimin
Wang, Chunhua
Shao, Guirong
Wu, Shasha
Liu, Peng
Cao, Ping
Jiang, Peng
Wang, Shubin
Zhu, Hong
Lin, Xiao
Tauqeer, Arfa
Lin, Yizhang
Chen, Wei
Huang, Weiqun
Wen, Qingfang
Chang, Jiang
Zhong, Fenglin
Wu, Shuang
author_facet Xu, Huimin
Wang, Chunhua
Shao, Guirong
Wu, Shasha
Liu, Peng
Cao, Ping
Jiang, Peng
Wang, Shubin
Zhu, Hong
Lin, Xiao
Tauqeer, Arfa
Lin, Yizhang
Chen, Wei
Huang, Weiqun
Wen, Qingfang
Chang, Jiang
Zhong, Fenglin
Wu, Shuang
author_sort Xu, Huimin
collection PubMed
description Brassica rapa includes various vegetables with high economic value. Among them, green petiole type pakchoi (B. rapa ssp. chinensis) is one of the major vegetables grown in southern China. Compared with other B. rapa varieties, green petiole type pakchoi shows a higher level of heat resistance, which is partially derived from the rich epicuticular wax. Here we sequence a high-quality genome of green petiole type pakchoi, which has been widely used as the parent in breeding. Our results reveal that long terminal repeat retrotransposon insertion plays critical roles in promoting the genome expansion and transcriptional diversity of pakchoi genes through preferential insertions, particularly in cuticle biosynthetic genes. After whole-genome triplication, over-retained pakchoi genes escape stringent selection pressure, and among them a set of cuticle-related genes are retained. Using bulked-segregant analysis of a heat-resistant pakchoi cultivar, we identify a frame-shift deletion across the third exon and the subsequent intron of BrcCER1 in candidate regions. Using Nanopore long-read sequencing, we analyze the full-length transcriptome of two pakchoi cultivars with opposite sensitivity to high temperature. We find that the heat-resistant pakchoi cultivar can mitigate heat-caused leaf damage by activating an unfolded protein response, as well as by inhibiting chloroplast development and energy metabolism, which are presumably mediated by both transcriptional regulation and splicing factors. Our study provides valuable resources for Brassica functional genomics and breeding research, and deepens our understanding of plant stress resistance.
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spelling pubmed-93586962022-08-09 The reference genome and full-length transcriptome of pakchoi provide insights into cuticle formation and heat adaption Xu, Huimin Wang, Chunhua Shao, Guirong Wu, Shasha Liu, Peng Cao, Ping Jiang, Peng Wang, Shubin Zhu, Hong Lin, Xiao Tauqeer, Arfa Lin, Yizhang Chen, Wei Huang, Weiqun Wen, Qingfang Chang, Jiang Zhong, Fenglin Wu, Shuang Hortic Res Article Brassica rapa includes various vegetables with high economic value. Among them, green petiole type pakchoi (B. rapa ssp. chinensis) is one of the major vegetables grown in southern China. Compared with other B. rapa varieties, green petiole type pakchoi shows a higher level of heat resistance, which is partially derived from the rich epicuticular wax. Here we sequence a high-quality genome of green petiole type pakchoi, which has been widely used as the parent in breeding. Our results reveal that long terminal repeat retrotransposon insertion plays critical roles in promoting the genome expansion and transcriptional diversity of pakchoi genes through preferential insertions, particularly in cuticle biosynthetic genes. After whole-genome triplication, over-retained pakchoi genes escape stringent selection pressure, and among them a set of cuticle-related genes are retained. Using bulked-segregant analysis of a heat-resistant pakchoi cultivar, we identify a frame-shift deletion across the third exon and the subsequent intron of BrcCER1 in candidate regions. Using Nanopore long-read sequencing, we analyze the full-length transcriptome of two pakchoi cultivars with opposite sensitivity to high temperature. We find that the heat-resistant pakchoi cultivar can mitigate heat-caused leaf damage by activating an unfolded protein response, as well as by inhibiting chloroplast development and energy metabolism, which are presumably mediated by both transcriptional regulation and splicing factors. Our study provides valuable resources for Brassica functional genomics and breeding research, and deepens our understanding of plant stress resistance. Oxford University Press 2022-05-26 /pmc/articles/PMC9358696/ /pubmed/35949690 http://dx.doi.org/10.1093/hr/uhac123 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
Xu, Huimin
Wang, Chunhua
Shao, Guirong
Wu, Shasha
Liu, Peng
Cao, Ping
Jiang, Peng
Wang, Shubin
Zhu, Hong
Lin, Xiao
Tauqeer, Arfa
Lin, Yizhang
Chen, Wei
Huang, Weiqun
Wen, Qingfang
Chang, Jiang
Zhong, Fenglin
Wu, Shuang
The reference genome and full-length transcriptome of pakchoi provide insights into cuticle formation and heat adaption
title The reference genome and full-length transcriptome of pakchoi provide insights into cuticle formation and heat adaption
title_full The reference genome and full-length transcriptome of pakchoi provide insights into cuticle formation and heat adaption
title_fullStr The reference genome and full-length transcriptome of pakchoi provide insights into cuticle formation and heat adaption
title_full_unstemmed The reference genome and full-length transcriptome of pakchoi provide insights into cuticle formation and heat adaption
title_short The reference genome and full-length transcriptome of pakchoi provide insights into cuticle formation and heat adaption
title_sort reference genome and full-length transcriptome of pakchoi provide insights into cuticle formation and heat adaption
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9358696/
https://www.ncbi.nlm.nih.gov/pubmed/35949690
http://dx.doi.org/10.1093/hr/uhac123
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