Cargando…

Sequencing of Euscaphis konishii Endocarp Transcriptome Points to Molecular Mechanisms of Endocarp Coloration

Flower and fruit colors are of vital importance to the ecology and economic market value of plants. The mechanisms of flower and fruit coloration have been well studied, especially among ornamental flower plants and cultivated fruits. As people pay more attention to exocarp coloration, the endocarp...

Descripción completa

Detalles Bibliográficos
Autores principales: Yuan, Xueyan, Sun, Weihong, Zou, Xiaoxing, Liu, Bobin, Huang, Wei, Chen, Zeming, Li, Yanlei, Qiu, Meng-Yuan, Liu, Zhong-Jian, Mao, Yanling, Zou, Shuang-Quan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6214000/
https://www.ncbi.nlm.nih.gov/pubmed/30336592
http://dx.doi.org/10.3390/ijms19103209
_version_ 1783367906843688960
author Yuan, Xueyan
Sun, Weihong
Zou, Xiaoxing
Liu, Bobin
Huang, Wei
Chen, Zeming
Li, Yanlei
Qiu, Meng-Yuan
Liu, Zhong-Jian
Mao, Yanling
Zou, Shuang-Quan
author_facet Yuan, Xueyan
Sun, Weihong
Zou, Xiaoxing
Liu, Bobin
Huang, Wei
Chen, Zeming
Li, Yanlei
Qiu, Meng-Yuan
Liu, Zhong-Jian
Mao, Yanling
Zou, Shuang-Quan
author_sort Yuan, Xueyan
collection PubMed
description Flower and fruit colors are of vital importance to the ecology and economic market value of plants. The mechanisms of flower and fruit coloration have been well studied, especially among ornamental flower plants and cultivated fruits. As people pay more attention to exocarp coloration, the endocarp coloration in some species has often been ignored. Here, we report on the molecular mechanism of endocarp coloration in three development stages of Euscaphis konishii. The results show that endocarp reddening is closely related to anthocyanin accumulation, and a total of 86,120 unigenes were assembled, with a mean length of 893 bp (N50 length of 1642 bp). We identified a large number of differentially expressed genes associated with endocarp coloration, including anthocyanin biosynthesis, carotenoid biosynthesis, and chlorophyll breakdown. The genes participating in each step of the anthocyanin biosynthesis were found in the transcriptome dataset, but a few genes were found in the carotenoid biosynthesis and chlorophyll breakdown. In addition, the candidate R2R3-MYB transcription factors and candidate glutathione S-transferase transport genes, which likely regulate the anthocyanin biosynthesis, were identified. This study offers a platform for E. konishii functional genomic research and provides a reference for revealing the regulatory mechanisms of endocarp reddening.
format Online
Article
Text
id pubmed-6214000
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-62140002018-11-14 Sequencing of Euscaphis konishii Endocarp Transcriptome Points to Molecular Mechanisms of Endocarp Coloration Yuan, Xueyan Sun, Weihong Zou, Xiaoxing Liu, Bobin Huang, Wei Chen, Zeming Li, Yanlei Qiu, Meng-Yuan Liu, Zhong-Jian Mao, Yanling Zou, Shuang-Quan Int J Mol Sci Article Flower and fruit colors are of vital importance to the ecology and economic market value of plants. The mechanisms of flower and fruit coloration have been well studied, especially among ornamental flower plants and cultivated fruits. As people pay more attention to exocarp coloration, the endocarp coloration in some species has often been ignored. Here, we report on the molecular mechanism of endocarp coloration in three development stages of Euscaphis konishii. The results show that endocarp reddening is closely related to anthocyanin accumulation, and a total of 86,120 unigenes were assembled, with a mean length of 893 bp (N50 length of 1642 bp). We identified a large number of differentially expressed genes associated with endocarp coloration, including anthocyanin biosynthesis, carotenoid biosynthesis, and chlorophyll breakdown. The genes participating in each step of the anthocyanin biosynthesis were found in the transcriptome dataset, but a few genes were found in the carotenoid biosynthesis and chlorophyll breakdown. In addition, the candidate R2R3-MYB transcription factors and candidate glutathione S-transferase transport genes, which likely regulate the anthocyanin biosynthesis, were identified. This study offers a platform for E. konishii functional genomic research and provides a reference for revealing the regulatory mechanisms of endocarp reddening. MDPI 2018-10-17 /pmc/articles/PMC6214000/ /pubmed/30336592 http://dx.doi.org/10.3390/ijms19103209 Text en © 2018 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Yuan, Xueyan
Sun, Weihong
Zou, Xiaoxing
Liu, Bobin
Huang, Wei
Chen, Zeming
Li, Yanlei
Qiu, Meng-Yuan
Liu, Zhong-Jian
Mao, Yanling
Zou, Shuang-Quan
Sequencing of Euscaphis konishii Endocarp Transcriptome Points to Molecular Mechanisms of Endocarp Coloration
title Sequencing of Euscaphis konishii Endocarp Transcriptome Points to Molecular Mechanisms of Endocarp Coloration
title_full Sequencing of Euscaphis konishii Endocarp Transcriptome Points to Molecular Mechanisms of Endocarp Coloration
title_fullStr Sequencing of Euscaphis konishii Endocarp Transcriptome Points to Molecular Mechanisms of Endocarp Coloration
title_full_unstemmed Sequencing of Euscaphis konishii Endocarp Transcriptome Points to Molecular Mechanisms of Endocarp Coloration
title_short Sequencing of Euscaphis konishii Endocarp Transcriptome Points to Molecular Mechanisms of Endocarp Coloration
title_sort sequencing of euscaphis konishii endocarp transcriptome points to molecular mechanisms of endocarp coloration
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6214000/
https://www.ncbi.nlm.nih.gov/pubmed/30336592
http://dx.doi.org/10.3390/ijms19103209
work_keys_str_mv AT yuanxueyan sequencingofeuscaphiskonishiiendocarptranscriptomepointstomolecularmechanismsofendocarpcoloration
AT sunweihong sequencingofeuscaphiskonishiiendocarptranscriptomepointstomolecularmechanismsofendocarpcoloration
AT zouxiaoxing sequencingofeuscaphiskonishiiendocarptranscriptomepointstomolecularmechanismsofendocarpcoloration
AT liubobin sequencingofeuscaphiskonishiiendocarptranscriptomepointstomolecularmechanismsofendocarpcoloration
AT huangwei sequencingofeuscaphiskonishiiendocarptranscriptomepointstomolecularmechanismsofendocarpcoloration
AT chenzeming sequencingofeuscaphiskonishiiendocarptranscriptomepointstomolecularmechanismsofendocarpcoloration
AT liyanlei sequencingofeuscaphiskonishiiendocarptranscriptomepointstomolecularmechanismsofendocarpcoloration
AT qiumengyuan sequencingofeuscaphiskonishiiendocarptranscriptomepointstomolecularmechanismsofendocarpcoloration
AT liuzhongjian sequencingofeuscaphiskonishiiendocarptranscriptomepointstomolecularmechanismsofendocarpcoloration
AT maoyanling sequencingofeuscaphiskonishiiendocarptranscriptomepointstomolecularmechanismsofendocarpcoloration
AT zoushuangquan sequencingofeuscaphiskonishiiendocarptranscriptomepointstomolecularmechanismsofendocarpcoloration