Cargando…

Introgression of opaque2 into Waxy Maize Causes Extensive Biochemical and Proteomic Changes in Endosperm

Waxy maize is prevalently grown in China and other countries due to the excellent characters and economic value. However, its low content of lysine can’t meet the nutritional requirements of humans and livestock. In the present study, we introgressed the opaque2 (o2) allele into waxy maize line Zhao...

Descripción completa

Detalles Bibliográficos
Autores principales: Zhou, Zhiqiang, Song, Liya, Zhang, Xiaoxing, Li, Xinhai, Yan, Na, Xia, Renpei, Zhu, Hui, Weng, Jianfeng, Hao, Zhuanfang, Zhang, Degui, Yong, Hongjun, Li, Mingshun, Zhang, Shihuang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4938266/
https://www.ncbi.nlm.nih.gov/pubmed/27391593
http://dx.doi.org/10.1371/journal.pone.0158971
_version_ 1782441831565361152
author Zhou, Zhiqiang
Song, Liya
Zhang, Xiaoxing
Li, Xinhai
Yan, Na
Xia, Renpei
Zhu, Hui
Weng, Jianfeng
Hao, Zhuanfang
Zhang, Degui
Yong, Hongjun
Li, Mingshun
Zhang, Shihuang
author_facet Zhou, Zhiqiang
Song, Liya
Zhang, Xiaoxing
Li, Xinhai
Yan, Na
Xia, Renpei
Zhu, Hui
Weng, Jianfeng
Hao, Zhuanfang
Zhang, Degui
Yong, Hongjun
Li, Mingshun
Zhang, Shihuang
author_sort Zhou, Zhiqiang
collection PubMed
description Waxy maize is prevalently grown in China and other countries due to the excellent characters and economic value. However, its low content of lysine can’t meet the nutritional requirements of humans and livestock. In the present study, we introgressed the opaque2 (o2) allele into waxy maize line Zhao OP-6/O2O2 by using marker-assisted selection (MAS) technique and successfully improved the lysine content and quality of waxy maize. Transcript abundance analysis indicated that the wx1 expression levels had no difference between Zhao OP-6/o2o2 and Zhao OP-6/O2O2. However, Zhao OP-6/o2o2 was characterized by a phenotype of hard and vitreous kernels and accumulation of protein bodies at smaller size (one third of that of parents) but in larger numbers. Biochemical analyses showed that Zhao OP-6/o2o2 had 16.7% less free amino acids than Zhao OP-6/O2O2, especially those derived from glycolytic intermediates, but its content of lysine was increased by 51.6% (0.47% vs. 0.31%). The content of amylopectin was 98.5% in Zhao OP-6/o2o2, significantly higher than that in Zhao OP-6/O2O2 (97.7%). Proteomic analyses indicated that o2 introgression not only decreased the accumulation of various zein proteins except for 27-kDa γ-zein, but also affected other endosperm proteins related to amino acid biosynthesis, starch-protein balance, stress response and signal transduction. This study gives us an intriguing insight into the metabolism changes in endosperm of waxy maize introgressed with opaque2.
format Online
Article
Text
id pubmed-4938266
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-49382662016-07-22 Introgression of opaque2 into Waxy Maize Causes Extensive Biochemical and Proteomic Changes in Endosperm Zhou, Zhiqiang Song, Liya Zhang, Xiaoxing Li, Xinhai Yan, Na Xia, Renpei Zhu, Hui Weng, Jianfeng Hao, Zhuanfang Zhang, Degui Yong, Hongjun Li, Mingshun Zhang, Shihuang PLoS One Research Article Waxy maize is prevalently grown in China and other countries due to the excellent characters and economic value. However, its low content of lysine can’t meet the nutritional requirements of humans and livestock. In the present study, we introgressed the opaque2 (o2) allele into waxy maize line Zhao OP-6/O2O2 by using marker-assisted selection (MAS) technique and successfully improved the lysine content and quality of waxy maize. Transcript abundance analysis indicated that the wx1 expression levels had no difference between Zhao OP-6/o2o2 and Zhao OP-6/O2O2. However, Zhao OP-6/o2o2 was characterized by a phenotype of hard and vitreous kernels and accumulation of protein bodies at smaller size (one third of that of parents) but in larger numbers. Biochemical analyses showed that Zhao OP-6/o2o2 had 16.7% less free amino acids than Zhao OP-6/O2O2, especially those derived from glycolytic intermediates, but its content of lysine was increased by 51.6% (0.47% vs. 0.31%). The content of amylopectin was 98.5% in Zhao OP-6/o2o2, significantly higher than that in Zhao OP-6/O2O2 (97.7%). Proteomic analyses indicated that o2 introgression not only decreased the accumulation of various zein proteins except for 27-kDa γ-zein, but also affected other endosperm proteins related to amino acid biosynthesis, starch-protein balance, stress response and signal transduction. This study gives us an intriguing insight into the metabolism changes in endosperm of waxy maize introgressed with opaque2. Public Library of Science 2016-07-08 /pmc/articles/PMC4938266/ /pubmed/27391593 http://dx.doi.org/10.1371/journal.pone.0158971 Text en © 2016 Zhou et al 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 use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Zhou, Zhiqiang
Song, Liya
Zhang, Xiaoxing
Li, Xinhai
Yan, Na
Xia, Renpei
Zhu, Hui
Weng, Jianfeng
Hao, Zhuanfang
Zhang, Degui
Yong, Hongjun
Li, Mingshun
Zhang, Shihuang
Introgression of opaque2 into Waxy Maize Causes Extensive Biochemical and Proteomic Changes in Endosperm
title Introgression of opaque2 into Waxy Maize Causes Extensive Biochemical and Proteomic Changes in Endosperm
title_full Introgression of opaque2 into Waxy Maize Causes Extensive Biochemical and Proteomic Changes in Endosperm
title_fullStr Introgression of opaque2 into Waxy Maize Causes Extensive Biochemical and Proteomic Changes in Endosperm
title_full_unstemmed Introgression of opaque2 into Waxy Maize Causes Extensive Biochemical and Proteomic Changes in Endosperm
title_short Introgression of opaque2 into Waxy Maize Causes Extensive Biochemical and Proteomic Changes in Endosperm
title_sort introgression of opaque2 into waxy maize causes extensive biochemical and proteomic changes in endosperm
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4938266/
https://www.ncbi.nlm.nih.gov/pubmed/27391593
http://dx.doi.org/10.1371/journal.pone.0158971
work_keys_str_mv AT zhouzhiqiang introgressionofopaque2intowaxymaizecausesextensivebiochemicalandproteomicchangesinendosperm
AT songliya introgressionofopaque2intowaxymaizecausesextensivebiochemicalandproteomicchangesinendosperm
AT zhangxiaoxing introgressionofopaque2intowaxymaizecausesextensivebiochemicalandproteomicchangesinendosperm
AT lixinhai introgressionofopaque2intowaxymaizecausesextensivebiochemicalandproteomicchangesinendosperm
AT yanna introgressionofopaque2intowaxymaizecausesextensivebiochemicalandproteomicchangesinendosperm
AT xiarenpei introgressionofopaque2intowaxymaizecausesextensivebiochemicalandproteomicchangesinendosperm
AT zhuhui introgressionofopaque2intowaxymaizecausesextensivebiochemicalandproteomicchangesinendosperm
AT wengjianfeng introgressionofopaque2intowaxymaizecausesextensivebiochemicalandproteomicchangesinendosperm
AT haozhuanfang introgressionofopaque2intowaxymaizecausesextensivebiochemicalandproteomicchangesinendosperm
AT zhangdegui introgressionofopaque2intowaxymaizecausesextensivebiochemicalandproteomicchangesinendosperm
AT yonghongjun introgressionofopaque2intowaxymaizecausesextensivebiochemicalandproteomicchangesinendosperm
AT limingshun introgressionofopaque2intowaxymaizecausesextensivebiochemicalandproteomicchangesinendosperm
AT zhangshihuang introgressionofopaque2intowaxymaizecausesextensivebiochemicalandproteomicchangesinendosperm