Cargando…

Comparative Transcriptional Profiling and Preliminary Study on Heterosis Mechanism of Super-Hybrid Rice

Heterosis is a biological phenomenon whereby the offspring from two parents show improved and superior performance than either inbred parental lines. Hybrid rice is one of the most successful apotheoses in crops utilizing heterosis. Transcriptional profiling of F(1) super-hybrid rice Liangyou-2186 a...

Descripción completa

Detalles Bibliográficos
Autores principales: Song, Gui-Sheng, Zhai, Hong-Li, Peng, Yong-Gang, Zhang, Lei, Wei, Gang, Chen, Xiao-Ying, Xiao, Yu-Guo, Wang, Lili, Chen, Yue-Jun, Wu, Bin, Chen, Bin, Zhang, Yu, Chen, Hua, Feng, Xiu-Jing, Gong, Wan-Kui, Liu, Yao, Yin, Zhi-Jie, Wang, Feng, Liu, Guo-Zhen, Xu, Hong-Lin, Wei, Xiao-Li, Zhao, Xiao-Ling, Ouwerkerk, Pieter B.F., Hankemeier, Thomas, Reijmers, Theo, van der Heijden, Rob, Lu, Cong-Ming, Wang, Mei, van der Greef, Jan, Zhu, Zhen
Formato: Texto
Lenguaje:English
Publicado: Oxford University Press 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2993235/
https://www.ncbi.nlm.nih.gov/pubmed/20729474
http://dx.doi.org/10.1093/mp/ssq046
_version_ 1782192813132218368
author Song, Gui-Sheng
Zhai, Hong-Li
Peng, Yong-Gang
Zhang, Lei
Wei, Gang
Chen, Xiao-Ying
Xiao, Yu-Guo
Wang, Lili
Chen, Yue-Jun
Wu, Bin
Chen, Bin
Zhang, Yu
Chen, Hua
Feng, Xiu-Jing
Gong, Wan-Kui
Liu, Yao
Yin, Zhi-Jie
Wang, Feng
Liu, Guo-Zhen
Xu, Hong-Lin
Wei, Xiao-Li
Zhao, Xiao-Ling
Ouwerkerk, Pieter B.F.
Hankemeier, Thomas
Reijmers, Theo
van der Heijden, Rob
Lu, Cong-Ming
Wang, Mei
van der Greef, Jan
Zhu, Zhen
author_facet Song, Gui-Sheng
Zhai, Hong-Li
Peng, Yong-Gang
Zhang, Lei
Wei, Gang
Chen, Xiao-Ying
Xiao, Yu-Guo
Wang, Lili
Chen, Yue-Jun
Wu, Bin
Chen, Bin
Zhang, Yu
Chen, Hua
Feng, Xiu-Jing
Gong, Wan-Kui
Liu, Yao
Yin, Zhi-Jie
Wang, Feng
Liu, Guo-Zhen
Xu, Hong-Lin
Wei, Xiao-Li
Zhao, Xiao-Ling
Ouwerkerk, Pieter B.F.
Hankemeier, Thomas
Reijmers, Theo
van der Heijden, Rob
Lu, Cong-Ming
Wang, Mei
van der Greef, Jan
Zhu, Zhen
author_sort Song, Gui-Sheng
collection PubMed
description Heterosis is a biological phenomenon whereby the offspring from two parents show improved and superior performance than either inbred parental lines. Hybrid rice is one of the most successful apotheoses in crops utilizing heterosis. Transcriptional profiling of F(1) super-hybrid rice Liangyou-2186 and its parents by serial analysis of gene expression (SAGE) revealed 1183 differentially expressed genes (DGs), among which DGs were found significantly enriched in pathways such as photosynthesis and carbon-fixation, and most of the key genes involved in the carbon-fixation pathway exhibited up-regulated expression in F(1) hybrid rice. Moreover, increased catabolic activity of corresponding enzymes and photosynthetic efficiency were also detected, which combined to indicate that carbon fixation is enhanced in F(1) hybrid, and might probably be associated with the yield vigor and heterosis in super-hybrid rice. By correlating DGs with yield-related quantitative trait loci (QTL), a potential relationship between differential gene expression and phenotypic changes was also found. In addition, a regulatory network involving circadian-rhythms and light signaling pathways was also found, as previously reported in Arabidopsis, which suggest that such a network might also be related with heterosis in hybrid rice. Altogether, the present study provides another view for understanding the molecular mechanism underlying heterosis in rice.
format Text
id pubmed-2993235
institution National Center for Biotechnology Information
language English
publishDate 2010
publisher Oxford University Press
record_format MEDLINE/PubMed
spelling pubmed-29932352010-11-30 Comparative Transcriptional Profiling and Preliminary Study on Heterosis Mechanism of Super-Hybrid Rice Song, Gui-Sheng Zhai, Hong-Li Peng, Yong-Gang Zhang, Lei Wei, Gang Chen, Xiao-Ying Xiao, Yu-Guo Wang, Lili Chen, Yue-Jun Wu, Bin Chen, Bin Zhang, Yu Chen, Hua Feng, Xiu-Jing Gong, Wan-Kui Liu, Yao Yin, Zhi-Jie Wang, Feng Liu, Guo-Zhen Xu, Hong-Lin Wei, Xiao-Li Zhao, Xiao-Ling Ouwerkerk, Pieter B.F. Hankemeier, Thomas Reijmers, Theo van der Heijden, Rob Lu, Cong-Ming Wang, Mei van der Greef, Jan Zhu, Zhen Mol Plant Research Articles Heterosis is a biological phenomenon whereby the offspring from two parents show improved and superior performance than either inbred parental lines. Hybrid rice is one of the most successful apotheoses in crops utilizing heterosis. Transcriptional profiling of F(1) super-hybrid rice Liangyou-2186 and its parents by serial analysis of gene expression (SAGE) revealed 1183 differentially expressed genes (DGs), among which DGs were found significantly enriched in pathways such as photosynthesis and carbon-fixation, and most of the key genes involved in the carbon-fixation pathway exhibited up-regulated expression in F(1) hybrid rice. Moreover, increased catabolic activity of corresponding enzymes and photosynthetic efficiency were also detected, which combined to indicate that carbon fixation is enhanced in F(1) hybrid, and might probably be associated with the yield vigor and heterosis in super-hybrid rice. By correlating DGs with yield-related quantitative trait loci (QTL), a potential relationship between differential gene expression and phenotypic changes was also found. In addition, a regulatory network involving circadian-rhythms and light signaling pathways was also found, as previously reported in Arabidopsis, which suggest that such a network might also be related with heterosis in hybrid rice. Altogether, the present study provides another view for understanding the molecular mechanism underlying heterosis in rice. Oxford University Press 2010-11 2010-08-20 /pmc/articles/PMC2993235/ /pubmed/20729474 http://dx.doi.org/10.1093/mp/ssq046 Text en © The Author 2010. Published by the Molecular Plant Shanghai Editorial Office in association with Oxford University Press on behalf of CSPP and IPPE, SIBS, CAS. This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/2.5), which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Song, Gui-Sheng
Zhai, Hong-Li
Peng, Yong-Gang
Zhang, Lei
Wei, Gang
Chen, Xiao-Ying
Xiao, Yu-Guo
Wang, Lili
Chen, Yue-Jun
Wu, Bin
Chen, Bin
Zhang, Yu
Chen, Hua
Feng, Xiu-Jing
Gong, Wan-Kui
Liu, Yao
Yin, Zhi-Jie
Wang, Feng
Liu, Guo-Zhen
Xu, Hong-Lin
Wei, Xiao-Li
Zhao, Xiao-Ling
Ouwerkerk, Pieter B.F.
Hankemeier, Thomas
Reijmers, Theo
van der Heijden, Rob
Lu, Cong-Ming
Wang, Mei
van der Greef, Jan
Zhu, Zhen
Comparative Transcriptional Profiling and Preliminary Study on Heterosis Mechanism of Super-Hybrid Rice
title Comparative Transcriptional Profiling and Preliminary Study on Heterosis Mechanism of Super-Hybrid Rice
title_full Comparative Transcriptional Profiling and Preliminary Study on Heterosis Mechanism of Super-Hybrid Rice
title_fullStr Comparative Transcriptional Profiling and Preliminary Study on Heterosis Mechanism of Super-Hybrid Rice
title_full_unstemmed Comparative Transcriptional Profiling and Preliminary Study on Heterosis Mechanism of Super-Hybrid Rice
title_short Comparative Transcriptional Profiling and Preliminary Study on Heterosis Mechanism of Super-Hybrid Rice
title_sort comparative transcriptional profiling and preliminary study on heterosis mechanism of super-hybrid rice
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2993235/
https://www.ncbi.nlm.nih.gov/pubmed/20729474
http://dx.doi.org/10.1093/mp/ssq046
work_keys_str_mv AT songguisheng comparativetranscriptionalprofilingandpreliminarystudyonheterosismechanismofsuperhybridrice
AT zhaihongli comparativetranscriptionalprofilingandpreliminarystudyonheterosismechanismofsuperhybridrice
AT pengyonggang comparativetranscriptionalprofilingandpreliminarystudyonheterosismechanismofsuperhybridrice
AT zhanglei comparativetranscriptionalprofilingandpreliminarystudyonheterosismechanismofsuperhybridrice
AT weigang comparativetranscriptionalprofilingandpreliminarystudyonheterosismechanismofsuperhybridrice
AT chenxiaoying comparativetranscriptionalprofilingandpreliminarystudyonheterosismechanismofsuperhybridrice
AT xiaoyuguo comparativetranscriptionalprofilingandpreliminarystudyonheterosismechanismofsuperhybridrice
AT wanglili comparativetranscriptionalprofilingandpreliminarystudyonheterosismechanismofsuperhybridrice
AT chenyuejun comparativetranscriptionalprofilingandpreliminarystudyonheterosismechanismofsuperhybridrice
AT wubin comparativetranscriptionalprofilingandpreliminarystudyonheterosismechanismofsuperhybridrice
AT chenbin comparativetranscriptionalprofilingandpreliminarystudyonheterosismechanismofsuperhybridrice
AT zhangyu comparativetranscriptionalprofilingandpreliminarystudyonheterosismechanismofsuperhybridrice
AT chenhua comparativetranscriptionalprofilingandpreliminarystudyonheterosismechanismofsuperhybridrice
AT fengxiujing comparativetranscriptionalprofilingandpreliminarystudyonheterosismechanismofsuperhybridrice
AT gongwankui comparativetranscriptionalprofilingandpreliminarystudyonheterosismechanismofsuperhybridrice
AT liuyao comparativetranscriptionalprofilingandpreliminarystudyonheterosismechanismofsuperhybridrice
AT yinzhijie comparativetranscriptionalprofilingandpreliminarystudyonheterosismechanismofsuperhybridrice
AT wangfeng comparativetranscriptionalprofilingandpreliminarystudyonheterosismechanismofsuperhybridrice
AT liuguozhen comparativetranscriptionalprofilingandpreliminarystudyonheterosismechanismofsuperhybridrice
AT xuhonglin comparativetranscriptionalprofilingandpreliminarystudyonheterosismechanismofsuperhybridrice
AT weixiaoli comparativetranscriptionalprofilingandpreliminarystudyonheterosismechanismofsuperhybridrice
AT zhaoxiaoling comparativetranscriptionalprofilingandpreliminarystudyonheterosismechanismofsuperhybridrice
AT ouwerkerkpieterbf comparativetranscriptionalprofilingandpreliminarystudyonheterosismechanismofsuperhybridrice
AT hankemeierthomas comparativetranscriptionalprofilingandpreliminarystudyonheterosismechanismofsuperhybridrice
AT reijmerstheo comparativetranscriptionalprofilingandpreliminarystudyonheterosismechanismofsuperhybridrice
AT vanderheijdenrob comparativetranscriptionalprofilingandpreliminarystudyonheterosismechanismofsuperhybridrice
AT lucongming comparativetranscriptionalprofilingandpreliminarystudyonheterosismechanismofsuperhybridrice
AT wangmei comparativetranscriptionalprofilingandpreliminarystudyonheterosismechanismofsuperhybridrice
AT vandergreefjan comparativetranscriptionalprofilingandpreliminarystudyonheterosismechanismofsuperhybridrice
AT zhuzhen comparativetranscriptionalprofilingandpreliminarystudyonheterosismechanismofsuperhybridrice