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SWATH-MS Quantitative Analysis of Proteins in the Rice Inferior and Superior Spikelets during Grain Filling

Modern rice cultivars have large panicle but their yield potential is often not fully achieved due to poor grain-filling of late-flowering inferior spikelets (IS). Our earlier work suggested a broad transcriptional reprogramming during grain filling and showed a difference in gene expression between...

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Autores principales: Zhu, Fu-Yuan, Chen, Mo-Xian, Su, Yu-Wen, Xu, Xuezhong, Ye, Neng-Hui, Cao, Yun-Ying, Lin, Sheng, Liu, Tie-Yuan, Li, Hao-Xuan, Wang, Guan-Qun, Jin, Yu, Gu, Yong-Hai, Chan, Wai-Lung, Lo, Clive, Peng, Xinxiang, Zhu, Guohui, Zhang, Jianhua
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5169098/
https://www.ncbi.nlm.nih.gov/pubmed/28066479
http://dx.doi.org/10.3389/fpls.2016.01926
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author Zhu, Fu-Yuan
Chen, Mo-Xian
Su, Yu-Wen
Xu, Xuezhong
Ye, Neng-Hui
Cao, Yun-Ying
Lin, Sheng
Liu, Tie-Yuan
Li, Hao-Xuan
Wang, Guan-Qun
Jin, Yu
Gu, Yong-Hai
Chan, Wai-Lung
Lo, Clive
Peng, Xinxiang
Zhu, Guohui
Zhang, Jianhua
author_facet Zhu, Fu-Yuan
Chen, Mo-Xian
Su, Yu-Wen
Xu, Xuezhong
Ye, Neng-Hui
Cao, Yun-Ying
Lin, Sheng
Liu, Tie-Yuan
Li, Hao-Xuan
Wang, Guan-Qun
Jin, Yu
Gu, Yong-Hai
Chan, Wai-Lung
Lo, Clive
Peng, Xinxiang
Zhu, Guohui
Zhang, Jianhua
author_sort Zhu, Fu-Yuan
collection PubMed
description Modern rice cultivars have large panicle but their yield potential is often not fully achieved due to poor grain-filling of late-flowering inferior spikelets (IS). Our earlier work suggested a broad transcriptional reprogramming during grain filling and showed a difference in gene expression between IS and earlier-flowering superior spikelets (SS). However, the links between the abundances of transcripts and their corresponding proteins are unclear. In this study, a SWATH-MS (sequential window acquisition of all theoretical spectra-mass spectrometry) -based quantitative proteomic analysis has been applied to investigate SS and IS proteomes. A total of 304 proteins of widely differing functionality were observed to be differentially expressed between IS and SS. Detailed gene ontology analysis indicated that several biological processes including photosynthesis, protein metabolism, and energy metabolism are differentially regulated. Further correlation analysis revealed that abundances of most of the differentially expressed proteins are not correlated to the respective transcript levels, indicating that an extra layer of gene regulation which may exist during rice grain filling. Our findings raised an intriguing possibility that these candidate proteins may be crucial in determining the poor grain-filling of IS. Therefore, we hypothesize that the regulation of proteome changes not only occurs at the transcriptional, but also at the post-transcriptional level, during grain filling in rice.
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spelling pubmed-51690982017-01-06 SWATH-MS Quantitative Analysis of Proteins in the Rice Inferior and Superior Spikelets during Grain Filling Zhu, Fu-Yuan Chen, Mo-Xian Su, Yu-Wen Xu, Xuezhong Ye, Neng-Hui Cao, Yun-Ying Lin, Sheng Liu, Tie-Yuan Li, Hao-Xuan Wang, Guan-Qun Jin, Yu Gu, Yong-Hai Chan, Wai-Lung Lo, Clive Peng, Xinxiang Zhu, Guohui Zhang, Jianhua Front Plant Sci Plant Science Modern rice cultivars have large panicle but their yield potential is often not fully achieved due to poor grain-filling of late-flowering inferior spikelets (IS). Our earlier work suggested a broad transcriptional reprogramming during grain filling and showed a difference in gene expression between IS and earlier-flowering superior spikelets (SS). However, the links between the abundances of transcripts and their corresponding proteins are unclear. In this study, a SWATH-MS (sequential window acquisition of all theoretical spectra-mass spectrometry) -based quantitative proteomic analysis has been applied to investigate SS and IS proteomes. A total of 304 proteins of widely differing functionality were observed to be differentially expressed between IS and SS. Detailed gene ontology analysis indicated that several biological processes including photosynthesis, protein metabolism, and energy metabolism are differentially regulated. Further correlation analysis revealed that abundances of most of the differentially expressed proteins are not correlated to the respective transcript levels, indicating that an extra layer of gene regulation which may exist during rice grain filling. Our findings raised an intriguing possibility that these candidate proteins may be crucial in determining the poor grain-filling of IS. Therefore, we hypothesize that the regulation of proteome changes not only occurs at the transcriptional, but also at the post-transcriptional level, during grain filling in rice. Frontiers Media S.A. 2016-12-20 /pmc/articles/PMC5169098/ /pubmed/28066479 http://dx.doi.org/10.3389/fpls.2016.01926 Text en Copyright © 2016 Zhu, Chen, Su, Xu, Ye, Cao, Lin, Liu, Li, Wang, Jin, Gu, Chan, Lo, Peng, Zhu and Zhang. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) or licensor are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Plant Science
Zhu, Fu-Yuan
Chen, Mo-Xian
Su, Yu-Wen
Xu, Xuezhong
Ye, Neng-Hui
Cao, Yun-Ying
Lin, Sheng
Liu, Tie-Yuan
Li, Hao-Xuan
Wang, Guan-Qun
Jin, Yu
Gu, Yong-Hai
Chan, Wai-Lung
Lo, Clive
Peng, Xinxiang
Zhu, Guohui
Zhang, Jianhua
SWATH-MS Quantitative Analysis of Proteins in the Rice Inferior and Superior Spikelets during Grain Filling
title SWATH-MS Quantitative Analysis of Proteins in the Rice Inferior and Superior Spikelets during Grain Filling
title_full SWATH-MS Quantitative Analysis of Proteins in the Rice Inferior and Superior Spikelets during Grain Filling
title_fullStr SWATH-MS Quantitative Analysis of Proteins in the Rice Inferior and Superior Spikelets during Grain Filling
title_full_unstemmed SWATH-MS Quantitative Analysis of Proteins in the Rice Inferior and Superior Spikelets during Grain Filling
title_short SWATH-MS Quantitative Analysis of Proteins in the Rice Inferior and Superior Spikelets during Grain Filling
title_sort swath-ms quantitative analysis of proteins in the rice inferior and superior spikelets during grain filling
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5169098/
https://www.ncbi.nlm.nih.gov/pubmed/28066479
http://dx.doi.org/10.3389/fpls.2016.01926
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