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A label-free differential quantitative mass spectrometry method for the characterization and identification of protein changes during citrus fruit development

BACKGROUND: Citrus is one of the most important and widely grown commodity fruit crops. In this study a label-free LC-MS/MS based shot-gun proteomics approach was taken to explore three main stages of citrus fruit development. These approaches were used to identify and evaluate changes occurring in...

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Autores principales: Katz, Ehud, Fon, Mario, Eigenheer, Richard A, Phinney, Brett S, Fass, Joseph N, Lin, Dawei, Sadka, Avi, Blumwald, Eduardo
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3017515/
https://www.ncbi.nlm.nih.gov/pubmed/21162737
http://dx.doi.org/10.1186/1477-5956-8-68
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author Katz, Ehud
Fon, Mario
Eigenheer, Richard A
Phinney, Brett S
Fass, Joseph N
Lin, Dawei
Sadka, Avi
Blumwald, Eduardo
author_facet Katz, Ehud
Fon, Mario
Eigenheer, Richard A
Phinney, Brett S
Fass, Joseph N
Lin, Dawei
Sadka, Avi
Blumwald, Eduardo
author_sort Katz, Ehud
collection PubMed
description BACKGROUND: Citrus is one of the most important and widely grown commodity fruit crops. In this study a label-free LC-MS/MS based shot-gun proteomics approach was taken to explore three main stages of citrus fruit development. These approaches were used to identify and evaluate changes occurring in juice sac cells in various metabolic pathways affecting citrus fruit development and quality. RESULTS: Protein changes in citrus juice sac cells were identified and quantified using label-free shotgun methodologies. Two alternative methods, differential mass-spectrometry (dMS) and spectral counting (SC) were used to analyze protein changes occurring during earlier and late stages of fruit development. Both methods were compared in order to develop a proteomics workflow that could be used in a non-model plant lacking a sequenced genome. In order to resolve the bioinformatics limitations of EST databases from species that lack a full sequenced genome, we established iCitrus. iCitrus is a comprehensive sequence database created by merging three major sources of sequences (HarvEST:citrus, NCBI/citrus/unigenes, NCBI/citrus/proteins) and improving the annotation of existing unigenes. iCitrus provided a useful bioinformatics tool for the high-throughput identification of citrus proteins. We have identified approximately 1500 citrus proteins expressed in fruit juice sac cells and quantified the changes of their expression during fruit development. Our results showed that both dMS and SC provided significant information on protein changes, with dMS providing a higher accuracy. CONCLUSION: Our data supports the notion of the complementary use of dMS and SC for label-free comparative proteomics, broadening the identification spectrum and strengthening the identification of trends in protein expression changes during the particular processes being compared.
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spelling pubmed-30175152011-01-08 A label-free differential quantitative mass spectrometry method for the characterization and identification of protein changes during citrus fruit development Katz, Ehud Fon, Mario Eigenheer, Richard A Phinney, Brett S Fass, Joseph N Lin, Dawei Sadka, Avi Blumwald, Eduardo Proteome Sci Research BACKGROUND: Citrus is one of the most important and widely grown commodity fruit crops. In this study a label-free LC-MS/MS based shot-gun proteomics approach was taken to explore three main stages of citrus fruit development. These approaches were used to identify and evaluate changes occurring in juice sac cells in various metabolic pathways affecting citrus fruit development and quality. RESULTS: Protein changes in citrus juice sac cells were identified and quantified using label-free shotgun methodologies. Two alternative methods, differential mass-spectrometry (dMS) and spectral counting (SC) were used to analyze protein changes occurring during earlier and late stages of fruit development. Both methods were compared in order to develop a proteomics workflow that could be used in a non-model plant lacking a sequenced genome. In order to resolve the bioinformatics limitations of EST databases from species that lack a full sequenced genome, we established iCitrus. iCitrus is a comprehensive sequence database created by merging three major sources of sequences (HarvEST:citrus, NCBI/citrus/unigenes, NCBI/citrus/proteins) and improving the annotation of existing unigenes. iCitrus provided a useful bioinformatics tool for the high-throughput identification of citrus proteins. We have identified approximately 1500 citrus proteins expressed in fruit juice sac cells and quantified the changes of their expression during fruit development. Our results showed that both dMS and SC provided significant information on protein changes, with dMS providing a higher accuracy. CONCLUSION: Our data supports the notion of the complementary use of dMS and SC for label-free comparative proteomics, broadening the identification spectrum and strengthening the identification of trends in protein expression changes during the particular processes being compared. BioMed Central 2010-12-16 /pmc/articles/PMC3017515/ /pubmed/21162737 http://dx.doi.org/10.1186/1477-5956-8-68 Text en Copyright ©2010 Katz et al; licensee BioMed Central Ltd. This is an Open Access article distributed under the terms of the Creative Commons Attribution License (<url>http://creativecommons.org/licenses/by/2.0</url>), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research
Katz, Ehud
Fon, Mario
Eigenheer, Richard A
Phinney, Brett S
Fass, Joseph N
Lin, Dawei
Sadka, Avi
Blumwald, Eduardo
A label-free differential quantitative mass spectrometry method for the characterization and identification of protein changes during citrus fruit development
title A label-free differential quantitative mass spectrometry method for the characterization and identification of protein changes during citrus fruit development
title_full A label-free differential quantitative mass spectrometry method for the characterization and identification of protein changes during citrus fruit development
title_fullStr A label-free differential quantitative mass spectrometry method for the characterization and identification of protein changes during citrus fruit development
title_full_unstemmed A label-free differential quantitative mass spectrometry method for the characterization and identification of protein changes during citrus fruit development
title_short A label-free differential quantitative mass spectrometry method for the characterization and identification of protein changes during citrus fruit development
title_sort label-free differential quantitative mass spectrometry method for the characterization and identification of protein changes during citrus fruit development
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3017515/
https://www.ncbi.nlm.nih.gov/pubmed/21162737
http://dx.doi.org/10.1186/1477-5956-8-68
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