Fluorescent protein reporter for monitoring transgenic plant cell cultures

Green fluorescent protein (GFP) is a useful tool for studying online monitoring of recombinant protein in plant cell bioprocesses. Three forms of GFP were constructed for the study. They are secreted GFP, SEAP-GFP fusion and inducible GFP. The secretory GFPs were accumulated over the time course of...

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Main Author: Guan, Peizhu
Other Authors: Su, Wei-Wen
Published: University of Hawaii at Manoa 2009
Online Access:http://hdl.handle.net/10125/6977
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spelling ndltd-UHAWAII-oai-scholarspace.manoa.hawaii.edu-10125-69772013-01-08T11:10:21ZFluorescent protein reporter for monitoring transgenic plant cell culturesGuan, PeizhuGreen fluorescent protein (GFP) is a useful tool for studying online monitoring of recombinant protein in plant cell bioprocesses. Three forms of GFP were constructed for the study. They are secreted GFP, SEAP-GFP fusion and inducible GFP. The secretory GFPs were accumulated over the time course of the culture in the medium. The fluorescent spectrum of the spent medium mimics that of the pure GFP, indicating GFP as the predominant fluorescing compound in the medium. The fluorescence signal of the spent medium linearly correlated with the secreted GFP concentration. It was also demonstrated in bioreactor cultures where GFP production was positively correlated with online culture fluorescence and offline spent medium fluorescence. For SEAP-GFP fusion, both of decreased function from SEAP and GFP were found in their fusion form. The fluorescence exhibited a similar trend as cell growth in the bioreactor or flask. However, the linear correlations between the fluorescence with fusion protein and SEAP activity are only tenable before the cell reaches the growth peak because of fusion protein degradation. By using ale promoter system, GFP expression can be controlled with ethanol. The optimal dosage is between 0.1% and 1 % (v/v) for the tobacco suspension cells, with maximal fluorescent intensity occurring after 4 days. In conclusion, all above different styles of GFPs provide an efficient and versatile method to study plant bioprocesses.ix, 119 leavesUniversity of Hawaii at ManoaSu, Wei-Wen2009-03-06T19:33:18Z2009-03-06T19:33:18Z2003-052003-05ThesisTexthttp://hdl.handle.net/10125/6977All UHM dissertations and theses are protected by copyright. They may be viewed from this source for any purpose, but reproduction or distribution in any format is prohibited without written permission from the copyright owner.https://scholarspace.manoa.hawaii.edu/handle/10125/2109
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description Green fluorescent protein (GFP) is a useful tool for studying online monitoring of recombinant protein in plant cell bioprocesses. Three forms of GFP were constructed for the study. They are secreted GFP, SEAP-GFP fusion and inducible GFP. The secretory GFPs were accumulated over the time course of the culture in the medium. The fluorescent spectrum of the spent medium mimics that of the pure GFP, indicating GFP as the predominant fluorescing compound in the medium. The fluorescence signal of the spent medium linearly correlated with the secreted GFP concentration. It was also demonstrated in bioreactor cultures where GFP production was positively correlated with online culture fluorescence and offline spent medium fluorescence. For SEAP-GFP fusion, both of decreased function from SEAP and GFP were found in their fusion form. The fluorescence exhibited a similar trend as cell growth in the bioreactor or flask. However, the linear correlations between the fluorescence with fusion protein and SEAP activity are only tenable before the cell reaches the growth peak because of fusion protein degradation. By using ale promoter system, GFP expression can be controlled with ethanol. The optimal dosage is between 0.1% and 1 % (v/v) for the tobacco suspension cells, with maximal fluorescent intensity occurring after 4 days. In conclusion, all above different styles of GFPs provide an efficient and versatile method to study plant bioprocesses. === ix, 119 leaves
author2 Su, Wei-Wen
author_facet Su, Wei-Wen
Guan, Peizhu
author Guan, Peizhu
spellingShingle Guan, Peizhu
Fluorescent protein reporter for monitoring transgenic plant cell cultures
author_sort Guan, Peizhu
title Fluorescent protein reporter for monitoring transgenic plant cell cultures
title_short Fluorescent protein reporter for monitoring transgenic plant cell cultures
title_full Fluorescent protein reporter for monitoring transgenic plant cell cultures
title_fullStr Fluorescent protein reporter for monitoring transgenic plant cell cultures
title_full_unstemmed Fluorescent protein reporter for monitoring transgenic plant cell cultures
title_sort fluorescent protein reporter for monitoring transgenic plant cell cultures
publisher University of Hawaii at Manoa
publishDate 2009
url http://hdl.handle.net/10125/6977
work_keys_str_mv AT guanpeizhu fluorescentproteinreporterformonitoringtransgenicplantcellcultures
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