System for Stable beta -Estradiol-Inducible Gene Expression in the Moss Physcomitrella patens: e77356
Inducible transgene expression provides a useful tool to analyze gene function. The moss Physcomitrella patens is a model basal land plant with well-developed research tools, including a high efficiency of gene targeting and substantial genomics resources. However, current systems for controlled tra...
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Veröffentlicht in: | PloS one 2013-09, Vol.8 (9) |
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creator | Kubo, Minoru Imai, Akihiro Nishiyama, Tomoaki Ishikawa, Masaki Sato, Yoshikatsu Kurata, Tetsuya Hiwatashi, Yuji Reski, Ralf Hasebe, Mitsuyasu |
description | Inducible transgene expression provides a useful tool to analyze gene function. The moss Physcomitrella patens is a model basal land plant with well-developed research tools, including a high efficiency of gene targeting and substantial genomics resources. However, current systems for controlled transgene expression remain limited. Here we report the development of an estrogen receptor mediated inducible gene expression system, based on the system used in flowering plants. After identifying the appropriate promoters to drive the chimeric transducer, we succeeded in inducing transcription over 1,000-fold after 24 h incubation with beta -estradiol. The P. patens system was also effective for high-level long-term induction of gene expression; transcript levels of the activated gene were maintained for at least seven days on medium containing beta -estradiol. We also established two potentially neutral targeting sites and a set of vectors for reproducible expression of two transgenes. This beta -estradiol-dependent system will be useful to test genes individually or in combination, allowing stable, inducible transgenic expression in P. patens. |
doi_str_mv | 10.1371/journal.pone.0077356 |
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The moss Physcomitrella patens is a model basal land plant with well-developed research tools, including a high efficiency of gene targeting and substantial genomics resources. However, current systems for controlled transgene expression remain limited. Here we report the development of an estrogen receptor mediated inducible gene expression system, based on the system used in flowering plants. After identifying the appropriate promoters to drive the chimeric transducer, we succeeded in inducing transcription over 1,000-fold after 24 h incubation with beta -estradiol. The P. patens system was also effective for high-level long-term induction of gene expression; transcript levels of the activated gene were maintained for at least seven days on medium containing beta -estradiol. We also established two potentially neutral targeting sites and a set of vectors for reproducible expression of two transgenes. 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subjects | Physcomitrella patens |
title | System for Stable beta -Estradiol-Inducible Gene Expression in the Moss Physcomitrella patens: e77356 |
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