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An Improved Green Fluorescent Protein Gene as a Vital Marker in Plants

S. Z. Pang, D. L. DeBoer, Y. Wan, G. Ye, J. G. Layton, M. K. Neher, C. L. Armstrong, J. E. Fry, MAW. Hinchee, M. E. Fromm
S. Z. Pang
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D. L. DeBoer
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Y. Wan
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G. Ye
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J. G. Layton
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M. K. Neher
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C. L. Armstrong
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J. E. Fry
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MAW. Hinchee
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M. E. Fromm
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Published November 1996. DOI: https://doi.org/10.1104/pp.112.3.893

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Abstract

A synthetic green fluorescent protein (GFP) gene (pgfp) was constructed to improve GFP expression in plants. Corn and tobacco protoplast transient assays showed that pgfp gave about 20-fold brighter fluorescence than the wild-type gene (gfp). Replacement of the serine at position 65 with a threonine (S65Tpgfp) or a cysteine (S65Cpgfp) yielded 100- to 120-fold brighter fluorescence than wild-type gfp upon excitation with 490-nm light. Incorporation of a plant intron into the coding region yielded an additional 1.4-fold improvement, for a cumulative improvement of about 150-fold in fluorescence at 490-nm excitation. Various versions of pgfp were also stably introduced into corn, wheat, tobacco, and Arabidopsis plants. Bright-green fluorescence was observed with a fluorescence microscope in virtually all examined tissues of transgenic monocots and dicots. In the case of Arabidopsis, expression of the pgfp gene under the enhanced 35S promoter of the cauliflower mosaic virus produced green fluorescence that was readily detectable by eye using a hand-held, long-wave ultraviolet lamp and/or a black-light source.

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An Improved Green Fluorescent Protein Gene as a Vital Marker in Plants
S. Z. Pang, D. L. DeBoer, Y. Wan, G. Ye, J. G. Layton, M. K. Neher, C. L. Armstrong, J. E. Fry, MAW. Hinchee, M. E. Fromm
Plant Physiology Nov 1996, 112 (3) 893-900; DOI: 10.1104/pp.112.3.893

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An Improved Green Fluorescent Protein Gene as a Vital Marker in Plants
S. Z. Pang, D. L. DeBoer, Y. Wan, G. Ye, J. G. Layton, M. K. Neher, C. L. Armstrong, J. E. Fry, MAW. Hinchee, M. E. Fromm
Plant Physiology Nov 1996, 112 (3) 893-900; DOI: 10.1104/pp.112.3.893
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Plant Physiology
Vol. 112, Issue 3
Nov 1996
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More in this TOC Section

  • A Water-Soluble Chlorophyll Protein in Cauliflower May Be Identical to BnD22, a Drought-Induced, 22-Kilodalton Protein in Rapeseed
  • Purification and Characterization of Phosphoribosylpyrophosphate Synthetase from Rubber Tree Latex
  • Rapid and Transient Activation of a Myelin Basic Protein Kinase in Tobacco Leaves Treated with Harpin from Erwinia amylovora
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