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Research ArticleSYSTEMS BIOLOGY, MOLECULAR BIOLOGY, AND GENE REGULATION
Open Access

An Intron Sense Suppression Construct Targeting Soybean FAD2-1 Requires a Double-Stranded RNA-Producing Inverted Repeat T-DNA Insert

Andrew Mroczka, Peter D. Roberts, JoAnne J. Fillatti, B. Elizabeth Wiggins, Tim Ulmasov, Toni Voelker
Andrew Mroczka
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Peter D. Roberts
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JoAnne J. Fillatti
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B. Elizabeth Wiggins
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Tim Ulmasov
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Toni Voelker
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  • For correspondence: toni.voelker@monsanto.com

Published June 2010. DOI: https://doi.org/10.1104/pp.110.154351

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  • © 2010 American Society of Plant Biologists

Abstract

We demonstrate that the transformation of soybean (Glycine max) with sense suppression constructs using intron sequences from the fatty acid oleyl Δ12 desaturase gene FAD2-1A leads to efficient and specific reduction of FAD2-1 transcripts in developing seeds, increased oleic acid, and decreased polyunsaturated fatty acids. The related FAD2-2 transcripts are only marginally affected. Despite screening a large number of independent transformants, no single-copy efficacious transformants could be found. Invariably, all the least complex transgenic loci have two T-DNA copies in an inverted repeat configuration, centered at the right borders. We show that this T-DNA configuration produces an inverted repeat transcript and that small interfering RNAs accumulate against the target sequence.

  • Received February 2, 2010.
  • Accepted April 25, 2010.
  • Published April 27, 2010.

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An Intron Sense Suppression Construct Targeting Soybean FAD2-1 Requires a Double-Stranded RNA-Producing Inverted Repeat T-DNA Insert
Andrew Mroczka, Peter D. Roberts, JoAnne J. Fillatti, B. Elizabeth Wiggins, Tim Ulmasov, Toni Voelker
Plant Physiology Jun 2010, 153 (2) 882-891; DOI: 10.1104/pp.110.154351

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An Intron Sense Suppression Construct Targeting Soybean FAD2-1 Requires a Double-Stranded RNA-Producing Inverted Repeat T-DNA Insert
Andrew Mroczka, Peter D. Roberts, JoAnne J. Fillatti, B. Elizabeth Wiggins, Tim Ulmasov, Toni Voelker
Plant Physiology Jun 2010, 153 (2) 882-891; DOI: 10.1104/pp.110.154351
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Plant Physiology: 153 (2)
Plant Physiology
Vol. 153, Issue 2
Jun 2010
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