US2009089893A1PendingUtilityA1
Sucrose synthase 3 promoter from rice and uses thereof
Est. expiryOct 14, 2024(expired)· nominal 20-yr term from priority
Inventors:David Vandinh Dang
C12N 15/8218C12N 15/8261Y02A40/146C12N 15/8233
46
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Claims
Abstract
Regulatory regions suitable for directing expression of a heterologous nucleic acid are described, as well as nucleic acid constructs that include these regulatory regions. Also disclosed are transgenic plants that contain such constructs and methods of producing such transgenic plants.
Claims
exact text as granted — not AI-modified1 . An isolated nucleic acid comprising a regulatory region having a length of 1735 to 1890 nucleotides and 97 percent or greater sequence identity to SEQ ID NO:1, wherein said regulatory region directs transcription, in a plant ovule within 24 hours post-fertilization, of an operably linked heterologous polynucleotide.
2 . The nucleic acid of claim 1 wherein said regulatory region comprises an intron.
3 . An isolated nucleic acid comprising a regulatory region having a length of 1735 to 1890 nucleotides and 97 percent or greater sequence identity to SEQ ID NO:1, wherein said regulatory region directs transcription in an unfertilized plant ovule of an operably linked heterologous polynucleotide.
4 . The nucleic acid of claim 3 wherein said regulatory region comprises an intron.
5 . A nucleic acid construct comprising the nucleic acid of claim 1 operably linked to a heterologous polynucleotide.
6 . The nucleic acid construct of claim 5 wherein said heterologous polynucleotide comprises a nucleic acid sequence encoding a polypeptide.
7 . The nucleic acid construct of claim 5 wherein said heterologous polynucleotide is in an antisense orientation relative to said regulatory region.
8 . The nucleic acid construct of claim 5 wherein said heterologous polynucleotide is transcribed into an antisense RNA capable of inhibiting expression of a DNA methyltransferase.
9 . The nucleic acid construct of claim 5 wherein said heterologous polynucleotide is transcribed into an interfering RNA.
10 . The nucleic acid construct of claim 5 wherein said heterologous polynucleotide is transcribed into an interfering RNA against a DNA methyltransferase.
11 . A transgenic plant or plant cell, wherein said plant or plant cell comprises the nucleic acid of claim 1 operably linked to a heterologous polynucleotide.
12 . The transgenic plant or plant cell of claim 11 wherein said heterologous polynucleotide comprises a nucleic acid sequence encoding a polypeptide.
13 . The transgenic plant or plant cell of claim 11 wherein said heterologous polynucleotide is in an antisense orientation relative to said regulatory region.
14 . The transgenic plant or plant cell of claim 11 wherein said beterologous polynucleotide is transcribed into an interfering RNA.
15 . The transgenic plant or plant cell of claim 11 wherein said heterologous polynucleotide is transcribed into an interfering RNA against a DNA methyltransferase.
16 . A method of producing a transgenic plant, said method comprising (a) introducing into a plant cell an isolated polynucleotide comprising the nucleic acid of claim 1 operably linked to a heterologous polynucleotide, and (b) growing a plant from said plant cell.
17 . The method of claim 16 wherein said heterologous polynucleotide comprises a nucleic acid sequence encoding a polypeptide.
18 . The method of claim 16 wherein said heterologous polynucleotide is in an antisense orientation relative to said regulatory region.
19 . The method of claim 16 wherein said heterologous polynucleotide is transcribed into an interfering RNA.
20 . The method of claim 16 wherein said heterologous polynucleotide is transcribed into an interfering RNA against a DNA methyltransferase.Join the waitlist — get patent alerts
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