IP Library › Granted Patent US 10,597,666
Granted Patent B2
US 10,597,666 · App. 16/005,334 · Granted Mar 24, 2020

Transgenic plants with altered nitrate levels in leaves

Inventors: Susan Davenport (London, GB); Pascaline Le Lay (London, GB); Juan Pablo Sanchez Tamburrino (Cambridge, GB)
Assignee: British American Tobacco (Investments) Limited
C12N15/8225A01H1/00C12N15/8201C12N15/8216
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Quick Facts
Patent No.
US 10,597,666
App. No.
16/005,334
Granted
Mar 24, 2020
Kind
B2
Abstract

The present invention relates to genetic constructs, which can be used in the preparation of transgenic plants. The constructs can have the ability of reducing nitrate concentration in the plant, in particular the plant's leaves. The invention extends to plant cells transformed with such constructs, and to the transgenic plants themselves. The invention also relates to methods of producing transgenic plants, and to methods of reducing nitrate content in plants. The invention also relates to harvested plant leaves, for example tobacco leaves, that have been transformed with the genetic constructs, and to various tobacco articles, such as smoking articles, comprising such harvested plant leaves.

Claims (14)

1. A method of decreasing nitrate concentration in leaves of a test plant to below that of the corresponding nitrate concentration in leaves of a wild-type plant cultured under the same conditions, the method comprising:

(i) transforming a plant cell of the test plant with a genetic construct comprising a promoter operably linked to a coding sequence encoding a polypeptide having nitrate transporter activity or a vector comprising said genetic construct, wherein

a) the polypeptide comprises an amino acid sequence as set out in SEQ ID No. 4, or an amino acid sequence of a functional variant which has at least 97% sequence identity therewith, or

b) the coding sequence comprises a nucleic acid sequence as set out in SEQ ID No. 3, or a polynucleotide sequence of a functional variant which has at least 97% sequence identity therewith, and

further wherein the promoter is a Carnation Etched Ring Virus (CERV) promoter; and

(ii) regenerating a plant from the transformed cell, wherein the regenerated transformed plant expresses the nitrate transporter from the genetic construct and has decreased nitrate concentration in its leaves when compared to the wild-type plant.

2. A method of producing a transgenic plant which transports nitrate out of a leaf at a higher rate than a corresponding wild-type plant cultured under the same conditions, the method comprising:

(i) transforming a plant cell of the test plant with a genetic construct comprising a promoter operably linked to a coding sequence encoding a polypeptide having nitrate transporter activity or a vector comprising said genetic construct,

wherein

a) the polypeptide comprises an amino acid sequence as set out in SEQ ID No. 4, or an amino acid sequence of a functional variant which has at least 97% sequence identity therewith, or

b) the coding sequence comprises a nucleic acid sequence as set out in SEQ ID No. 3, or a polynucleotide sequence of a functional variant which has at least 97% sequence identity therewith, and

further wherein the promoter is a Carnation Etched Ring Virus (CERV) promoter; and

(ii) regenerating a plant from the transformed cell, wherein the regenerated transformed plant expresses the nitrate transporter from the genetic construct and has decreased nitrate concentration in its leaves when compared to the wild-type plant.

3. The method of claim 1 , wherein said polypeptide comprise a sequence having at least 97% identity to the full length of SEQ ID NO: 4 and said polynucleotide has at least 97% identity to the full length of SEQ ID NO: 3.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 19, 2018
From: DAVENPORT, SUSAN; LE LAY, PASCALINE; TAMBURRINO, JUAN PABLO SANCHEZ
To: BRITISH AMERICAN TOBACCO (INVESTMENTS) LIMITED
Reel/Frame 046393/0023 →
Priority Claims (1)
GB 1204871.6 · Mar 20, 2012 · national
Continuity (2)
Continuation 14386732
Related Publication 20180312858A1 · Nov 1, 2018