IP Library Granted Patent US 10,961,543
Granted Patent B2
US 10,961,543 · App. 15/303,488 · Granted Mar 30, 2021

Tonoplast proton/sugar antiporter proteins and the use thereof to increase the saccharose concentration in a saccharose storage organ of plants

Inventors: Wolfgang Koch (Einbeck, DE); Norbert Sauer (Erlangen, DE); Petra Wirsching (Fürth, DE); Benjamin Pommerrenig (Halberstadt, DE); Ekkehard Neuhaus (Kaiserslautern, DE); Benjamin Jung (Fischbach, DE); Ulf-Ingo Flügge (Cologne, DE); Frank Ludewig (Cologne, DE); Nicole Lenzen (Düren, DE); Irene Marten (Würzburg, DE); Rainer Hedrich (Würzburg, DE); Alexander Schulz (Würzburg, DE)
Assignees: KWS SAAT SE & CO. KGAA; SÜDZUCKER AG
C12N15/8245C07K14/415C12Q1/6895C12Q2600/13
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Quick Facts
Patent No.
US 10,961,543
App. No.
15/303,488
Granted
Mar 30, 2021
Kind
B2
Abstract

The invention relates to tonoplast proton/sugar antiporter proteins, more particularly tonoplast proton/saccharose antiporter proteins, the nucleotide sequences which encode them and uses thereof for producing transgenic plants with an increased saccharose concentration. The invention also includes methods for producing transgenic plants with an increased saccharose concentration, methods for increasing the saccharose concentration in plants, and for identifying plants which are suitable for creating a higher saccharose concentration.

Claims (59)

1. A method for identifying and cultivating a transgenic and/or genetically modified plant, transgenic and/or genetically modified plant part or seeds of the transgenic and/or genetically modified plant wherein the transgenic and/or genetically modified plant is suitable to generate an increased sucrose concentration in a sucrose storage organ, the method comprising:

a) isolating mRNA or DNA from the transgenic and/or genetically modified plant, wherein the transgenic and/or genetically modified plant comprises a sucrose storage organ and is at least three months old;

b) detecting the amount of a nucleic acid molecule in the isolated mRNA or DNA;

c) identifying the transgenic and/or genetically modified plant in which the amount of the nucleic acid molecule is higher as compared to a reference plant of the same species or a part thereof cultivated under identical conditions; and

d) cultivating the identified transgenic and/or genetically modified plant, transgenic plant part or seeds of the transgenic and/or genetically modified plant,

wherein the transgenic and/or genetically modified plant is Beta vulgaris,

wherein the nucleic acid molecule encodes a tonoplast proton/sugar antiporter specific for sucrose, wherein the nucleic acid molecule comprises:

a) the nucleotide sequence of SEQ ID NO: 2 or a nucleotide sequence which is at least 90% identical to SEQ ID NO: 2;

b) a nucleic acid molecule comprising a nucleotide sequence which is complementary to one of the nucleotide sequences according to a); or

c) a nucleotide sequence encoding a polypeptide comprising the amino acid sequence of SEQ ID NO: 1 or an amino acid sequence which is at least 90% identical to SEQ ID NO: 1, and

wherein the nucleic acid molecule further comprises at least one heterologous regulatory element.

2. The method of claim 1 , wherein the detecting step is conducted by at least one of PCR, RT-PCR, quantitative real-time PCR, or restriction length polymorphism.

3. A method for identifying and cultivating a transgenic and/or genetically modified plant, transgenic and/or genetically modified plant part or seeds of the transgenic and/or genetically modified plant wherein the transgenic and/or genetically modified plant is suitable to generate an increased sucrose concentration in a sucrose storage organ, the method comprising:

a) isolating mRNA or DNA from at least one taproot of the transgenic and/or genetically modified plant, wherein the transgenic and/or genetically modified plant comprises a sucrose storage organ and is at least three months old;

b) detecting the amount of a nucleic acid molecule and the amount of mRNA or DNA for BvTST1, BvTST2.2 and BvTST3 in the isolated mRNA or DNA of the at least one taproot;

c) identifying the transgenic and/or genetically modified plant in which the amount of the mRNA or DNA for the nucleic acid molecule in the at least one taproot is higher than the amount of mRNA or DNA for BvTST1, BvTST2.2 and BvTST3; and

d) cultivating the identified transgenic and/or genetically modified plant, transgenic and/or genetically modified plant part or seeds of the transgenic and/or genetically modified plant,

wherein the transgenic and/or genetically modified plant is Beta vulgaris,

wherein the nucleic acid molecule encodes a tonoplast proton/sugar antiporter specific for sucrose, wherein the nucleic acid molecule comprises:

a) the nucleotide sequence of SEQ ID NO: 2 or a nucleotide sequence which is at least 90% identical to SEQ ID NO: 2;

b) a nucleic acid molecule comprising a nucleotide sequence which is complementary to one of the nucleotide sequences according to a); or

c) a nucleotide sequence encoding a polypeptide comprising the amino acid sequence of SEQ ID NO: 1 or an amino acid sequence which is at least 90% identical to SEQ ID NO: 1, and

wherein the nucleic acid molecule further comprises at least one heterologous regulatory element.

4. A method for identifying and cultivating a transgenic and/or genetically modified plant, transgenic and/or genetically modified plant part or seeds of the transgenic and/or genetically modified plant wherein the transgenic and/or genetically modified plant is suitable to generate an increased sucrose concentration in a sucrose storage organ, the method comprising:

a) isolating mRNA or DNA from at least one leaf and at least one taproot of the transgenic and/or genetically modified plant, wherein the plant comprises a sucrose storage organ and is at least three months old;

b) detecting the amount of a nucleic acid molecule and the amount of mRNA or DNA for BvTST1, BvTST2.2 and BvTST3 in the isolated mRNA or DNA of the at least one leaf;

c) detecting the amount of the nucleic acid molecule and the amount of mRNA or DNA for BvTST1, BvTST2.2 and BvTST3 in the isolated mRNA of the at least one taproot;

d) identifying the transgenic and/or genetically modified plant in which the amount of mRNA or DNA for the nucleic acid molecule in the at least one leaf is lower than the amount of mRNA for BvTST1, BvTST2.2 and BvTST3 and the amount of the mRNA or DNA for the nucleic acid molecule in the at least one taproot is higher than the amount of mRNA or DNA for BvTST1, BvTST2.2 and BvTST3; and

e) cultivating the identified transgenic and/or genetically modified plant, transgenic and/or genetically modified plant part or seeds of the transgenic and/or genetically modified plant,

wherein the transgenic and/or genetically modified plant is Beta vulgaris,

wherein the nucleic acid molecule encodes a tonoplast proton/sugar antiporter specific for sucrose, wherein the nucleic acid molecule comprises:

a) the nucleotide sequence of SEQ ID NO: 2 or a nucleotide sequence which is at least 90% identical to SEQ ID NO: 2;

b) a nucleic acid molecule comprising a nucleotide sequence which is complementary to one of the nucleotide sequences according to a); or

c) a nucleotide sequence encoding a polypeptide comprising the amino acid sequence of SEQ ID NO: 1 or an amino acid sequence which is at least 90% identical to SEQ ID NO: 1, and

wherein the nucleic acid molecule further comprises at least one heterologous regulatory element.

5. The method of claim 3 , wherein the BvTST1 is encoded by the nucleic acid sequence of SEQ ID NO: 4.

6. The method of claim 3 , wherein the BvTST2.2 is encoded by the nucleic acid sequence of SEQ ID NO: 6.

7. The method of claim 3 , wherein the BvTST3 is encoded by the nucleic acid sequence of SEQ ID NO: 8.

8. A method for identifying a transgenic and/or genetically modified plant, transgenic and/or genetically modified plant part or seeds of the transgenic and/or genetically modified plant wherein the transgenic and/or genetically modified plant comprises a nucleic acid molecule as a transgene and is suitable to generate an increased sucrose concentration in a sucrose storage organ, the method comprising:

a) isolating DNA or mRNA from the transgenic and/or genetically modified plant, transgenic and/or genetically modified plant part or seeds of the transgenic and/or genetically modified plant, wherein the transgenic and/or genetically modified plant comprises a sucrose storage organ;

b) detecting the transgene of the nucleic acid molecule in the isolated DNA or mRNA; and

c) identifying the transgenic and/or genetically modified plant, transgenic and/or genetically modified plant part or seeds of the transgenic and/or genetically modified plant in which the nucleic acid molecule has been detected,

wherein the transgenic and/or genetically modified plant is Beta vulgaris,

wherein the nucleic acid molecule encodes a tonoplast proton/sugar antiporter specific for sucrose, wherein the nucleic acid molecule comprises:

a) the nucleotide sequence of SEQ ID NO: 2 or a nucleotide sequence which is at least 90% identical to SEQ ID NO: 2;

b) a nucleic acid molecule comprising a nucleotide sequence which is complementary to one of the nucleotide sequences according to a); or

c) a nucleotide sequence encoding a polypeptide comprising the amino acid sequence of SEQ ID NO: 1 or an amino acid sequence which is at least 90% identical to SEQ ID NO: 1, and

wherein the nucleic acid molecule further comprises at least one heterologous regulatory element.

9. A method for identifying and cultivating a transgenic and/or genetically modified plant, transgenic and/or genetically modified plant part or seeds of the transgenic and/or genetically modified plant wherein the transgenic and/or genetically modified plant is suitable to generate an increased sucrose concentration in a sucrose storage organ, the method comprising:

a) isolating mRNA or DNA from the transgenic and/or genetically modified plant wherein the transgenic and/or genetically modified plant comprises a sucrose storage organ and is at least three months old;

b) detecting the amount of a nucleic acid molecule in the isolated mRNA or DNA;

c) identifying the transgenic and/or genetically modified plant in which the amount of the nucleic acid molecule is higher as compared to a reference plant of the same species or a part thereof cultivated under identical conditions; and

d) cultivating the identified transgenic and/or genetically modified plant, transgenic and/or genetically modified plant part or seeds of the transgenic and/or genetically modified plant,

wherein the transgenic and/or genetically modified plant is Beta vulgaris,

wherein the nucleic acid molecule encodes a tonoplast proton/sugar antiporter specific for sucrose, wherein the nucleic acid molecule comprises:

a) the nucleotide sequence of SEQ ID NO: 2 or a nucleotide sequence which is at least 95% identical to SEQ ID NO: 2;

b) a nucleic acid molecule comprising a nucleotide sequence which is complementary to one of the nucleotide sequences according to a); or

c) a nucleotide sequence encoding a polypeptide comprising the amino acid sequence of SEQ ID NO: 1 or an amino acid sequence which is at least 95% identical to SEQ ID NO: 1, and

wherein the nucleic acid molecule further comprises at least one heterologous regulatory element.

Assignments (13)
CHANGE OF NAME Recorded Aug 21, 2023
From: KWS SAAT AG
To: KWS SAAT SE
Reel/Frame 064673/0370 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 26, 2023
From: TECHNISCHE UNIVERSITAT KAISERSLAUTERN
To: KWS SAAT AG; SUDZUCKER AG
Reel/Frame 064062/0388 →
CORRECTIVE ASSIGNMENT TO CORRECT THE ASSIGNEE'S DATA PREVIOUSLY RECORDED ON REEL 060023 FRAME 0234. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Jun 26, 2023
From: FRIEDRICH-ALEXANDER-UNIVERSITAT ERLANGEN-NURNBERG
To: KWS SAAT AG; SUDZUCKER AG
Reel/Frame 064110/0446 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 26, 2022
From: FRIEDRICH-ALEXANDER-UNIVERSITAT ERLANGEN-NURNBERG
To: KWS SAAT AG
Reel/Frame 060023/0234 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 26, 2022
From: JULIUS-MAXIMILIANS-UNIVERSITAT WURZBURG
To: KWS SAAT AG; SUDZUCKER AG
Reel/Frame 060023/0845 →
CORRECTIVE ASSIGNMENT TO CORRECT THE ASSIGNEE NAME PREVIOUSLY RECORDED ON REEL 054986 FRAME 0737. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Feb 3, 2021
From: NEUHAUS, EKKEHARD; JUNG, BENJAMIN
To: TECHNISCHE UNIVERSITAT KAISERSLAUTERN
Reel/Frame 055221/0671 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 21, 2021
From: SAUER, NORBERT; WIRSCHING, PETRA; POMMERRENIG, BENJAMIN
To: FRIEDRICH-ALEXANDER-UNIVERSITAT ERLANGEN-NURNBERG
Reel/Frame 054986/0448 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 21, 2021
From: NEUHAUS, EKKEHARD; JUNG, BENJAMIN
To: TECHNISCHE UNIVERSITAT KAISERLAUTERN
Reel/Frame 054986/0737 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 21, 2021
From: FLUGGE, ULF-INGO; LENZEN, NICOLE; LUDEWIG, FRANK
To: KWS SAAT SE & CO. KGAA
Reel/Frame 054987/0190 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 21, 2021
From: MARTEN, IRENE; HEDRICH, RAINER; SCHULZ, ALEXANDER
To: JULIUS-MAXIMILIANS-UNIVERSITAT WURZBURG
Reel/Frame 054987/0339 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 21, 2021
From: TECHNISCHE UNIVERSITAT KAISERSLAUTERN
To: KWS SAAT SE; SUDZUCKER AG
Reel/Frame 055060/0626 →
CHANGE OF NAME Recorded Jan 21, 2021
From: KWS SAAT SE
To: KWS SAAT SE & CO. KGAA
Reel/Frame 055062/0012 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 21, 2021
From: KOCH, WOLFGANG
To: KWS SAAT SE & CO. KGAA
Reel/Frame 054986/0201 →
Priority Claims (1)
DE 10 2014 005 337.7 · Apr 11, 2014 · national
Continuity (1)
Related Publication 20180080037A1 · Mar 22, 2018