IP Library Granted Patent US 11,730,122
Granted Patent B1
US 11,730,122 · App. 17/377,752 · Granted Aug 22, 2023

Maize hybrid X00R826

Inventors: Michael Adam Chandler (Stoughton, WI); Brian Douglas De Vries (Algona, IA); Christopher Cole Rasmussen (Algona, IA); Eric Scott Riedeman (Alton, IA); Emily Combs Ziemke (Mankato, MN)
A01H6/4684A01H5/10
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Quick Facts
Patent No.
US 11,730,122
App. No.
17/377,752
Granted
Aug 22, 2023
Kind
B1
Abstract

A novel maize variety designated X00R826 and seed, plants and plant parts thereof are produced by crossing inbred maize varieties. Methods for producing a maize plant by crossing hybrid maize variety X00R826 with another maize plant are disclosed. Methods for producing a maize plant containing in its genetic material one or more traits introgressed into X00R826 through backcrossing or genetic transformation, and to the maize seed, plant and plant part produced thereby are described. Maize variety X00R826, the seed, the plant produced from the seed, and variants, mutants, and minor modifications of maize variety X00R826 are provided. Methods for producing maize varieties derived from maize variety X00R826 and methods of using maize variety X00R826 are disclosed.

Claims (20)

1. A seed of hybrid maize variety X00R826 produced by crossing a first plant of variety PH4DFV with a second plant of variety PH4DCG, wherein representative seed of the varieties PH4DFV and PH4DCG have been deposited under NCMA Accession Numbers 202205188 and 20220426, respectively.

2. A plant or plant part of hybrid maize variety X00R826 grown from the seed of claim 1 , wherein the plant part comprises at least one cell of hybrid maize variety X00R826.

3. A method of producing the seed of claim 1 , the method comprising crossing a plant of variety PH4DFV with a plant of variety PH4DCG.

4. The seed of claim 1 , further comprising a transgene, wherein the transgene is introduced by backcrossing or genetic transformation into the variety PH4DFV, the variety PH4DCG, or both varieties PH4DFV and PH4DCG.

5. A seed of hybrid maize variety X00R826 further comprising a single locus conversion, wherein a plant grown from the seed comprises a trait conferred by the single locus conversion, and wherein the seed is produced by crossing a first plant of variety PH4DFV with a second plant of variety PH4DCG, wherein the first plant, the second plant or both further comprise the single locus conversion, and wherein representative seed of the varieties PH4DFV and PH4DCG have been deposited under NCMA Accession Numbers 202205188 and 202204026, respectively.

6. The hybrid maize variety X00R826 seed of claim 5 , wherein the locus conversion confers a property selected from the group consisting of male sterility, herbicide tolerance, insect resistance, disease resistance, waxy starch, modified fatty acid metabolism, modified phytic acid metabolism, modified carbohydrate metabolism and modified protein metabolism.

7. The hybrid maize variety X00R826 seed of claim 5 , further comprising a seed treatment on the surface of the seed.

8. A method for producing nucleic acids, the method comprising isolating nucleic acids from the hybrid maize variety X00R826 seed of claim 5 .

9. A plant or plant part grown from the hybrid maize variety X00R826 seed of claim 5 , the plant part comprising at least one cell of hybrid maize variety X00R826 further comprising the single locus conversion.

10. A method of producing a commodity plant product comprising starch, syrup, silage, fat or protein, the method comprising producing the commodity plant product from the plant or plant part of claim 9 .

11. A method for producing a second maize plant, the method comprising applying plant breeding techniques to the plant or plant part of claim 9 to produce the second maize plant.

12. A method for producing a hybrid maize variety X00R826 seed further comprising a locus conversion, the method comprising crossing a first plant of variety PH4DFV with a second plant of variety PH4DCG, representative seed of the varieties PH4DFV and PH4DCG having been deposited under NCMA Accession Numbers 202205188 and 202204026, respectively, wherein at least one of the varieties PH4DFV and PH4DCG further comprises the locus conversion.

13. An F1 hybrid maize variety X00R826 seed further comprising at least two locus conversions produced by the method of claim 12 , wherein the seed produces a plant expressing the traits conferred by the at least two locus conversions.

14. The seed of claim 13 , further comprising a seed treatment on the surface of the seed.

15. The seed of claim 13 , wherein the at least two locus conversions confer at least one property selected from the group consisting of male sterility, herbicide tolerance, insect resistance, disease resistance, waxy starch, modified fatty acid metabolism, modified phytic acid metabolism, modified carbohydrate metabolism and modified protein metabolism.

16. A method for producing nucleic acids, the method comprising isolating nucleic acids from the seed of claim 13 .

17. A plant or plant part produced by growing the seed of claim 13 , the plant part comprising at least one F1 hybrid maize variety X00R826 cell further comprising the at least two locus conversions.

18. A method for producing nucleic acids, the method comprising isolating nucleic acids from the plant or plant part of claim 17 .

19. A method of producing a commodity plant product comprising starch, syrup, silage, fat or protein, the method comprising producing the commodity plant product from the plant or plant part of claim 17 .

20. A method for producing a second maize plant, the method comprising selfinq the maize plant or plant part of claim 17 or crossing the maize plant or plant part of claim 17 with a different maize plant.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 6, 2021
From: CHANDLER, MICHAEL ADAM; DE VRIES, BRIAN DOUGLAS; RASMUSSEN, CHRISTOPHER COLE; RIEDEMAN, ERIC SCOTT; ZIEMKE, EMILY COMBS
To: PIONEER HI-BRED INTERNATIONAL, INC.
Reel/Frame 057103/0666 →
Cited By (5)
US 12,336,477 US 12,382,909 US 12,484,513 US 12,527,287 US 12,532,838