MLchartDataset catalogue

Patent · US9497922B1 · B1 · US

Soybean variety 01051809

(11) Publication number
US9497922B1
(21) Application number
14/720,352
(22) Filing date
2015-05-22
(30) Priority date
2015-05-22
(43) Publication date
2016-11-22
(45) Date of grant
2016-11-22
(51) IPC
A01H 1/02; A01H 5/10; C12N 15/82; C12N 5/04
(52) CPC
  • A01H New plants or {non-transgenic} processes for obtaining them; plant reproduction by tissue culture techniques: 5/10, 1/02, 6/542
  • C12N Microorganisms or enzymes; compositions thereof; propagating, preserving, or maintaining microorganisms; mutation or genetic engineering; culture media: 15/8241, 15/8245, 15/8247, 15/8251, 15/8271, 15/8274, 15/8275, 15/8278, 15/8279, 15/8286, 15/8289
(73) Assignee
Monsanto Technology LLC
(72) Inventors
James Behm; Thomas L. Floyd
(54) Title
Soybean variety 01051809
(57) Abstract

The invention relates to the soybean variety designated 01051809. Provided by the invention are the seeds, plants and derivatives of the soybean variety 01051809. Also provided by the invention are tissue cultures of the soybean variety 01051809 and the plants regenerated therefrom. Still further provided by the invention are methods for producing soybean plants by crossing the soybean variety 01051809 with itself or another soybean variety and plants produced by such methods.

Full text
View on Google Patents

Claims (21)

  1. A plant of soybean variety 01051809, wherein a sample of seed of said variety has been deposited under ATCC Accession No. PTA-123193.
  2. A plant part of the plant of claim 1, wherein the plant part comprises at least one cell of said plant.
  3. The plant part of claim 2, further defined as pollen, a meristem, a cell, or an ovule.
  4. A seed of soybean variety 01051809, wherein a sample of seed of said variety has been deposited under ATCC Accession No. PTA-123193.
  5. A method of producing soybean seed, wherein the method comprises crossing the plant of claim 1 with itself or a second soybean plant.
  6. The method of claim 5, wherein the method is further defined as comprising crossing the plant of soybean variety 01051809 with a second, distinct soybean plant.
  7. An F 1 soybean seed produced by the method of claim 6.
  8. A soybean plant produced by growing the seed of claim 7.
  9. A composition comprising the seed of claim 4 comprised in plant seed growth media, wherein a sample of seed of said variety has been deposited under ATCC Accession No. PTA-123193.
  10. The composition of claim 9, wherein the growth media is soil or a synthetic cultivation medium.
  11. A plant of soybean variety 01051809, further comprising a single locus conversion, wherein a sample of seed of soybean variety 01051809 has been deposited under ATCC Accession No. PTA-123193.
  12. The plant of claim 11, wherein the single locus conversion comprises a transgene.
  13. A seed that produces the plant of claim 11.
  14. The seed of claim 13, wherein the single locus confers a trait selected from the group consisting of male sterility, herbicide tolerance, insect resistance, pest resistance, disease resistance, modified fatty acid metabolism, abiotic stress resistance, altered seed amino acid composition, site-specific genetic recombination, and modified carbohydrate metabolism.
  15. The seed of claim 14, wherein the single locus confers tolerance to an herbicide selected from the group consisting of glyphosate, sulfonylurea, imidazolinone, dicamba, glufosinate, phenoxy propionic acid, cyclohexanedione, triazine, benzonitrile, PPO-inhibitor herbicides, and bromoxynil.
  16. The seed of claim 13, wherein the single locus conversion comprises a transgene.
  17. The method of claim 6, wherein the method further comprises: (a) crossing a plant grown from said soybean seed with itself or a different soybean plant to produce a seed of a progeny plant of a subsequent generation; (b) growing a progeny plant of a subsequent generation from said seed of a progeny plant of a subsequent generation and crossing the progeny plant of a subsequent generation with itself or a second plant to produce a progeny plant of a further subsequent generation; and (c) repeating steps (a) and (b) using said progeny plant of a further subsequent generation from step (b) in place of the plant grown from said soybean seed in step (a), wherein steps (a) and (b) are repeated with sufficient inbreeding to produce an inbred soybean plant derived from the soybean variety 01051809.
  18. The method of claim 17, further comprising crossing said inbred soybean plant derived from the soybean variety 01051809 with a plant of a different genotype to produce a seed of a hybrid soybean plant derived from the soybean variety 01051809.
  19. A method of producing a commodity plant product comprising collecting the commodity plant product from the plant of claim 1.
  20. The method of claim 19, wherein the commodity plant product is protein concentrate, protein isolate, grain, soybean hulls, meal, flour, or oil.
  21. A soybean commodity plant product produced by the method of claim 20, wherein the commodity plant product comprises at least one cell of soybean variety 01051809.

Description

1. Field of the Invention

The present invention relates generally to the field of soybean breeding. In particular, the invention relates to the novel soybean variety 01051809.

2. Description of Related Art

There are numerous steps in the development of any novel, desirable plant germplasm. Plant breeding begins with the analysis and definition of problems and weaknesses of the current germplasm, the establishment of program goals, and the definition of specific breeding objectives. The next step is selection of germplasm that possess the traits to meet the program goals. The goal is to combine in a single variety an improved combination of desirable traits from the parental germplasm. These important traits may include higher seed yield, resistance to diseases and insects, better stems and roots, tolerance to drought and heat, better agronomic quality, resistance to herbicides, and improvements in compositional traits.

Soybean, Glycine max (L.), is a valuable field crop. Thus, a continuing goal of plant breeders is to develop stable, high yielding soybean varieties that are agronomically sound. The reasons for this goal are to maximize the amount of grain produced on the land used and to supply food for both animals and humans. To accomplish this goal, the soybean breeder must select and develop soybean plants that have the traits that result in superior varieties.

The oil extracted from soybeans is widely used in food products, such as margarine, cooking oil, and salad dressings.

Citations (22)

  • US6051753A
  • US5569815A
  • US5576474A
  • US6660911B2
  • US6949696B2
  • US7141722B2
  • US6960707B2
  • US6953876B2
  • US6958436B2
  • US6967263B2
  • US6972353B2
  • US6979760B2
  • US6969787B2
  • US6982367B2
  • US6972354B2
  • US6972355B2
  • US7608761B2
  • US7632985B2
  • US8053184B2
  • US9017947B2
  • US8501407B2
  • US8378181B2
Record as JSON
{
  "publication_number": "US9497922B1",
  "country": "US",
  "kind": "B1",
  "title": "Soybean variety 01051809",
  "abstract": "The invention relates to the soybean variety designated 01051809. Provided by the invention are the seeds, plants and derivatives of the soybean variety 01051809. Also provided by the invention are tissue cultures of the soybean variety 01051809 and the plants regenerated therefrom. Still further provided by the invention are methods for producing soybean plants by crossing the soybean variety 01051809 with itself or another soybean variety and plants produced by such methods.",
  "claims": [
    "1. A plant of soybean variety 01051809, wherein a sample of seed of said variety has been deposited under ATCC Accession No. PTA-123193.",
    "2. A plant part of the plant of claim 1, wherein the plant part comprises at least one cell of said plant.",
    "3. The plant part of claim 2, further defined as pollen, a meristem, a cell, or an ovule.",
    "4. A seed of soybean variety 01051809, wherein a sample of seed of said variety has been deposited under ATCC Accession No. PTA-123193.",
    "5. A method of producing soybean seed, wherein the method comprises crossing the plant of claim 1 with itself or a second soybean plant.",
    "6. The method of claim 5, wherein the method is further defined as comprising crossing the plant of soybean variety 01051809 with a second, distinct soybean plant.",
    "7. An F 1 soybean seed produced by the method of claim 6.",
    "8. A soybean plant produced by growing the seed of claim 7.",
    "9. A composition comprising the seed of claim 4 comprised in plant seed growth media, wherein a sample of seed of said variety has been deposited under ATCC Accession No. PTA-123193.",
    "10. The composition of claim 9, wherein the growth media is soil or a synthetic cultivation medium.",
    "11. A plant of soybean variety 01051809, further comprising a single locus conversion, wherein a sample of seed of soybean variety 01051809 has been deposited under ATCC Accession No. PTA-123193.",
    "12. The plant of claim 11, wherein the single locus conversion comprises a transgene.",
    "13. A seed that produces the plant of claim 11.",
    "14. The seed of claim 13, wherein the single locus confers a trait selected from the group consisting of male sterility, herbicide tolerance, insect resistance, pest resistance, disease resistance, modified fatty acid metabolism, abiotic stress resistance, altered seed amino acid composition, site-specific genetic recombination, and modified carbohydrate metabolism.",
    "15. The seed of claim 14, wherein the single locus confers tolerance to an herbicide selected from the group consisting of glyphosate, sulfonylurea, imidazolinone, dicamba, glufosinate, phenoxy propionic acid, cyclohexanedione, triazine, benzonitrile, PPO-inhibitor herbicides, and bromoxynil.",
    "16. The seed of claim 13, wherein the single locus conversion comprises a transgene.",
    "17. The method of claim 6, wherein the method further comprises: (a) crossing a plant grown from said soybean seed with itself or a different soybean plant to produce a seed of a progeny plant of a subsequent generation; (b) growing a progeny plant of a subsequent generation from said seed of a progeny plant of a subsequent generation and crossing the progeny plant of a subsequent generation with itself or a second plant to produce a progeny plant of a further subsequent generation; and (c) repeating steps (a) and (b) using said progeny plant of a further subsequent generation from step (b) in place of the plant grown from said soybean seed in step (a), wherein steps (a) and (b) are repeated with sufficient inbreeding to produce an inbred soybean plant derived from the soybean variety 01051809.",
    "18. The method of claim 17, further comprising crossing said inbred soybean plant derived from the soybean variety 01051809 with a plant of a different genotype to produce a seed of a hybrid soybean plant derived from the soybean variety 01051809.",
    "19. A method of producing a commodity plant product comprising collecting the commodity plant product from the plant of claim 1.",
    "20. The method of claim 19, wherein the commodity plant product is protein concentrate, protein isolate, grain, soybean hulls, meal, flour, or oil.",
    "21. A soybean commodity plant product produced by the method of claim 20, wherein the commodity plant product comprises at least one cell of soybean variety 01051809."
  ],
  "description_excerpt": "1. Field of the Invention\n\nThe present invention relates generally to the field of soybean breeding. In particular, the invention relates to the novel soybean variety 01051809.\n\n2. Description of Related Art\n\nThere are numerous steps in the development of any novel, desirable plant germplasm. Plant breeding begins with the analysis and definition of problems and weaknesses of the current germplasm, the establishment of program goals, and the definition of specific breeding objectives. The next step is selection of germplasm that possess the traits to meet the program goals. The goal is to combine in a single variety an improved combination of desirable traits from the parental germplasm. These important traits may include higher seed yield, resistance to diseases and insects, better stems and roots, tolerance to drought and heat, better agronomic quality, resistance to herbicides, and improvements in compositional traits.\n\nSoybean, Glycine max (L.), is a valuable field crop. Thus, a continuing goal of plant breeders is to develop stable, high yielding soybean varieties that are agronomically sound. The reasons for this goal are to maximize the amount of grain produced on the land used and to supply food for both animals and humans. To accomplish this goal, the soybean breeder must select and develop soybean plants that have the traits that result in superior varieties.\n\nThe oil extracted from soybeans is widely used in food products, such as margarine, cooking oil, and salad dressings.",
  "cpc": [
    "A01H 5/10",
    "A01H 1/02",
    "A01H 6/542",
    "C12N 15/8241",
    "C12N 15/8245",
    "C12N 15/8247",
    "C12N 15/8251",
    "C12N 15/8271",
    "C12N 15/8274",
    "C12N 15/8275",
    "C12N 15/8278",
    "C12N 15/8279",
    "C12N 15/8286",
    "C12N 15/8289"
  ],
  "ipc": [
    "A01H 1/02",
    "A01H 5/10",
    "C12N 15/82",
    "C12N 5/04"
  ],
  "assignees": [
    "Monsanto Technology LLC"
  ],
  "inventors": [
    "James Behm",
    "Thomas L. Floyd"
  ],
  "filing_date": "2015-05-22",
  "publication_date": "2016-11-22",
  "grant_date": "2016-11-22",
  "priority_date": "2015-05-22",
  "application_number": "US-201514720352-A",
  "family_id": "57287428",
  "cited_by_count": 4,
  "citations": [
    "US6051753A",
    "US5569815A",
    "US5576474A",
    "US6660911B2",
    "US6949696B2",
    "US7141722B2",
    "US6960707B2",
    "US6953876B2",
    "US6958436B2",
    "US6967263B2",
    "US6972353B2",
    "US6979760B2",
    "US6969787B2",
    "US6982367B2",
    "US6972354B2",
    "US6972355B2",
    "US7608761B2",
    "US7632985B2",
    "US8053184B2",
    "US9017947B2",
    "US8501407B2",
    "US8378181B2"
  ]
}

Record 4,476 of 8,000 in Patents full text (MLC-0201). Request the full dataset.