IP Library › Granted Patent US 12,588,628
Granted Patent B2
US 12,588,628 · App. 18/370,761 · Granted Mar 31, 2026

Soybean cultivar 22121100

Inventor: Justin T. Mason (Granger, IA)
Assignee: M.S. Technologies, L.L.C.
A01H6/542A01H5/10
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Quick Facts
Patent No.
US 12,588,628
App. No.
18/370,761
Granted
Mar 31, 2026
Kind
B2
Abstract

A soybean cultivar designated 22121100 is disclosed. The invention relates to the seeds of soybean cultivar 22121100, to the plants of soybean cultivar 22121100, to the plant parts of soybean cultivar 22121100, and to methods for producing progeny of soybean cultivar 22121100. The invention also relates to methods for producing a soybean plant containing in its genetic material one or more transgenes and to the transgenic soybean plants and plant parts produced by those methods. The invention also relates to soybean cultivars or breeding cultivars, and plant parts derived from soybean cultivar 22121100. The invention also relates to methods for producing other soybean cultivars, lines, or plant parts derived from soybean cultivar 22121100, and to the soybean plants, varieties, and their parts derived from use of those methods. The invention further relates to hybrid soybean seeds, plants, and plant parts produced by crossing cultivar 22121100 with another soybean cultivar.

Claims (29)

1 . A plant of soybean cultivar 22121100, representative seed of said soybean cultivar having been deposited under NCMA Accession No. 202410046.

2 . A seed that produces the plant of claim 1 .

3 . A cell of the plant of claim 1 .

4 . A tissue culture of regenerable cells comprising the cell of claim 3 .

5 . A method of soybean breeding, said method comprising crossing the plant of claim 1 with itself or a second soybean plant to produce soybean seed.

6 . The method of claim 5 , further defined as comprising crossing a plant of soybean cultivar 22121100 with a second soybean plant of a different genotype to produce hybrid soybean seed.

7 . An F 1 hybrid soybean seed produced by the method of claim 6 .

8 . A method of producing a plant comprising an added desired trait, said method comprising introducing a transgene conferring the desired trait into the plant of claim 1 .

9 . The method of claim 8 , wherein the desired trait is selected from the group consisting of male sterility, herbicide tolerance, insect or pest resistance, disease resistance, modified fatty acid metabolism, and modified carbohydrate metabolism.

10 . A plant produced by the method of claim 8 or a selfed progeny thereof, wherein said plant or the selfed progeny thereof comprises the transgene and otherwise comprises all of the morphological and physiological characteristics of soybean cultivar 22121100.

11 . A method of introducing a single locus conversion into a soybean plant, said method comprising:

(a) crossing a plant of soybean cultivar 22121100 with a second plant comprising a desired single locus to produce Fi progeny plants, representative seed of said soybean cultivar 22121100 having been deposited under NCMA Accession No. 202410046;

(b) selecting at least a first progeny plant from step (a) that comprises the single locus to produce a selected progeny plant;

(c) crossing the selected progeny plant from step (b) with a plant of soybean cultivar 22121100 to produce at least a first backcross progeny plant that comprises the single locus; and

(d) repeating steps (b) and (c) with the first backcross progeny plant produced from step (c) used in place of the first progeny plant of step (b) during said repeating, wherein steps (b) and (c) are repeated until at least a backcross progeny plant is produced comprising the single locus conversion.

12 . The method of claim 11 , wherein the single locus confers a trait selected from the group consisting of male sterility, herbicide tolerance, insect or pest resistance, disease resistance, modified fatty acid metabolism, abiotic stress resistance, and modified carbohydrate metabolism.

13 . A soybean plant of soybean cultivar 22121100, further comprising a single locus conversion, wherein the plant comprises the single locus conversion and otherwise comprises all of the morphological and physiological characteristics of soybean cultivar 22121100, representative seed of soybean cultivar 22121100 having been deposited under NCMA Accession No. 202410046.

14 . The method of claim 6 , wherein the method further comprises:

(a) crossing a plant grown from said hybrid soybean seed with itself or a different soybean plant to produce a seed of a progeny plant of a subsequent generation.

15 . The method of claim 14 , wherein the method further comprises:

(b) growing a progeny plant of a subsequent generation from said seed of the progeny plant of the subsequent generation and crossing the progeny plant of the subsequent generation with itself or a second plant to produce a progeny plant of a further subsequent generation.

16 . The method of claim 15 , wherein the method further comprises:

(c) repeating steps (a) and (b) using said progeny plant of the further subsequent generation from step (b) in place of the plant grown from said hybrid 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 cultivar 22121100.

17 . A method of introducing a mutation into the genome of soybean cultivar 22121100, said method comprising applying a mutagen to the plant of claim 1 , or a part thereof, wherein said mutagen is selected from the group consisting of ethyl methanesulfonate, gamma-rays, and sodium azide, and wherein the resulting plant comprises a genome mutation.

18 . A method of determining the genotype of the plant of claim 1 or a progeny plant thereof, or a part thereof, the method comprising detecting at least a first polymorphism in a genomic preparation of nucleic acids from said plant or part thereof.

19 . The method of claim 18 , wherein:

said detecting comprises DNA sequencing or genetic marker analysis; or

the method further comprises storing the results of said detecting on a computer readable medium or transmitting the results of the detecting.

20 . A method of producing a commodity plant product, said method comprising obtaining the plant of claim 1 or a part thereof and producing said commodity plant product therefrom.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 9, 2023
From: MASON, JUSTIN T.
To: M.S. TECHNOLOGIES, L.L.C.
Reel/Frame 065821/0345 →
Continuity (1)
Related Publication 20250089657A1 · Mar 20, 2025
References Cited (35)
US 5491288A · Chaubet et al. · 1996 [cited by applicant]
US 5510471A · Lebrun et al. · 1996 [cited by applicant]
US 5633448A · Lebrun et al. · 1997 [cited by applicant]
US 5717084A · Herrera-Estrella et al. · 1998 [cited by applicant]
US 5728925A · Herrera-Estrella et al. · 1998 [cited by applicant]
US 5792930A · Chaubet et al. · 1998 [cited by applicant]
US 5968830A · Dan et al. · 1999 [cited by applicant]
US 6063601A · Herrera-Estrella et al. · 2000 [cited by applicant]
US 6313282B1 · Atanassova et al. · 2001 [cited by applicant]
US 6338961B1 · DeRose et al. · 2002 [cited by applicant]
US 6566587B1 · Lebrun et al. · 2003 [cited by applicant]
US 8283522B2 · Wright et al. · 2012 [cited by applicant]
US 8460891B2 · Shan et al. · 2013 [cited by applicant]
US 8916752B2 · Wright et al. · 2014 [cited by applicant]
US 9371394B2 · Shan et al. · 2016 [cited by applicant]
US 9540655B2 · Cui et al. · 2017 [cited by applicant]
US 10667483B1 · Mason · 2020 [cited by applicant]
US 11191242B1 · Mason · 2021 [cited by examiner]
2018-2019, A cross with parentage 15CB60126-03-04 X 16EN300247-29 was made near Chacabuco, Argentina. [cited by applicant]
2019, An F1 population was grown near Adel, Iowa and advanced using modified single seed descent. [cited by applicant]
2019-2020, F2 populations were grown near Venado Tuerto, Argentina and advanced using modified single seed descent. [cited by applicant]
2020, F3 bulk populations were grown in the Midwest and single plants were pulled. [cited by applicant]
2020-2021, Plant rows were grown near Venado Tuerto, Argentina. [cited by applicant]
2021, Preliminary yield trials were grown at 6 locations in the Midwest. [cited by applicant]
2022, Based on yield from 2021 trials, 19MA315001-A-12 was advanced to 2022 Elite yield trials. [cited by applicant]
U.S. Appl. No. 18/370,759, filed Sep. 20, 2023, Mason. [cited by applicant]
U.S. Appl. No. 18/370,766, filed Sep. 20, 2023, Mason. [cited by applicant]
U.S. Appl. No. 18/370,767, filed Sep. 20, 2023, Mason. [cited by applicant]
Eshed et al., “Less-than-additive epistatic interactions of quantitative trait loci in tomato,” [cited by applicant]
Kraft et al., “Linkage disequilibrium and fingerprinting in sugar beet,” [cited by applicant]
Willmot et al., “Genetic analysis of brown stem rot resistance in soybean,” [cited by applicant]
Poehlman et al., “Methods in plant breeding,” [cited by applicant]
Narvel et al., “A retrospective DNA marker assessment of the development of insect resistant soybean,” [cited by applicant]
Goldman et al., “Molecular markers associated with maize kernel oil concentration in an Illinois High Protein x Illinois Low Protein cross,” [cited by applicant]
Variety specific information as indicated in transmittal letter of Dec. 2, 2023 Information Disclosure Statement for U.S. Appl. No. 18/370,761. [cited by applicant]