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SOYBEAN CULTIVAR WN1013689-2

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The present invention is in the field of soybean variety WN1013689-2 breeding and development. The present invention particularly relates to the soybean variety WN1013689-2 and its progeny, and methods of making WN1013689-2.

SOYBEAN CULTIVAR WN1116259

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The present invention is in the field of soybean variety WN1116259 breeding and development. The present invention particularly relates to the soybean variety WN1116259 and its progeny, and methods of making WN1116259.

SOYBEAN CULTIVAR WN1118256

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The present invention is in the field of soybean variety WN1118256 breeding and development. The present invention particularly relates to the soybean variety WN1118256 and its progeny, and methods of making WN1118256.

INBRED CORN LINES IL3, CB26, CB27, II13, ML22, MM46, AND MM69

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Inbred corn lines, designated IL3, CB26, CB27, II13, ML22, MM46, and MM69, are disclosed. The invention relates to the seeds of inbred corn lines IL3, CB26, CB27, II13, ML22, MM46, and MM69, to the plants and plant parts of inbred corn lines IL3, CB26, CB27, II13, ML22, MM46, and MM69 and to methods for producing a corn plant, either inbred or hybrid, by crossing inbred corn lines IL3, CB26, CB27, II13, ML22, MM46, and MM69 with itself or another corn line. The invention also relates to products produced from the seeds, plants, or parts thereof, of inbred corn lines IL3, CB26, CB27, II13, ML22, MM46, and MM69 and/or of the hybrids produced using the inbred as a parent. The invention further relates to methods for producing a corn plant containing in its genetic material one or more transgenes and to the transgenic plants produced by that method and to methods for producing other inbred corn lines derived from inbred corn lines IL3, CB26, CB27, II13, ML22, MM46, and MM69.

INBRED CORN LINES MM59, CB26, CB27, II13, ML22, MM46, AND MM69

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Inbred corn lines, designated MM59, CB26, CB27, II13, ML22, MM46, and MM69, are disclosed. The invention relates to the seeds of inbred corn lines MM59, CB26, CB27, II13, ML22, MM46, and MM69, to the plants and plant parts of inbred corn lines MM59, CB26, CB27, II13, ML22, MM46, and MM69 and to methods for producing a corn plant, either inbred or hybrid, by crossing inbred corn lines MM59, CB26, CB27, II13, ML22, MM46, and MM69 with itself or another corn line. The invention also relates to products produced from the seeds, plants, or parts thereof, of inbred corn lines MM59, CB26, CB27, II13, ML22, MM46, and MM69 and/or of the hybrids produced using the inbred as a parent. The invention further relates to methods for producing a corn plant containing in its genetic material one or more transgenes and to the transgenic plants produced by that method and to methods for producing other inbred corn lines derived from inbred corn lines MM59, CB26, CB27, II13, ML22, MM46, and MM69.

HYBRID CORN PLANT AND SEED S2338

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This invention provides hybrid maize plant designated S2338. This invention further provides hybrid seed of S2338, hybrid plants produced from such seed, and variants, mutants, and trivial modifications to hybrid S2338, as well as methods of using the hybrid and products produced from the hybrid.

SOYBEAN CULTIVAR OW1113707

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The present invention is in the field of soybean variety OW1113707 breeding and development. The present invention particularly relates to the soybean variety OW1113707 and its progeny, and methods of making OW1113707.

SOYBEAN CULTIVAR OW1117105

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The present invention is in the field of soybean variety OW1117105 breeding and development. The present invention particularly relates to the soybean variety OW1117105 and its progeny, and methods of making OW1117105.

HYBRID MELON VARIETY 34-309 RZ

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The present invention relates to a Cucumis melo seed designated 34-309 RZ, which may exhibit small leaves with erect to semi-erect petioles, a yellow ground color of the fruit skin, fruits that have a medium rate of change of fruit color from maturity to overmaturity, resistance to aphids (Aphis gossypii), intermediate resistance to powdery mildew Podosphaera xanthii (Px) race 1, race 2, race 5, intermediate resistance to powdery mildew Golovinomyces cichoracearum (Gc) race 1. The present invention also relates to a Cucumis melo plant produced by growing the 34-309 RZ seed. The invention further relates to methods for producing the melon cultivar, represented by melon variety 34-309 RZ.

HYBRID MELON VARIETY 34-757 RZ

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The present invention relates to a Cucumis melo seed designated 34-757 RZ, which may exhibit a medium intense greyish green young fruit color, a medium fruit length, a circular fruit shape in longitudinal section, orange main flesh color, and intermediate resistance to powdery mildew Podosphaera xanthii (Px) race 1, race 2, race 5. The present invention also relates to a Cucumis melo plant produced by growing the 34-757 RZ seed. The invention further relates to methods for producing the melon cultivar, represented by melon variety 34-757 RZ.

HYBRID MELON VARIETY 34-765 RZ

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The present invention relates to a Cucumis melo seed designated 34-765 RZ, which may exhibit a medium to dark greyish green color of the young fruit, a circular fruit shape in longitudinal section, a green ground color of the fruit skin with medium intensity and a yellowish hue, a small to medium size of the pistil scar, a reddish orange flesh color, and intermediate resistance to powdery mildew Podosphaera xanthii (Px) race 1, race 2, race 5. The present invention also relates to a Cucumis melo plant produced by growing the 34-765 RZ seed. The invention further relates to methods for producing the melon cultivar, represented by melon variety 34-765 RZ.

HYBRID MELON VARIETY 34-780 RZ

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The present invention relates to a Cucumis melo seed designated 34-780 RZ, which may exhibit andromonoecious sex expression, a circular to slightly broad elliptic shape in longitudinal section, a very light to light intensity of the grey ground color of the fruit skin, a small to medium size of the pistil scar, a medium thickness of the cork layer with a linear and netted pattern of a medium density, medium time of ripening, a long to very long shelf life, and intermediate resistance to powdery mildew Podosphaera xanthii (Px) race 1, race 2, race 5. The present invention also relates to a Cucumis melo plant produced by growing the 34-780 RZ seed. The invention further relates to methods for producing the melon cultivar, represented by melon variety 34-780 RZ.

HYBRID PEPPER VARIETIES 35-237 RZ and 35-238 RZ

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The present invention relates to a Capsicum annuum seed designated 35-237 RZ and 35-238 RZ, which exhibits resistance to Tobamovirus pathotypes P0, P1, P1-2, and P1-2-3, a more open plant type, yellow colored fruits, and low susceptibility towards anthocyanin staining of the fruits under stress conditions. The present invention also relates to a Capsicum annuum plant produced by growing the 35-237 RZ or 35-238 RZ seed. The invention further relates to methods for producing the pepper cultivar, represented by pepper varieties 35-237 RZ and 35-238 RZ.

LETTUCE VARIETY 79-348 RZ

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The present invention relates to a Lactuca sativa seed designated 79-348 RZ, which exhibits resistance against downy mildew races B1:1 to B1:28 and CA-I, CA-IIA, CA-IIB, CAIII, CA-IV, CA-V, CA-VI, CA-VII, CA-VIII (Bremia lactucae), resistance to Nasonovia ribisnigri, resistance to LMV, and an extraordinary high number of oakleaf-shaped leaves of substantially equal size with a semi-erect adult leaf attitude. The present invention also relates to a Lactuca sativa plant produced by growing the 79-348 RZ seed. The invention further relates to methods for producing the lettuce cultivar, represented by lettuce variety 79-348 RZ.

LETTUCE VARIETY 41-106 RZ

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The present invention relates to a Lactuca sativa seed designated 41-106 RZ, which exhibits resistance to downy mildew (Bremia lactucae) races Bl:1-28, Ca-I to Ca-VIII, and strain FR10.021, currant-lettuce aphid (Nasonovia ribisnigri), lettuce mosaic virus (LMV), and to corky root rot (Sphingomonas suberifaciens), as well as broad base leaves. The present invention also relates to a Lactuca sativa plant produced by growing the 41-106 RZ seed. The invention further relates to methods for producing the lettuce cultivar, represented by lettuce variety 41-106 RZ.

HYBRID SPINACH VARIETY 51-518 RZ

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The present invention relates to a Spinacia oleracea L. seed designated 51-518 RZ, which exhibits a combination of traits including early bolting, a semi-erect plant habit, smooth mature leaves, field resistance against leaf spot diseases and resistance to downy mildew (Peronsopera farinosa f. sp. spinaciae) races Pfs 1 to 12 and Pfs 14. The present invention also relates to a Spinacia oleracea plant produced by growing the 51-518 RZ seed. The invention further relates to methods for producing the spinach cultivar, represented by spinach variety 51-518 RZ.

LETTUCE VARIETY 45-125 RZ

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The present invention relates to a Lactuca sativa seed designated 45-125 RZ, which may exhibit a combination traits including resistance to downy mildew (Bremia lactucae) races Bl:1-28, Ca-I to Ca-VIII, and strain USA927, resistance to currant-lettuce aphid (Nasonovia ribisnigri), moderately glossy leaves, and a medium head size. The present invention also relates to a Lactuca sativa plant produced by growing the 45-125 RZ seed. The invention further relates to methods for producing the lettuce cultivar, represented by lettuce variety 45-125 RZ.

PLANT REGULATORY ELEMENTS AND USES THEREOF

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The invention provides recombinant DNA molecules and constructs, as well as their nucleotide sequences, useful for modulating gene expression in plants. The invention also provides transgenic plants, plant cells, plant parts, and seeds comprising a recombinant DNA molecule comprising a DNA molecule operably linked to heterologous transcribable DNA molecule, as are methods of their use.

PLANT REGULATORY ELEMENTS AND USES THEREOF

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The invention provides recombinant DNA molecules and constructs, and their nucleotide sequences, useful for modulating gene expression in plants. The invention also provides transgenic plants, plant cells, plant parts, and seeds comprising a recombinant DNA molecule comprising a DNA molecule operably linked to a heterologous transcribable DNA molecule, as well as methods of their use.

Complex Disease Resistant Monocot Having Optimized Agronomic Characteristics

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The present inventors isolated many promoters having various expression characteristics from monocots, connected the OsWRKY45 gene downstream of these promoters, and then re-introduced them into a monocot (rice plant), and thereby strived to produce a rice line having both complex disease resistance and excellent agronomic traits. As a result, the present inventors succeeded in producing transgenic plants having both disease resistance and good agronomic traits by expressing OsWRKY45 using upstream sequences of the EF1α or OsUbi7 gene as promoters.
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