Inbred corn line PHEM9

Multicellular living organisms and unmodified parts thereof and – Method of introducing a polynucleotide molecule into or... – The polynucleotide alters fat – fatty oil – ester-type wax – or...

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800250, 800DIG56, 4352404, 43524049, 4352405, A01H 500, A01H 400, C12N 504

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active

053549422

ABSTRACT:
According to the invention, there is provided an inbred corn line, designated PHEM9. This invention thus relates to the plants and seeds of inbred corn line PHEM9 and to methods for producing a corn plant produced by crossing the inbred line PHEM9 with itself or with another corn plant. This invention further relates to hybrid corn seeds and plants produced by crossing the inbred line PHEM9 with another corn line or plant.

REFERENCES:
patent: 4812599 (1989-03-01), Segebart
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Meghji et al. 1984. Crop Science. 24: 545-549.
Wright. 1980. In Hybridization Of Crop Plants. Ch. 8: 161-176. Fehr et al., eds.
Wych. 1988. In Corn and Corn Improvement. Ch. 9: 565-607. Sprague et al., eds.
Conger, B. V., et al., "Somatic Embryogenesis From Cultured Leaf Segments of Zea Mays", Plant Cell Reports, 6:345-347 (1987).
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Green, et al., "Plant Regeneration From Tissue Cultures In Maize" Crop Science, vol. 15, pp. 417-421 (1975).
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Troyer, et al., "Selection for Early Flowering in Corn: 10 Late Synthetics". Crop Science, vol. 25, pp. 695-697 (1985).
Umbeck, et al. "Reversion of Male-Sterile T-Cytoplasm Maize to Male Fertility in Tissue Culture" Crop Science. vol. 23, pp. 584-588. (1983).
Tomes, et al., "The Effect of Parental Genotype on Initiation of Embryogenic Callus from Elite Maize (Zea mays L.) germplasm". Theor. Appl. Genet. 70. pp. 505-509. (1985).

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