共 41 条
[1]
Arriola M.D., Calzada J., Menchu J., Rolz C., Garcia R., Cabrera S.D., Papaya, Tropical and Subtropical Fruits, pp. 316-340, (1980)
[2]
Ausubel F.M., Brent R., Kingston R.E., Moore D.D., Seidman J.G., Smith J.A., Struhl K., Current Protocols in Molecular Biology, pp. 291-2920, (1995)
[3]
Cabrera-Ponce J.L., Vegas-Garcia A., Herrera-Estrella L., Herbicide resistant transgenic papaya plants produced by an efficient particle bombardment transformation method, Plant Cell Rep., 15, pp. 1-7, (1995)
[4]
Cheng Y.-H., Yang J.-S., Yeh S.-D., Efficient transformation of papaya by coat protein gene of papaya ringspot virus mediated by Agrobacterium following liquid-phase wounding of embryogenic tissues with carborundum, Plant Cell Rep., 16, pp. 127-132, (1996)
[5]
Ferreira S.A., Pitz K.Y., Manshardt R., Zee F., Filch M., Gonsalves D., Transgenic papaya controls papaya ringspot virus in Hawaii, Phytopathology, 87, (1997)
[6]
Fitch M.M.M., Manshardt R.M., Gonsalves D., Slightom J.L., Sanford J.C., Stable transformation of papaya via microprojectile bombardment, Plant Cell Rep., 9, pp. 189-194, (1990)
[7]
Fitch M.M.M., Manshardt R.M., Gonsalves D., Slightom J.L., Sanford J.C., Virus resistant papaya plants derived from tissues bombarded with the coat protein gene of papaya ringspot virus, Bio/Technology, 10, pp. 1466-1472, (1992)
[8]
Fitch M.M.M., High frequency somatic embryogenesis and plant regeneration from papaya hypocotyl callus, Plant Cell Tissue Organ Cult., 32, pp. 205-212, (1993)
[9]
Fuente J.M., Ramirez-Rodriguez V., Cabrera-Ponce J.L., Herrera-Estrella L., Aluminum tolerance in transgenic plants by alteration of citrate synthesis, Science, 276, pp. 1566-1568, (1997)
[10]
Galinsky R., World market for papaya, Regional Agribusiness Project Market Information Bulletin, (1996)