References
- Adikaram, N. K. B., Brown, A. E. and Swinburne, T. R. 1988. Phytoalexin induction as a factor in the protection of Capsicum annuum L. fruits against infection by Botrytis cinerea. Pers. J. Phytopathol 122:267−273. https://doi.org/10.1111/j.1439-0434.1988.tb01016.x
- Adikaram, N. K. B. 1990. Possibility of control of postharvest fungal disease by manipulation of host defence system. Proceedings of the 3rd International Conference on Plant Protection in the Tropics, Genting Highlands, Pahang, Malaysia, 20− 23 March 1990. (V), 31−36.
- Adikaram, N. K. B., Joyce, D. C. and Terry, L. A. 2002. Biocontrol activity and induced resistance as a possible mode of action for Aureobasidium pullulans against grey mould of strawberry fruit. Austral. Plant Pathol. 31:223−229. https://doi.org/10.1071/AP02017
- Adikaram, N. K. B. and Bandara, B. M. R. 1998. Methodology for studying defense mechanisms against fungal pathogens-An Overview. In: Disease resistance in fruits (Eds) G.I. Johnson, E. Highley, and D. C. Joyce, ACIAR Proceedings No. 80, 177−185.
- Brown, A. E. and Swinburne, T. R. 1980. The resistance of immature banana fruits to anthracnose [Colletotrichum musae (Berk. & Curt.)Arx.]. J. Phytopathol. 99: 70-80. https://doi.org/10.1111/j.1439-0434.1980.tb03762.x
- Dann, E. K. and Deverall, B. J. 2000. Activation of systemic acquired resistance in pea by an avirulent bacterium or a benzothiadiazole, but not by a fungal leaf spot pathogen. Plant Pathol. 49:324−332.
- De Ascensao, A. R. D. C. F. and Dubery, I. A. 2003. Soluble and wall-bound phenolics and phenolic polymers in Musa acuminata roots exposed to elicitors from Fusarium oxysporum f.sp. cubense. Phytochemistry 63:679−686.
- Ferreira, R. B., Monteiro, S., Freitas, R., Santos, C. N., Chen, Z., Batista, L. M., Duarte, J., Borges, A. and Teixeira, A. R. 2007. The role of plant defense proteins in fungal pathogenesis. Mol. Plant. Pathol. 8:677-700. https://doi.org/10.1111/j.1364-3703.2007.00419.x
- Hirai, N., Ishida, H. and Koshimizu, K. 1994. A phenalenonetype phytoalexin from Musa acuminata. Phytochemistry 37:383−385.
- Jeffries, P., Dodd, J. C., Jeger, M. J. and Plumbley, R. A. 1990. The biology and control of Colletotrichum species on tropical fruit crops. Plant Pathol. 39:344−366.
- Johansen, D. A. 1940. Plant microtechnique. McGraw-Hill, New York.
- Kamo, T., Kato, N., Hirai, N., Tsuda, M., Fujioka, D. and Ohigashi, H. 1998. Phenylphenalenone-type phytoalexins from unripe Bungulan banana fruit. Biosci. Biotech. Bioch. 62:95-101. https://doi.org/10.1271/bbb.62.95
- Kamo, T., Hirai, N., Tsuda, M., Fujioka, D. and Ohigashi, H. 2000. Changes in the content and biosynthesis of phytoalexins in banana fruit. Biosci. Biotech. Bioch. 64:2089−2098.
- Kamo, T., Hirai, N., Iwami, K., Fujioka, D. and Ohigashi, H. 2001. New phenylphenalenones from banana fruit. Tetrahedron 57:7649−7656. https://doi.org/10.1016/S0040-4020(01)00749-9
- Kesari, R., Trivedi, P. K. and Nath, P. 2010. Gene expression of pathogenesis-related protein during banana ripening and after treatment with 1-MCP. Postharvest Biol. Tec. 56:64-70. https://doi.org/10.1016/j.postharvbio.2009.11.012
- Klarman, W. L. and Stanford, J. L. 1968. Isolation and purification of an antifungal principle from infected soya beans. Life Sci. 7:1095−1103.
- Leone, P., Menu-Bouaouiche, L., Peumans, W. J., Payan, F., Barre, A., Roussel, A., Van Damme, E. J. M. and Rouge, P. 2006. Resolution of the structure of the allergenic and antifungal banana fruit thaumatin-like protein at 1.7-A. Biochimie 88: 45-52. https://doi.org/10.1016/j.biochi.2005.07.001
- Lewis, N. G. and Yamamoto, E. 1990. Lignin: occurrence, biogenesis and biodegradation. Annu. Rev. Plant Physiol. Plant Mol. Biol. 41:455−496.
- Liberato, J. R., Van Brunschot, S., Grice, K., Henderson, J., Shivas, R. G. 2006. Banana freckle (Guignardia musae) Pest and Diseases Image Library. Department of Primary Industries and Fisheries, Queensland, Australia. http://www.padil.gov.au
- Luis, J. G., Echeverri, F., Quinones, W., Brito, I., Lopez, M., Torres, F., Cardona, G., Aguiar, Z., Pelaez, C. and Rojas, M. 1993. Irenolone and Emenolone: Two new types of phytoalexin from Musa paradisiaca. J. Org. Chem. 58:4306−4308.
- Luis, J. G., Flecther, Q. W., Echeverri, F., Abad, T., Kishi, P. M. and Perales, A. 1995. New phenalenone-type phytoalexins from Musa acuminata (COLLA AAA) Grand nain. Nat. Product Lett. 6:23−30.
- Luis, J. G., Quinones, W., Echeverri, F., Grillo, T. A., Kishi, M. P., Garcia-Garcia, F., Torres, F. and Cardona, G. 1996. Musanolones: four 9-phenylphenalenones from rhizomes of Musa acuminata. Phytochemistry 41:753−757.
- Martinez-Tellez, and M. A. and Lafuente, M. T. 1993. Chilling-induced changes in phenylalanine ammonia-lyase, peroxidase, and polyphenol oxidase activities in citrus flavedo tissue. Acta Hort. 343:257−263.
- Muirhead, I. F. and Deverall, B. J. 1981. Role of appressoria in latent infection of banana fruits by Colletotrichum musae. Physiol. Plant Pathol. 19:77−84.
- Otalvaro, F., Echeverri, F., Quinones, W., Torres, F. and Schneider, B. 2002. Correlation between phenylphenalenone phytoalexins and phytopathological properties in Musa and the role of a dihydrophenylephenalene. Triol. Molecules 7:331−340.
-
Peumans, W. J., Barre, A., Derycke, V., Rouge, P., Zhang, W., May, D. G., Delcour, J. A., Leuven, F. V. and Van Damme, E. J. M. 2000. Purification, characterization and structural analysis of an abundant
$\beta$ -1,3-glucanase from banana fruit. Eur. J. Biochem. 267:1188−1195. https://doi.org/10.1046/j.1432-1327.2000.01117.x - Prusky, D., Fuchs, Y. and Zauberman, G. A. 1981. A method for preharvest assessment of latent infections in fruits. Ann. Appl. Biol. 98:79−85.
- Quinones, W., Escobar, G., Echeverri, F., Torres, F., Rosero, Y., Arango, V., Cardona, G. and Gallego, A. 2000. Synthesis and antifungal activity of Musa phytoalexins and structural analogs. Molecules 5:974−980.
- Simmonds, J. H. 1963. Studies in the latent phase of Colletotrichum species causing rots of tropical fruits. Qd. J. Agric. Sci. 20:373−424.
- Tang, W., Zhua, S., Lia, L., Liua, D. and Irving, D. E. 2010. Differential expressions of PR1 and chitinase genes in harvested bananas during ripening, and in response to ethephon, benzothiadizole and methyl jasmonate. Postharvest Biol. Tec. 57:86-91. https://doi.org/10.1016/j.postharvbio.2010.02.007
- Terry, L. A. and Joyce, D. C. 2004. Elicitors of induced disease resistance in postharvest horticultural crops: a brief review. Postharvest Biol. Tec. 32:1−13.
- Trudel, J. and Asselin, A. 1989. Detection of chitinase activity after polyacrylamide gel electrophoresis. Anal. Biochem. 178:362-366. https://doi.org/10.1016/0003-2697(89)90653-2
- Van Loon, L. C. 1997. Induced resistance in plants and the role of pathogenesis related proteins. Eur. J. Plant Pathol. 103:753-765. https://doi.org/10.1023/A:1008638109140
-
Yue-Ming, J. 1997. Incidence of anthracnose in relation to chitinase,
$\beta$ -1,3-glucanase and dopamine of banana fruits after harvest. Acta Photophysiol. Sinica 23:158−162. - Zou, X., Nonogaki, H. and Welbaum, G. E. 2002. A gel diffusion assay for visualization and quantification of chitinase activity. Mol. Biotechnol. 22:19−23.