참고문헌
- Basiacik, K. S. and N. Aksoz. 2004. Optimization of carbon-nitrogen ratio for production of gibberellic acid by Pseudomonas sp.. Pol. J. Microbiol. 53, 117-20
- Bottini, R., F. Cassan and P. Piccoli. 2004. Gibberellin production by bacteria and its involvement in plant growth promotion and yield increase. Appl. Microbiol. Biotechnol. 65, 497-503
- Choi, W. Y., K. S. Shin, I. J. Lee, I. K. Rhee, J. H. Lee, and J. G. Kim. 2004. Isolation of gibberellin-producing Penicillum spp. from the root of Lindera obtusilob and Vaccinium koreanum. Kor. J. Mycol. 32, 16-22 https://doi.org/10.4489/KJM.2004.32.1.016
- Choi, W. Y., S. O. Rim, J. H. Lee, J. M. Lee, I. J. Lee, K. J. Cho, I. K. Rhee, J. B. Kwon, and J. G. Kim. 2005. Isolation of gibberellins-producing fungi from the root of several sesamum indicum plants. J. Microbiol. Biotechnol. 15, 22-28
- Escamilla, EM, L. Dendooven, IP Magana, R. Parra and M. De la Torre. 2000. Optimization of gibberellic acid production by immobilized Gibberella fujikuroi mycelium in fluidized bioreactors, J. Biotechnol. 76, 147-55 https://doi.org/10.1016/S0168-1656(99)00182-0
- Hedden, Peter and A. L. Phillips. 2000. Gibberellin metabolism: new insights revealed by the genes. Trends in Plant Sci. 5, 523-530 https://doi.org/10.1016/S1360-1385(00)01790-8
- Hedden, Peter, A. L. Phillips, M. C. Rojas, E. Carrera, and B. Tudzynski. 2002. Gibberellin biosynthesis in plants and fungi: A case of convergent evolution? J. Plant Growth Regul. 20, 319-331 https://doi.org/10.1007/s003440010037
-
Kawaide, H. and T. Sassa. 1993. Accumulation of gibberellin
$A_1$ and the metabolism of gibberellin$A_9$ to gibberellin$A_1$ in a Phaeosphaeria sp. L 487 culture. Biosci Biotech Biochem. 57, 1403-1405 https://doi.org/10.1271/bbb.57.1403 -
Kawanabe, Y., H. Yamane, T. Murayama, N. Takahashi and T. Nakamura. 1983. Identification of gibberellin
$A_3$ in mycelia Neurospora crassa. Agric. Biol. Chem. 47, 1693-1694 https://doi.org/10.1271/bbb1961.47.1693 -
Oller-Lopez, JL, J. Avalos, AF Barrero, and JE Oltra. 2003. Improved
$GA_1$ production by Fusarium fujikuroi. Appl. Microbiol. Biotechnol. 63, 282-5 https://doi.org/10.1007/s00253-003-1376-6 - Olszewki, N., T. Sun, and F. Gubler. 2002. Gibberellin signal: biosynthesis, catabolism, and response pathways. The Plant Cell S61-S80
- Rachev, R., V. Gancheva, S. Bojkova, C. Christov, and T. Zafirova, 1997. Gibberellin biosynthesis by Fusarium moniliforme in the presence of hydrophobic resin Amberlite XAD-2. Bulg. J. Plant Physi. 12, 24-31
- Rim, S. O., J. H. Lee, W. Y. Choi, S. K. Hwang, S. J. Suh, I. J. Lee, I. K. Rhee, and J. G. Kim. 2005. Fusarium prolifertum KGL0401 as a new gibberellin-producing fungus. J. Microbiol. Biotechnol. 15, 809-814
- Sanchez-Fernandez, R., J. Avalos, and E. Cerda-Olmedo. 1997. Inhibition of gibberellin biosynthesis by nitrate in Gibberella fujikuroi. FEBS Lett. 413, 35-39 https://doi.org/10.1016/S0014-5793(97)00872-7
- Tudzynski, B. 1999. Biosynthesis of gibberellins in Gibberella fujikuroi: biomolecular aspects. Appl. Microbiol. Biotechnol. 52, 298-310 https://doi.org/10.1007/s002530051524
피인용 문헌
- Plant Growth Promotion of Calystegia soldanella and Ischaemum anthephoroides by the Strain Penicillium citrinum KACC43900 vol.20, pp.9, 2010, https://doi.org/10.5352/JLS.2010.20.9.1373