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STATE OF ISRAEL I MINISTRY OF AGRICULTURE AND RURAL DEVELOPMENT   
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About Institutes Public Relations Technology Transfer Students\International Library Administration
שלח באימייל הדפס
 
Name: Nadia Korolev, Ph.D. (Retiree)
Units: Plant ProtectionPlant Pathology and Weed Research
Research Interests / Job description  
Tel:  08-9427629
Cell: 0506-220-533
Email:    vpptlg@volcani.agri.gov.il
Office location:Bet-Dagan
Address:

Researcher

Research Interests / Job description
Fungal populations, soilborne and foliar fungi, fungal genetics, vegetative compatibility, resistance to fungicides, induced systemic resistance, Verticillium, Botrytis, Fusarium, Trichoderma

 

CURRICULUM VITAE

1983: Ph.D. in genetics, Moscow State University, Moscow, Russia.

1983 -1987: Research Scientist and Senior Scientist, Cotton Genetics Department of Tadjik Academy of Sciences.

1988: Internship, Moscow State University, specializing in plant biotechnology.

1988 -1992: Senior Scientist and group leader, Institute of Plant Physiology & Biophysics of Tadjik Academy of Sciences.

1994 - 2000: Temporary research position at the Department of Plant Pathology, ARO, the Volcani Center (participation in the Giladi Program supported by the Ministry of Absorbtion).

2000 - 2014: Research Scientist, Department of Plant Pathology, ARO, the Volcani Center (participation in the KAMEA Program supported by the Ministry of Absorbtion).

2014/3: Retiree

SELECTED PUBLICATIONS

Korolev. N., and Katan, T. (1997). An improved medium for selecting nitrate-nonutilizing (nit) mutants of Verticillium dahliae. Phytopathology 87:1067-1070.

Korolev, N., and Katan, T. (1999). Vegetative compatibility grouping in Verticillium nigrescens and V. tricorpus. Mycol. Res. 103:65-76.

Korolev, N., and Gindin, G. (1999). Vegetative compatibility in the entomopathogen Verticillium lecanii. Mycol. Res. 103:833-840.

Korolev, N., Katan, J., and Katan, T. (2000). Vegetative compatibility groups of Verticillium dahliae in Israel: their distribution and association with pathogenicity. Phytopathology 90: 529-536.

Korolev, N., Perez-Artes, E., Bejarano-Alcazar, J., Rodriguez-Jurado, D., Katan, J., Katan, T. and Jimenez-Diaz, R. (2001). Comparative study of genetic diversity and pathogenicity among populations of Verticillium dahliae from cotton in Spain and Israel. Eur. J. Plant Pathol. 107:443-456.

Korolev, N. (2002). Heterokaryon compatibility in Verticillium dahliae tested by comparing nit and auxotrophic mutants. Phytoparasitica 30:311-312.

Freeman, S., Klein-Gueta, D., Korolev, N., and Sztejnberg, A. (2003). Epidemiology and survival of Fusarium subglutinans, the causal agent of mango malformation disease. Acta Hort. (ISHS) 645:487-491.

Can, C., Yugel, S., Korolev, N., Katan, T. (2004). First report of Fusarium crown and root rot of tomato caused by Fusarium oxysporum f.sp. radicis-lycopersici in Turkey. Plant Pathol. 53:814.

Korolev, N., Rav David D., Elad, Y. (2004). Involvement of plant hormones in the biocontrol achieved by Trichoderma harzianum. IOBC WPRS Bulletin 27(8):363-366.

Okon Levy, N., Elad, Y., Korolev, N., Katan, J. (2004). Resistance induced by soil biocontrol application and soil solarization for the control of foliar pathogens. IOBC WPRS Bulletin 27(1):171-176.

Korolev, N., Katan, T., Elad, Y. (2006). Use of selenate-resistant strains as markers for the spread and survival of Botrytis cinerea under greenhouse conditions. Phytopathology 96: 1195-1203.

Korolev, N., Rav David D., Elad, Y. (2008). The role of phytohormones in basal resistance and Trichoderma-induced systemic resistance to Botrytis cinerea in Arabidopsis thaliana. BioControl, 53: 667-683.

Korolev, N., Elad, Y., and Katan, T. (2008). Vegetative compatibility grouping in Botrytis cinerea using sulphate-nonutilizing mutants. Eur. J. Plant Pathol. , 122:369-383.

Korolev, N., Perez-Artes, E., Mercado-Blanco, J., Bejarano-Alcazar, J., Rodriguez-Jurado, D., Katan, J., Jimenez-Diaz, R., Katan, T., and Katan, J. (2008). Vegetative compatibility of cotton defoliating Verticillium dahliae from cotton in Israel and its pathogenicity to various hosts. Eur. J. Plant Pathol., 122:603-617.

Elad, Y., Shpialter, L., Korolev, N., Mamiev, M., Rav David, D., Dori, I., Ganot, L., Shmuel, D., Matan, E., and Messika, Y. (2008). Chemical and cultural means of control integrated for grey mould (Botrytis cinerea) management in Lisianthus. In: Modern Fungicides and Antifungal Compounds V. 15th International Reinhardsbrunn Symposium, Friedrichroda - Germany, 211-218.

Korolev, N., Mamiev, M., Zahavi, T., and Elad, Y. (2009). Resistance to fungicides among Botrytis cinerea isolates from tomato and other hosts in Israel. Acta Hort., 808:367-375.

Korolev., N., Katan, T., and Katan, J. (2009). Physiological races and vegetative compatibility groups among Verticillium dahliae from tomato in Israel. Acta Hort., 808:57-64.

Korolev, N., Mamiev, M., and Elad, Y. (2010). Monitoring for resistance to fungicides in Botrytis cinerea and Sclerotinia sclerotiorum, the pathogens of sweet basil. Comm. Appl. Bio. Sci., Ghent Univ., 75/4: 705-707.

Korolev, N., Mamiev, M., Zahavi, T., and Elad, Y. (2011). Screening of Botrytis cinerea isolates from vineyards in Israel for resistance to fungicides. Eur. J. Plant Pathol., 129:591-608.

Mamiev, M., Korolev, N., and Elad, Y. (2013). Resistance to polyoxin AL and other fungicides in Botrytis cinerea collected from sweet basil crops in Israel. Eur. J. Plant Pathol., 137:79-91.

Korolev, N., and Elad, Y. (2014). Vegetative incompatibility in Botrytis. Book chapter, in press.

 

 

 

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