04.03.2014 Views

Classical and augmentative biological control against ... - IOBC-WPRS

Classical and augmentative biological control against ... - IOBC-WPRS

Classical and augmentative biological control against ... - IOBC-WPRS

SHOW MORE
SHOW LESS

You also want an ePaper? Increase the reach of your titles

YUMPU automatically turns print PDFs into web optimized ePapers that Google loves.

Nicot et al. (Appendix for Chapter 1)<br />

References on bio<strong>control</strong> <strong>against</strong> Botrytis<br />

Abada, K. A., Wahdan, H. M., <strong>and</strong> Abdel-Aziz, M. A. (2002). Fungi associated with fruit-rots of fresh strawberry plantations <strong>and</strong> some trials of their <strong>control</strong>. Bulletin of Faculty of Agriculture, Cairo<br />

University 53, 309-326.<br />

Abdelghani, E. Y., Bala, K., <strong>and</strong> Paul, B. (2004). Characterisation of Pythium paroec<strong>and</strong>rum <strong>and</strong> its antagonism towards Botrytis cinerea, the causative agent of grey mould disease of grape. FEMS<br />

Microbiology Letters 230, 177-183.<br />

Abha, A., <strong>and</strong> Tripathi, H. S. (1999). Biological <strong>and</strong> chemical <strong>control</strong> of Botrytis gray mould of chickpea. Journal of Mycology <strong>and</strong> Plant Pathology 29, 52-56.<br />

Abha, A., Tripathi, H. S., <strong>and</strong> Rathi, Y. P. S. (1999). Integrated management of grey mould of chickpea. Journal of Mycology <strong>and</strong> Plant Pathology 29, 116-117.<br />

Acar, O., Aki, C., <strong>and</strong> Erdugan, H. (2008). Fungal <strong>and</strong> bacterial diseases <strong>control</strong> with ElexaTM plant booster. Fresenius Environmental Bulletin 17, 797-802.<br />

Achbani, E. H., Mounir, R., Jaafari, S., Douira, A., Benbouazza, <strong>and</strong> Jijakli, M. H. (2005). Selection of antagonists of postharvest apple parasites: Penicillium expansum <strong>and</strong> Botrytis cinerea. Communications<br />

in Agricultural <strong>and</strong> Applied Biological Sciences 70, 143-149.<br />

Adikaram, N. K. B., Joyce, D. C., <strong>and</strong> Terry, L. A. (2002). Bio<strong>control</strong> activity <strong>and</strong> induced resistance as a possible mode of action for Aureobasidium pullulans <strong>against</strong> grey mould of strawberry fruit.<br />

Australasian Plant Pathology 31, 223-229.<br />

Ahmad, M. S., Abou-Zeid, N. M., Swelim, M. A., Yassin, M. H., <strong>and</strong> Daboor, S. M. (2002). Characterization of an antibiotic produced by Streptomyces violaceus T118 <strong>and</strong> its effect in <strong>control</strong>ling chocolate<br />

spot disease of Faba bean plant. Egyptian Journal of Microbiology 37, 197-212.<br />

Allan, E. J., Lazaraki, I., Dertzakis, D., Woodward, S., Seddon, B., <strong>and</strong> Schmitt, A. (2003). Integrated <strong>biological</strong> <strong>control</strong> of powdery mildew <strong>and</strong> grey mould of cucumber <strong>and</strong> tomato using Brevibacillus brevis<br />

combinations. In "The BCPC International Congress: Crop Science <strong>and</strong> Technology, Volumes 1 <strong>and</strong> 2. Proceedings of an international congress held at the SECC, Glasgow, Scotl<strong>and</strong>, UK, 10-12<br />

November 2003", pp. 469-474.<br />

Altomare, C., Perrone, G., Zonno, M. C., Evidente, A., Pengue, R., Fanti, F., <strong>and</strong> Polonelli, L. (2000). Biological characterization of fusapyrone <strong>and</strong> deoxyfusapyrone, two bioactive secondary metabolites of<br />

Fusarium semitectum. Journal of Natural Products 63, 1131-1135.<br />

Amborabe, E., Aziz, A., Trotel-Aziz, P., Quantinet, D., Dhuicq, L., <strong>and</strong> Vernet, G. (2004). Chitosan <strong>against</strong> Botrytis cinerea on vineyard. Phytoma, 26-29.<br />

Anderson, J. A., Filonow, A. B., <strong>and</strong> Vishniac, H. S. (1997). Cryptococcus humicola inhibits development of lesions in 'Golden Delicious' apples. HortScience 32, 1235-1236.<br />

Anitha, R. (2006). Antifungal activity of Fusarium lateritium extracts. Indian Journal of Microbiology 46, 73-75.<br />

Antoniacci, L., Cobelli, L., Paoli, E. d., <strong>and</strong> Gengotti, S. (2000). Open field <strong>control</strong> trials <strong>against</strong> strawberry grey mould. Informatore Fitopatologico 50, 45-51.<br />

Apablaza, H. G., <strong>and</strong> Jalil R, C. (1998). Trichoderma harzianum <strong>and</strong> pyrimethanil efficiency to <strong>control</strong> tomato gray mold (Botrytis cinerea) in greenhouse production. Ciencia e Investigacion Agraria 25, 51-<br />

58.<br />

Archbold, D. D., Hamilton-Kemp, T. R., Langlois, B. E., <strong>and</strong> Barth, M. M. (1997). Natural volatile compounds <strong>control</strong> Botrytis on strawberry fruit. Acta Horticulturae, 923-930.<br />

Arras, G., <strong>and</strong> Arru, S. (1999). Integrated <strong>control</strong> of postharvest citrus decay <strong>and</strong> induction of phytoalexins by Debaryomyces hansenii. Advances in Horticultural Science 13, 76-81.<br />

Audenaert, K., Damme, A. v., Cornelis, P., Cornelis, T., <strong>and</strong> Hofte, M. (2002). Induced resistance by Pseudomonas aeruginosa 7NSK2: bacterial determinants <strong>and</strong> reactions in the plant. Bulletin OILB/SROP<br />

25, 223-226.<br />

Bajji, M., <strong>and</strong> Jijakli, M. H. (2007). Wound age effect on the efficacy of C<strong>and</strong>ida oleophila strain O <strong>against</strong> post-harvest decay of apple fruits. Bulletin OILB/SROP 30, 279-282.<br />

Barakat, R. M., <strong>and</strong> Al-Masri, M. I. (2005). Biological <strong>control</strong> of gray mold disease (Botrytis cinerea) on tomato <strong>and</strong> bean plants by using local isolates of Trichoderma harzianum. Dirasat. Agricultural<br />

Sciences 32, 145-156.<br />

Bardin, M., Fargues, J., Couston, L., Troulet, C., Philippe, G., <strong>and</strong> Nicot, P. C. (2004a). Combined <strong>biological</strong> <strong>control</strong> <strong>against</strong> 3 bioaggressors of tomato. PHM Revue Horticole, 36-39.<br />

Bardin, M., Fargues, J., Couston, L., Troulet, C., Philippe, G., <strong>and</strong> Nicot, P. C. (2004b). Compatibility of intervention to <strong>control</strong> grey mould, powdery mildew <strong>and</strong> whitefly on tomato, using three <strong>biological</strong><br />

methods. Bulletin OILB/SROP 27, 5-9.<br />

Bardin, M., Fargues, J., <strong>and</strong> Nicot, P. C. (2008). Compatibility between biopesticides used to <strong>control</strong> grey mould, powdery mildew <strong>and</strong> whitefly on tomato. Biological Control 46, 476-483.<br />

Barka, E. A., Gognies, S., Nowak, J., Audran, J. C., <strong>and</strong> Belarbi, A. (2002). Inhibitory effect of endophyte bacteria on Botrytis cinerea <strong>and</strong> its influence to promote the grapevine growth. Biological Control 24,<br />

135-142.<br />

Batta, Y. A. (2004). Postharvest <strong>biological</strong> <strong>control</strong> of apple gray mold by Trichoderma harzianum Rifai formulated in an invert emulsion. Crop Protection 23, 19-26.<br />

Batta, Y. A. (2007). Control of postharvest diseases of fruit with an invert emulsion formulation of Trichoderma harzianum Rifai. Postharvest Biology <strong>and</strong> Technology 43, 143-150.<br />

Beasley, D. R., Joyce, D. C., Coates, L. M., <strong>and</strong> Wearing, A. H. (2001). Saprophytic microorganisms with potential for <strong>biological</strong> <strong>control</strong> of Botrytis cinerea on Geraldton waxflower flowers. Australian<br />

Journal of Experimental Agriculture 41, 697-703.<br />

Beasley, D. R., Joyce, D. C., Wearing, A. H., <strong>and</strong> Coates, L. M. (2005). Bees as bio<strong>control</strong> agent delivery vectors: a preliminary study for Geraldton waxflower flowers. Acta Horticulturae, 421-424.<br />

84

Hooray! Your file is uploaded and ready to be published.

Saved successfully!

Ooh no, something went wrong!