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

Create successful ePaper yourself

Turn your PDF publications into a flip-book with our unique Google optimized e-Paper software.

Appendix 1<br />

Dik, A., <strong>and</strong> Wubben, J. (2001). Biological <strong>control</strong> of Botrytis cinerea in greenhouse crops. Bulletin OILB/SROP 24, 49-52.<br />

Dik, A. J., <strong>and</strong> Elad, Y. (1999). Comparison of antagonists of Botrytis cinerea in greenhouse-grown cucumber <strong>and</strong> tomato under different climatic conditions. European Journal of Plant Pathology 105, 123-<br />

137.<br />

Dik, A. J., Koning, G., <strong>and</strong> Köhl, J. (1999). Evaluation of microbial antagonists for <strong>biological</strong> <strong>control</strong> of Botrytis cinerea stem infection in cucumber <strong>and</strong> tomato. European Journal of Plant Pathology 105,<br />

115-122.<br />

Ding, Z., Liu, F., <strong>and</strong> Mu, L. (2002). UV-induced resistant strains of Trichoderma harzianum to procymidone. Chinese Journal of Biological Control 18, 75-78.<br />

Droby, S., Wisniewski, M., El-Ghaouth, A., <strong>and</strong> Wilson, C. (2003). Influence of food additives on the <strong>control</strong> of postharvest rots of apple <strong>and</strong> peach <strong>and</strong> efficacy of the yeast-based bio<strong>control</strong> product Aspire.<br />

Postharvest Biology <strong>and</strong> Technology 27, 127-135.<br />

Duraisamy, S., Ciavorella, A., Spadaro, D., Garibaldi, A., <strong>and</strong> Gullino, M. L. (2008). Metschnikowia pulcherrima strain MACH1 outcompetes Botrytis cinerea, Alternaria alternata <strong>and</strong> Penicillium expansum<br />

in apples through iron depletion. Postharvest Biology <strong>and</strong> Technology 49, 121-128.<br />

Edwards, S. G., <strong>and</strong> Seddon, B. (2001). Mode of antagonism of Brevibacillus brevis <strong>against</strong> Botrytis cinerea in vitro. Journal of Applied Microbiology 91, 652-659.<br />

El-Ghaouth, A., Smilanick, J. L., Brown, G. E., Ippolito, A., <strong>and</strong> Wilson, C. L. (2001a). Control of decay of apple <strong>and</strong> citrus fruits in semicommercial tests with C<strong>and</strong>ida saitoana <strong>and</strong> 2-deoxy-D-glucose.<br />

Biological Control 20, 96-101.<br />

El-Ghaouth, A., Smilanick, J. L., <strong>and</strong> Wilson, C. L. (2000a). Enhancement of the performance of C<strong>and</strong>ida saitoana by the addition of glycolchitosan for the <strong>control</strong> of postharvest decay of apple <strong>and</strong> citrus<br />

fruit. Postharvest Biology <strong>and</strong> Technology 19, 103-110.<br />

El-Ghaouth, A., Smilanick, J. L., Wisniewski, M., <strong>and</strong> Wilson, C. L. (2000b). Improved <strong>control</strong> of apple <strong>and</strong> citrus fruit decay with a combination of C<strong>and</strong>ida saitoana <strong>and</strong> 2-deoxy-D-glucose. Plant Disease<br />

84, 249-253.<br />

El-Ghaouth, A., Wilson, C., <strong>and</strong> Wisniewski, M. (2001b). Evaluation of two bio<strong>control</strong> products, Bio-Coat <strong>and</strong> Biocure, for the <strong>control</strong> of postharvest decay of pome <strong>and</strong> citrus fruit. Bulletin OILB/SROP 24,<br />

161-165.<br />

El-Ghaouth, A., Wilson, C., <strong>and</strong> Wisniewski, M. (2001c). Induction of systemic resistance in apple by the yeast antagonist C<strong>and</strong>ida saitoana. Bulletin OILB/SROP 24, 309-312.<br />

El-Neshawy, S., Osman, N., <strong>and</strong> Okasha, K. (1999). Biological <strong>control</strong> of neck rot <strong>and</strong> black mould of onion. Egyptian Journal of Agricultural Research 77, 125-137.<br />

El-Neshawy, S. M., <strong>and</strong> El-Morsy, F. M. (2003). Control of gray mold of grape by pre-harvest application of C<strong>and</strong>ida oleophila <strong>and</strong> its combination with a low dosage of Euparen. Acta Horticulturae, 95-102.<br />

El-Neshawy, S. M., <strong>and</strong> Shetaia, Y. M. H. (2003). Bio<strong>control</strong> capability of C<strong>and</strong>ida spp. <strong>against</strong> Botrytis rot of strawberries with respect to fruit quality. Acta Horticulturae, 727-733.<br />

El-Sheikh Aly, M. M., Baraka, M. A., <strong>and</strong> El-Sayed Abbass, A. G. (2000). The effectiveness of fumigants <strong>and</strong> <strong>biological</strong> protection of peach <strong>against</strong> fruit rots. Assiut Journal of Agricultural Sciences 31, 19-<br />

31.<br />

El-Zayat, S. A. (2008). Antimicrobial activities of secondary metabolites produced by endophytic fungi from Glinus lotoides. World Journal of Agricultural Sciences 4, 206-212.<br />

Elad, Y. (2000a). Biological <strong>control</strong> of foliar pathogens by means of Trichoderma harzianum <strong>and</strong> potential modes of action. Crop Protection 19, 709-714.<br />

Elad, Y. (2000b). Trichoderma harzianum T39 preparation for bio<strong>control</strong> of plant diseases - <strong>control</strong> of Botrytis cinerea, Sclerotinia sclerotiorum <strong>and</strong> Cladosporium fulvum. Bio<strong>control</strong> Science <strong>and</strong> Technology<br />

10, 499-507.<br />

Elad, Y., Baker, S. C., Faull, J. L., <strong>and</strong> Taylor, J. (2004). Multi trophic relationships - interaction of a bio<strong>control</strong> agent <strong>and</strong> a pathogen with the indigenous micro-flora on bean leaves. Bulletin OILB/SROP 27,<br />

151-154.<br />

Elad, Y., Kirshner, B., Yehuda, N., <strong>and</strong> Sztejnberg, A. (1998). Management of powdery mildew <strong>and</strong> gray mould of cucumber by Trichoderma harzianum T39 <strong>and</strong> Ampelomyces quisqualis AQ10. BioControl<br />

43, 241-251.<br />

Elmer, P. A. G., <strong>and</strong> Köhl, J. (1998). The survival <strong>and</strong> saprophytic competitive ability of the Botrytis spp. antagonist Ulocladium atrum in lily canopies. European Journal of Plant Pathology 104, 435-447.<br />

Enya, J., Shinohara, H., Yoshida, S., Tsukiboshi, T., Negishi, H., Suyama, K., <strong>and</strong> Tsushima, S. (2007). Culturable leaf-associated bacteria on tomato plants <strong>and</strong> their potential as <strong>biological</strong> <strong>control</strong> agents.<br />

Microbial Ecology 53, 524-536.<br />

Essghaier, B., Sadfi-Zouaoui, N., Fardeau, M. L., Boudabous, A., Ollivier, B., Friel, D., <strong>and</strong> Jijakli, M. H. (2007). Post-harvest <strong>biological</strong> <strong>control</strong> of grey mould rot on strawberry fruits using moderately<br />

halophilic bacteria. Bulletin OILB/SROP 30, 73.<br />

Eva, B. (2003). Biological <strong>control</strong> of pathogens Sclerotinia sclerotiorum (Lib.) de Bary <strong>and</strong> Botrytis cinerea (Pers.) from sunflower (Helianthus annuus L.) crops. Cercetari Agronomice in Moldova 36, 73-80.<br />

Fan, Q., <strong>and</strong> Tian, S. (2001). Postharvest <strong>biological</strong> <strong>control</strong> of grey mold <strong>and</strong> blue mold on apple by Cryptococcus albidus (Saito) Skinner. Postharvest Biology <strong>and</strong> Technology 21, 341-350.<br />

Fan, Q., Tian, S., Jiang, A., <strong>and</strong> Xu, Y. (2001a). Isolation <strong>and</strong> screening of bio<strong>control</strong> antagonists of diseases of postharvest fruits. China Environmental Science 21, 313-316.<br />

Fan, Q., Tian, S., <strong>and</strong> Xu, Y. (2001b). Effects of Trichosporon sp. on bio<strong>control</strong> efficacy of grey <strong>and</strong> blue mold on postharvest apple. Scientia Agricultura Sinica 34, 163-168.<br />

Farrag, A. A. (2003). New approaches in <strong>biological</strong> <strong>control</strong> of Alternaria alternata <strong>and</strong> Botrytis cinerea attacking cucumber plants. African Journal of Mycology <strong>and</strong> Biotechnology 11, 189-205.<br />

Faten, S. M. (2005). Postharvest treatments of apple fruits decay caused by Botrytis cinerea, Alternaria alternata <strong>and</strong> Penicillium expansum. Annals of Agricultural Science (Cairo) 50, 613-633.<br />

87

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

Saved successfully!

Ooh no, something went wrong!