Compatibility of biocontrol agents with fungicides against red rot disease of sugarcane

Sugar Tech - 2002
P. Malathi1, R. Viswanathan1, P. Padmanaban1, D. Mohanraj1, A. Ramesh Sunder1
1Plant Pathology Section, Sugarcane Breeding Institute, Coimbatore-641 007, Tamil Nadu, India

Tóm tắt

Từ khóa


Tài liệu tham khảo

Backman, P.A. and Rodriguez-Kabana, R. (1977). Predisposition of peanuts to disease and suppression ofSclerotium rolfsii by pesticides : The role of antagonists. In : Current Topics in Plant Pathology (Ed. Kiraly, Z.) pp. 209–214. Budapest.

Chcnzhiyi, Lu Gan, Zhao Tianjun, Yan Data andWan Hengzhi (1998). Effect of fungicide on antagonistic bacteria from rice seed surface.Chinese J. Biol. Control14(2): 72–74.

Dennis, C. andWebster, J. (1971a). Antagonistic properties of species groups ofTrichoderma I. Production of non-volatile antibiotics.Trans. Br. Mycol. Soc,57: 25–39.

Heydari, A., Mivaghi, I. J. andMcCloskey, W. B. (1997). Effects of three soil-applied herbicides on populations of plant disease suppressing bacteria in the cotton rhizosphere.Pl. Soil,195: 75–81.

Jeyarajan, R., Ramakrishnan, G., Dinakaran, D. andSridhar, R. (1994). Development of product ofTrichoderma viride andBacillus subtilis for biocontrol of root rot disease. In: Dwivedi, B. K. ed.) Biotechnology in India. Bioved Research Society. Allahabad, India, pp. 25–36.

Kay, S. J. andStewart, A. (1994). The effect of fungicides on fungal antagonists of onion white rot and selection of dicarboximide-resistant biotypes.Plant Path.,43: 863–871.

Lindaw, S. E., McGourty, G. andElkins, R. (1996). Integration of antibiotics withPseudomonas fluorescens and frost injury to pear.Phytopathology,86: 841–848.

Lifshitz, R., Lifshitz, S. andBaker, R. (1985). Decrease in incidence ofRhizoctonia pre-emergence damping-off by use of integrated chemical and biological controls.Plant Dis.,69: 431–434.

Mukhopadhyay, A. N. (1995). Exploitation ofGliocladium virens andTrichoderma harzianum for biological seed treatment against soil-borne diseases.Indian J. Mycol. Pl. Pathol.,25: 124.

Naar, Z. andKecskes, M. (1998). Antagonism ofTrichoderma atroviride andTrichoderma viride strains againstSclerotinia minor as influenced by mancozeb, benomyl and vinclozolin.Acta Phytopathologica et Entomologica Hungarica,33: 123–130.

Nallathambi, P., Mohanraj, D. andPadmanaban, P. (2000). Biocontrol of red rot caused byColletotrichum falcatum in sugarcane. Presented in International conference on Integrated Plant Disease Management for Sustainable Agriculture.Proc. of Indian Phytopathology Society-Golden Jubilee. Vol.1: 315–316.

OrtizMolinuevo, P., Wright, E. R., Delfino, O. S. D. E., Grijalba, D. E. andLopez, M. V. (1996). Growth of antagonistic fungi in culture media with different dilutions of fungicides.Revista Facul. Agron.,15(1): 37–42.

Papavizas, G. C. andLewis, J. A. (1981). Introduction and augmentation of microbial antagonists for the control of soil borne plant pathogens. In: Biological Control in Crop Production, G. C. Papavizas (ed.), Allanheld, Osmum, New York. Pp. 305–322.

Papavizas, G. C., Lewis, J. A. andAbd-ElMoity, T. H. (1982). Evaluation of new biotypes ofTrichoderma harzianum for tolerance of benomyl and enhanced biocontrol capabilities.Phytopathology,72: 126–132.

Papavizas, G. C. (1985).Trichoderma andGliocladium: Biology, ecology and potential for biocontrol.Ann. Rev. Phytopathol.,23 : 23–54.

Sheela, M. S. andVenkitesan, T. S. (1997).In vitro evaluation of selected fungicides on the nematode pathogenic bacteria,Bacillus circulons. Pest Management in Horticultural Ecosystems,3(1): 49–51.

Silva, A. C. F. D. A., Rola, C. R. E. D. A., Mela, I. S. De. (1999). Susceptibility ofTrichoderma spp. isolates to benomyl and iprodione.Ciencia Rural,29(3): 395–399.

Thompson, D. C. (1996). Evaluation of bacterial antagonist for reduction of summer patch symptoms in Kentucky blue grass.Plant Dis.,80: 856–862.

Vidyasekaran, P. andMuthamilan, M. (1996). Development of formulations ofPseudomonas fluorescens for control of chickpea wilt.Plant Dis.,79: 782–786.

Viswanathan, R. andSamiyappan, R. (2000). Efficacy ofPseudomonas spp. strains against soil borne and sett borne inoculum ofColletotrichum falcatum causing red rot disease of sugarcane.Sugar Tech2(3): 26–29.

Viswanathan, R., Samiyappan, R., Nallathambi, P. andGanesan, V. (2000). Plant growth promotion by native fluorescent pseudomonads in sugarcane crop.Proc. Annual Congress of Sugar Technologists Association of India.62: 16–35.

Viswanathan, R., Malathi, P., Padmanaban, P. andMohanraj, D. (2001). Selection of efficient antagonistic strains ofPseudomonas spp. againstColletotrichum falcatum causing red rot disease in sugarcane. Proc. Ecofriendly approaches for Plant Disease Management. Jan. 22–24, Univ. of Madras, Chennai.

Vozenikova, B., Zvara, J. andSkorepa, J. (1992). The use ofTrichoderma spp. for biological protection of greenhouse cucumbers.Fitotechnicka Roda,1: 93–105.

Viji, G., Manibhushanrao, K. andBaby, U. I. (1997). Non-target effect of systemic fungicide on antagonistic microflora ofRhizoctonia solani.India Phytopath.,50: 324–328.

Vyas, S. C. (1994). Integrated biological and chemical control of dry root rot on soybean.Indian J. Mycol. PL Pathol.,24: 132–134.