Skip to main navigation menu Skip to main content Skip to site footer

Vol. 1 No. 1 (2002)

Articles

The influence of the antagonistic fungi on limiting of soybean infections by the soilborne pathogenic fungi

DOI: https://doi.org/10.24326/asphc.2002.1.3
Submitted: July 25, 2022
Published: 2002-06-30

Abstract

The efficiency of protective activities of bacteria and fungi as Glycine max seeds dressing against the soilborne pathogenic fungi was evaluated in presented studies. The microbiological material was prepared from the antagonistic microorganisms strains of Bacillus spp., Pseudomonas spp., Gliocladium spp. and Trichoderma spp. The experiment was established in the field with soybean monoculture with infectious material of fungi naturally accumulated in the soil. Protective activities of applied microorganisms were determined on the ground of the number of grown plants, their healthiness and seeds crop quantity and quality. Obtained results showed that Trichoderma viride 254, T. harzianum 220 and Bacillus sp. 131 were the most effective for soybean protection . Gliocladium roseum 246, Gliocladium catenulatum 49 and Oxafun T Dressing turned out the least effective in their protective activities.

References

Ahmed Sid Ahmed, Pérez Sánchez C., Emilia Candela M., 2000. Evaluation of induction of systemic resistance in pepper plants (Capsicum annuum) of Phytphthora capsici using Trichoderma harzianum and its relation with capsidiol accumulation. Eur. J. Plant Pathol. 106, 9, 817–824.
Das B. C., Hazarika D. K., 2000. Biological management of sheath blight of rice. Indian Phytopath. 53, 4, 433–435.
Fiddman P. J., O’Neill T. M., Rossall S., 2000. Screaning of bacteria for the suppression of Botrytis cinerea and Rhizoctonia solani on lettuce (Lactuca sativa) using leaf disc bioassays. Ann. Appl. Biol. 137, 3, 223–235.
Hag I, Khan S. M., 2000. Antagonistic reaction of ten fungal isolates from root rot affected cotton plants. Pakistan J. Phytopath. 12, 2, 109–111.
Kovach J., Petzoldt R., Harman G. E., 2000. Use of Honey Bees and Bumble Bees to Disseminate Trichoderma harzianum 1295 – 22 to Strawberries for Botrytis Control. Biol. Contr. 18, 235–242.
Kredics L. D., D czi I., Antol Z., Manczinger L., 2000. Effect of heavy metals on growth and extracellular enzyme activities of mycoparasitic Trichoderma strains. Bull. Envir. Contamin. Toxic. 66, 2, 249–252.
Księżniak A., Kobus J., 1993. Udział drobnoustrojów ryzosfery pszenicy, jęczmienia i owsa w produkcji sideroforów. Pam. Puł. – Prace IUNG 102, 77–90.
Łacicowa B., Pięta D., 1985a. Szkodliwość niektórych mikopasożytów dla Sclerotinia sclerotiorum (Lib.) de Bary. Acta Mycol. XXI, 1, 125–134.
Łacicowa B., Pięta D., 1985b. Szkodliwość niektórych mikopasożytów dla fitopatogenicznych Fusarium spp. Rocz. Nauk Roln. s. E, 15, 1–2, 87–97.
Łacicowa B., Pięta D., 1989. Szkodliwo grzybów z rodzajów Trichoderma i Gliocladium dla niektórych patogenów fasoli. Zesz. Probl. Post. Nauk Roln. 374, 235–242.
McQuilken M. P., Gemmell J., Lahdenpera M. L., 2001. Gliocladium catenulatum as a potential biological control agent of damping off in bedding plants. J. Phytopath. 149, 3/4, 171–178.
Manwar A. V., Vaiganker P. D., Bhonge L. S., Chincholkar S. B., 2000. In vitro suppression of plant pathogens by siderophores of fluorescent pseudomonas. Indian J. Microbiol. 40, 2, 109–112.
Mesta R. K., Amaresh Y. S., 2000. Biological control of Sclerotium wilt of sunflower. Plant Disease Res. 15, 2, 202–203.
Metzler B., 1991. Application, nutritional factors, population dynamics and detection antagonists. [in:] Beemster A. B. R. i wsp. (eds): Biotic interactions and Soil – Borne diseases, Elsevier, 387–391.
Mishra R. C., Singh R., Singh H. B., Anupam D., 2000. In situ efficacy of Trichoderma harzianum as mycoparasite on Sclerotium rolfsii and Rhizoctonia solani. Tropical Agric. 22, 3, 205–206.
Oktaba W., 1987. Metody statystyki matematycznej w doświadczalnictwie. PWN, Warszawa.
Papavizas G. C., 1985. Trichoderma and Gliocladium: Biology, ecology and potential for biocontrol. Ann. Rev. Phytopath. 23, 23–54.
Pięta D., 1988. Mikozy występujące w uprawach fasoli (Phaseolus vulgaris L.) i podatność różnych odmian na porażenie przez niektóre grzyby. Wyd. AR Lublin, s. Rozpr. Nauk. 111, 1–77.
Pięta D., Patkowska E., 1997. Stosowanie mikroorganizmów do zwalczania chorobotwórczych grzybów przeżywających w glebie. Biul. Warzyw. XL VI, 31–40.
Prasad R. D., Rangeshwaran R., 2000. Effect of soil application of a granular formulation of Trichoderma harzianum on Rhizoctonia solani inicited seed rot and damping-off of Phickpea. J. Mycol. Plant Pathol. 30, 2, 216–220.
Sarmah D. K., 1999. Combined effect of Gliocladium virens and Bacillus subtilis on sheath blight of rice. J. Agric. Sci. Soc. North – East India, 12, 3, 271–273.
Seasan T. E., Baicu T., Gogoas C., 1998. Biological control of brown collor rot (Rhizoctonia solani Kühn) in annual pulses. Roman. Agric. Res. 9/10, 49–53.
Singh G., Mukhopadhyay A.N., 2000. Biocontrol potential of mutants of Gliocladium virens for wilt complex of lentil. Legume Res. 23, 2, 133–135.
Tu J. C., 1991. Comparison of the efficiacy of gliocladium virens and Bacillus subtilis in the control of seed rots and root rots of navy beans. Med. Fac. Landbouww. Rijksuniv. Gent, 56, 2a, 229–234.
Yan Sinhuang., Wu ShiPing., Lu DeQing., Liu ShiYi., 2000. Effects of triadimefon on competitive rhizosphere colonization of Trichoderma harzianum. Acta Phytopath. Sin. 30, 3, 266–270.

Downloads

Download data is not yet available.

Most read articles by the same author(s)

1 2 3 4 > >> 

Similar Articles

<< < 19 20 21 22 23 24 25 26 27 28 > >> 

You may also start an advanced similarity search for this article.