Abstract

This study looked at the effects of biological control strategies for root and stem rot disease caused by Rhizoctonia solani using soil organisms as biocontrol agents. The results of the field survey showed the spread of root and stem rot disease on broad bean plants in some areas of Najaf Governorate, where the infection rate ranged from 32- to 89.5%. The Isolation process showed that five fungal isolates of Rhizoctonia solani were associated with the disease, which differed in some phenotypic characteristics in terms of growth speed and color difference. The results of the molecular diagnosis using the ITS marker sequencing for the three most pathogenic isolates showed that they were belonging to Rhizoctonia solani, thus were named Ahmed 1, 3, 4 and registered in the GenBank under accession numbers; ON 394595.1, ON 394597.1, and ON 394599.1, respectively. In the pathogenicity test, R. solani isolates displayed a difference in their virulence on broad bean plants, where R. solani 1 (Al-Mashkhab isolate) was the most virulent among the isolates and was selected for subsequent studies. Isolate T. longibrachiatum (T3) showed high antagonistic efficiency against isolate of the pathogenic fungus R. solani on P.D.A culture media, gave the highest inhibitory percentage 75.06% compared to isolates T1 and T2 of Trichoderma harzianum, which led to inhibition of the pathogen to 68.71% and 68.94%, respectively. In the culture filtrate test of isolates of the living fungi, isolate T3 had the highest inhibition in the growth of pathogenic R. solani, which was 5.20 cm compared to the two live fungi T1 and T2, which led to 6.20 and 5.95 cm, respectively. As for the pots experiment, the results revealed that the isolate of T. longibrachiatum (T3) protected the broad beans plants from root and stem rot pathogen, where the disease was not seen compared to the treatment of the pathogenic fungus R. solani, only in which the infection severity was 80%.

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