Use of botanical extracts and bacterial inoculants for the suppression of Alternaria solani causing Early Blight disease in Tomato

Author:

Hyder Sajjad1,Gondal Amjad Shahzad2,Khan Aimen Razzaq1,Riaz Nadia3,Rizvi Zarrin Fatima1,Iqbal Rashid4,Elshikh Mohamed Soliman5,Malik Tabarak6,Ali Iftikhar7

Affiliation:

1. Government College Women University Sialkot

2. Bahauddin Zakariya University

3. Lahore College for Women University

4. The Islamia University of Bahawalpur Pakistan

5. King Saud University

6. Jimma University

7. Columbia University Irving Medical Center

Abstract

Abstract Early blight-EB, caused by Alternaria solani, is a serious problem in tomato production. Plant growth-promoting rhizobacteria promote plant growth and inhibit plant disease. The present study explored the bio-efficacy of antagonistic rhizobacterial isolates and ginger powder extract against tomato EB disease, singly and in combination. Six fungal isolates from symptomatic tomato plants were identified as A. solani on the basis of morphological features i.e., horizontal septation (6.96 to 7.93 µm), vertical septation (1.50 to 2.22 µm), conidia length (174.2 to 187.6 µm), conidial width (14.09 to 16.52 µm), beak length (93.06 to 102.26 µm), and sporulation. Five of the twenty-three bacterial isolates recovered from tomato rhizosphere soil were nonpathogenic to tomato seedlings and were compatible with each other and with ginger powder extracts. Out of five isolates tested individually, three isolates (St-149D, Hyd-13Z, and Gb-T23) showed maximum inhibition (56.3%, 48.3%, and 42.0% respectively) against mycelial growth inhibition of A. solani. Among combinations, St-149D + ginger powder extract (GPE) had the highest mycelial growth inhibition (76.9%) over the untreated control. Bacterial strains molecularly characterized as Pseudomonas putida, Bacillus subtilis, and Bacillus cereus and were further tested in pot trials through seed bacterization for disease control. Seeds treated with bacterial consortia + ginger plant extract-GPE had the highest disease suppression percentage (78.1%), followed by St-149D + GPE (72.2%) and Hyd-13Z + GPE (67.5%). Maximum seed germination was obtained in the bacterial consortia + GPE (95.0 ± 2.04) followed by St-149D + GPE (92.5 ± 1.44) and Hyd-13Z + GPE (90.0 ± 2.04) over control (73.8 ± 2.39) and chemical control as standard treatment (90.0 ± 2). Ginger powder extracts also induce the activation of defence-related enzymes (TPC, PO, PPO, PAL, and CAT) activity in tomato plants. These were highly significant in the testing bacterial inoculants against A. solani infection in tomato crops.

Publisher

Research Square Platform LLC

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