Jul 2026· International Journal of Environmental and Biological Sciences· 0 citations
TL;DR
The presence of abnormally shaped colonies through a multi-faceted approach that included pathogenesis tests and ITS-rDNA sequencing to provide accurate identification of gray mold in strawberries (Botrytis cinerea) supports the feasibility of integrated management approaches that combine biological, phytochemical, and conventional fungicides for controlling gray mold in strawberries.
Abstract
Background: Botrytis cinerea gray mold is one of the most significant diseases that limits strawberry productivity under field and postharvest conditions. It is essential to accurately identify the pathogen and examine potential control options to develop effective disease-management strategies. Objective: This study aimed to isolate and identify Botrytis cinerea associated with gray mold of strawberry, validate representative isolates through ITS-rDNA sequencing, determine their pathogenicity, and perform an in vitro assessment of the efficacy of selected fungicides, antagonistic microorganisms (AMO) and botanical extracts. Methodology: From Dec. 2024 to Mar. 2025, symptomatic strawberry samples were collected from various growing areas of northern Iraq. Isolation of the fungal isolates was performed on potato dextrose agar and subsequently purified with the hyphal-tip technique. Identification was performed first through colony and microscopic characteristics, then confirmed with pathogenicity tests and amplifying the internal transcribed spacer region of ribosomal DNA (ITS-rDNA) using primers ITS1 and ITS4. PCR products were sequenced, compared with reference sequences in the NCBI database using BLAST and analyzed phylogenetically using MEGA. In vitro evaluations were conducted to assess the inhibitory effects of selected fungicides, microbial antagonists, and plant extracts. Data were analyzed by analysis of variance and means compared using Tukey's test at p < 0.05 when appropriate. Results: B. cinerea was confirmed in infected strawberry tissues by morphology determination and pathogenicity test. ITS-rDNA sequencing of representative isolates revealed significant homology with reference B. cinerea sequences found in GenBank, and phylogenetic analysis confirmed that the tested isolates fell within the B. cinerea group. Isolates evaluated differed in virulence. In vitro, all tested fungicides decreased fungal growth, compared to the control with dicarboximide having the lowest EC50 followed by benzimidazole and then other fungicides. Biological Control Trichoderma spp. showed the highest antagonistic activity. The botanical extracts tested also inhibited the growth of fungi, and all separated these 12 strains into three antifungal bands; Allium sativum had the maximum antifungal effect, followed by Mentha spicata and Tagetes patula, Asystasia gangetica & Syzygium cumini & Rosmarinus officinalis & Achillea millefolium. Conclusion: Based on the results obtained, the current study concluded the presence of abnormally shaped colonies through a multi-faceted approach that included pathogenesis tests and ITS-rDNA sequencing to provide accurate identification of gray mold in strawberries (Botrytis cinerea). The study demonstrated significant variability among the isolates, highlighting the importance of accurate pathogen identification before implementing control measures. The results indicate that dicarboxymides, Trichoderma species, and garlic extract (Allium sativum) were the most effective chemical, biological, and phytochemical treatments, respectively. These findings support the feasibility of integrated management approaches that combine biological, phytochemical, and conventional fungicides for controlling gray mold in strawberries.
Background: Bacterial leaf blight (BLB) is a major bacterial disease of rice, causing serious yield losses in endemic regions. Continuous surveillance and characterization of pathogen variability are essential for effective disease management. Methods: A roving survey was conducted during 2025 in major rice-growing areas of the Chengalpattu district, Tamil Nadu. Diseased samples were collected from different rice varieties and subjected to isolation using the maceration technique. The per cent disease index (PDI) was calculated and documented. Morphological, cultural, pathogenicity analysis and molecular characterization (16S rRNA sequencing) were performed to confirm the pathogen. Virulence variability among ten isolates was assessed using clip inoculation on rice variety CO51. Result: The disease severity ranged from 40 to 85%, with CO51 recording the highest susceptibility (85%) among the reported varieties. All the study isolates exhibited circular, smooth, yellow, mucoid colonies on Nutrient Agar and were Gram-negative rods. Pathogenicity tests reproduced typical BLB symptoms and fulfilled Koch’s postulates. Molecular analysis confirmed 100% similarity with Xanthomonas oryzae pv. oryzae in the database. Significant variation in virulence was observed, with isolate 1(YNX001) recording the highest PDI. The study confirmed the prevalence of virulent BLB strains in Chengalpattu district and highlights the need for integrated disease management strategies.
Yuvaraj Nandhikeswaran, Akshaya Subbaih Balamurali, Rageshwari Selvaraj et al.· Indian Journal of Agricultur...· 0 citations
Findings establish F. solani as a causal agent of durian stem rot in Hainan and highlight the potential of Bacillus-based biological control as a sustainable strategy for disease management in durian production systems.
Given their ability to attack and eliminate insects that impact various ecosystems, entomopathogenic nematodes (EPNs) are considered effective biological pest control agents. However, there are few studies focused on their identification or their association with forest species such as the carob tree. The objective of the present study was to isolate and molecularly identify entomopathogenic nematodes from carob tree (Neltuma spp.) forests in Tumbes, Peru. One-kilogram soil samples were collected from ten localities located across four districts in the Tumbes region. In each soil sample, Galleria mellonella Linnaeus 1758 (Lepidoptera: Pyralidae) larvae were exposed as bait for the detection and isolation of EPNs. Exposure times were controlled at 12, 24, 48, 72, and 84-96 hours. The isolated nematodes were morphologically characterized, and their genomic DNA was extracted. The 18S ribosomal DNA (rDNA) gene was amplified via polymerase chain reaction (PCR). Six of the ten evaluated soils showed G. mellonella infection, with a positive correlation between exposure time and infection rate. However, due to marked infectivity divergences (where samples 02 and 06 exhibited the highest percentages), three representative strains were selectively isolated from soil samples 02, 05, and 06. Subsequent morphological characterization and molecular identification determined their taxonomic identity as Heterorhabditis bacteriophora and Heterorhabditis indica. This finding represents the first report of EPNs associated with carob tree plantations in northern Peru and highlights their pathogenic potential against insect larvae. It is recommended that the nematodes identified at the species level be considered in integrated pest management (IPM) programs.
Joel Michel Riojas-Gonzales, P. Castillo-Carrillo, Rosa Emelda Cornejo-Hidalgo et al.· Agrociencia Uruguay· 0 citations
The results demonstrate that indigenous PGPR associated with the groundnut rhizosphere possess promising antagonistic activity against N. personata and represent potential candidates for the development of environmentally sustainable management strategies for late leaf spot disease.
L. Giri, M. Prameela, H. Sudini et al.· Journal of Advances in Biolo...· 0 citations
This work examines the isolation, identification and characterization of Trichoderma species from yam tubers sourced from South-South region of Nigeria, evaluating their potential as biocontrol agent against prevalent fungal that cause yam rot. Fungal isolates were obtained by inoculation of yam peels/tissues on Potato Dextrose Agar (PDA), followed by morphological analysis. Microscopic inspection revealed septate hyphae, with distinctive conidia arrangement indicating the genera Penicillium, Aspergillus, and Trichoderma. The antagonistic capabilities of Trichoderma were investigated using dual-culture tests, which demonstrated that Trichoderma exhibited considerable growth suppression of the pathogens, especially Aspergillus flavus and Penicillium sp., with inhibition percentages of 77% and 70%, respectively, DNA sequencing of the ITS region further validated the identity of the isolates as Trichoderma harzianum was a 100% match to sequences in the NCBI database accession number PQ637288.1. The result imply that Trichoderma harzianum holds substantial promise as a biological control agent for treating fungal diseases in yam crops. Based on these findings, it is advised that T. harzianum be examined for use in pre-harvest and post-harvest treatments, such as soil inoculation and seed treatment, reduce fungal contamination and improve yam output. Further studies should investigate the specific mechanisms behind the antagonistic effects of T. harzianum and its potential for large scale agricultural applications.
O. Akomah-Abadaike, George Idoreyin Ime, Happiness Eke· FUDMA Journal of Sciences· 0 citations
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