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Muhammad Hamza Shahid

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Review Open access Aug 2026

Biological Control of Potato Fusarium Dry Rot Using Trichoderma asperellum and Bacillus subtilis: Mechanisms, Applications and Future Perspectives

In the context of food security, the potato (Solanum tuberosum L.,) is one of the most important staple crops for human consumption, being the third most important one after food grains and oilseeds. Although potato is an agronomic and nutritional important crop, potato production and post-harvest preservation are significantly challenged by biotic factors and among them, Fusarium dry rot is considered as a highly destructive post-harvest disease. Dry rot is caused by a complex of Fusarium soil and tuber borne fungi which cause significant economic losses during storage, transit and seed multiplication, sometimes reducing up to 60% of the total harvest in long-term storage. Synthetic chemical fungicides have been traditionally used by management. This high-intensity chemical approach is now being called into doubt however, because of the ability of pathogen strains to rapidly become fungicide resistant, environmental toxicity, chemical residue in food and the global regulatory ban on the use of conventional synthetic fungicides. Biological control with microbial antagonists is an environmentally safe, very successful approach to synthetic chemistry. Of the various types of biological control agents (BCAs), the filamentous fungus, Trichoderma asperellum and the endospore-forming bacterium, Bacillus subtilis have proven to be particularly promising. They have a variety of multi-targeted mechanisms of action such as direct mycoparasitism, competition for nutrients and space, inhibition by a wide range of volatile organic compounds and non-ribosomal antimicrobial metabolites produced. Importantly, these BCAs also trigger systemic resistance (ISR) responses in the potato host, which activate the plant's innate defence mechanisms to resist the next attack. This review gives an overview of the biological control of potato dry rot caused by Fusarium species, including the taxonomy and epidemiology of the pathogens; details the molecular and biochemical mechanism of action of T. asperellum and B. subtilis; and investigates the synergistic effects of their co-cultivation and consortium formulations. Lastly, we discuss physiological, formulation and environmental factors that affect the efficiency of biocontrol; we list the existing challenges for commercialization and registration of biopesticides and forecast a future scenario where synthetic biotechnology, nanotechnology, CRISPR-based strain engineering and AI-based screening platforms will form the cornerstone of robust, climate-friendly biopesticide systems.

Maryam Saleem, Abdul Latif, Muhammad Hamza Shahid et al. · 0 citations
Review Open access Jul 2026

Survey of Potato Virus Y Incidence in Punjab, Pakistan and Management of Aphid Vectors for Disease Control

Potato virus Y (PVY) is one of the most economically important viral pathogens affecting potato (Solanum tuberosum L.) production worldwide, causing significant yield and quality losses. The present study was conducted to determine the incidence of PVY in major potato-growing districts of Punjab, Pakistan, and to evaluate the efficacy of selected insecticides for the management of its principal aphid vector, Myzus persicae. During the 2023 growing season, extensive field surveys were conducted in major potato-producing districts of Punjab, where 182 fields were inspected and 1,431 leaf samples were collected and tested for PVY infection using the Double Antibody Sandwich Enzyme-Linked Immunosorbent Assay (DAS-ELISA). The survey revealed considerable variation in disease incidence among districts, with the highest PVY incidence recorded in Toba Tek Singh (52.77%), followed by Jhang (28.20%), Sialkot (27.83%), Chiniot (18.72%), Gujranwala (14.37%), Okara (12.72%), and Sahiwal (6.81%). In the subsequent 2024 season, a field experiment was conducted under a Randomized Complete Block Design (RCBD) with three replications to evaluate ten insecticidal treatments against M. persicae. Significant differences among treatments were observed in aphid suppression and disease reduction. Afidopyropen 50 DC provided the highest aphid mortality (>85%), followed by Flonicamid 50 WG (>82.5%), Sulfoxaflor 50 WG (>81.0%), and Spirotetramat 150 OD (>80.5%), whereas Thiamethoxam exhibited the lowest efficacy (>62.5%). Highly effective treatments also resulted in reduced Percent Disease Index (PDI) and lower PVY incidence, indicating that rapid disruption of aphid feeding effectively limits non-persistent virus transmission. Analysis of variance confirmed significant treatment effects (P ≤ 0.05) for aphid population, disease incidence, and PDI. The findings demonstrate that integrating selective insecticides with regular vector monitoring and the use of certified virus-free seed can substantially reduce PVY spread and improve sustainable potato production under the agro-climatic conditions of Punjab, Pakistan.

M. Z. Niaz, Azher Mustafa, Saba Saeed et al. · 0 citations

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