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A Comparative Analysis of Efficacy of Metarhizium Species for Controlling Brown Planthopper (Nilaparvata lugens) from Different Provinces in Thailand using Survival and Susceptible Infected Models
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Document Title
A Comparative Analysis of Efficacy of Metarhizium Species for Controlling Brown Planthopper (Nilaparvata lugens) from Different Provinces in Thailand using Survival and Susceptible Infected Models
Name from Authors Collection
Scopus Author ID
37039385300
Affiliations
Department of Mathematics, Faculty of Applied Science, King Mongkut's University of Technology North Bangkok, Bangkok, 10800, Thailand; Faculty of Agriculture at Kamphaeng Saen, Kasetsart University Kamphaeng Saen Campus, Nakhon Pathom, 73140, Thailand; National Center for Genetic Engineering and Biotechnology (BIOTEC), National Science and Technology Development Agency (NSTDA), Pathum Thani, Khlong Nueng, 12120, Thailand; Centre of Excellence in Mathematics, CHE, Si Ayutthaya Road, Bangkok, 10400, Thailand
Source Title
WSEAS Transactions on Biology and Biomedicine
ISSN
11099518
Year
2025
Volume
22
Page
305-324
Open Access
All Open Access; Gold Open Access
Publisher
World Scientific and Engineering Academy and Society
DOI
10.37394/23208.2025.22.29
Abstract
In this paper, we demonstrate the effectiveness of an entomopathogenic fungus, namely, Metarhizium to reduce environmental problems arising from the use of insecticides. Metarhizium species used in the article include M. anisopliae sensu stricto, M. anisopliae sensu lato, and M. pingshaense. The efficacy of them in controlling the spread of the brown planthopper (BPH) collected from three different regions of Thailand, including Phetchabun Province, Buri Ram Province and Phatthalung Province, was analyzed. Using actual data representing the daily mortality of BPH, we estimated the corrected mortality. In addition, we studied four candidate BPH survival functions, namely the Gompertz model, the Weibull model, the sigmoid model, and the log-logistic model, in order to achieve the best model fitting to the experimental data. As a result, most of the data was best fitted by the log-logistic model. We also used the susceptible infected model to determine the transmission rate from susceptible BPH to infected BPH. Finally, the lethal time formulas and the estimated values of time required for 50% and 90% mortality were obtained using the log-logistic survival and SI models. From the results, the obtained lethal times for both models have the same trends. It is worth noticing that the M. anisopliae sensu lato fungus gave the most effective results in destroying BPH based on the percentages of corrected mortality, lethal time values and transmission rate. © 2025, World Scientific and Engineering Academy and Society. All rights reserved.
Keyword
Biological control | Brown planthopper | Entomopathogenic fungus | Metarhizium | Survival function | Transmission rate
Industrial Classification
Knowledge Taxonomy Level 1
Knowledge Taxonomy Level 2
Knowledge Taxonomy Level 3
License
CC BY
Rights
Authors
Publication Source
Scopus
Publication Source
Scopus