Role of pH and temperature in modulating the growth of Trichoderma asperellum

The genus Trichoderma is asexually and sexually reproducing filamentous fungi that are widely distributed. These Trichoderma species are used extensively in agriculture as biocontrol agents to manage plant diseases. In view of this present study was conducted at College of Agriculture, Central Agricultural University, Imphal during the 2021–22 cropping season. In this study, various levels of pH and temperature were evaluated to investigate variations in mycelial growth among the isolates. The pH and temperature are significant factors influencing fungal growth. The study investigated how pH and temperature interact to influence the radial growth, fresh weight and dry weight of Trichoderma asperellum under in vitro conditions. The radial growth of the isolates improved as the temperature rise from 30–34 °C, within a pH range of 4–8. The highest fresh and dry weights of the mycelium were recorded at pH 4 when the temperature was either 26 °C or 30 °C. Radial growth, fresh weight and dry weight of the isolates peaked at 30 °C. Maximum fresh and dry mycelial weights occurred within the pH range of 4–6. This study demonstrated that the interaction between pH and temperature has a significant impact on the growth of T. asperellum isolates. The optimum pH (4–6) and temperature (30 °C) identified in this study can be used to optimise the mass multiplication and commercial production of T. asperellum. These findings will aid in developing efficient bioformulations with improved quality, consistency and biocontrol efficacy.

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Publication Details

Journal
Plant Science Today
Published
2026-09-14
DOI
https://doi.org/10.14719/pst.15500
Primary Topic
Plant-Microbe Interactions and Immunity
Type
article
Field-Weighted Citation Impact
0.00

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article

Role of pH and temperature in modulating the growth of Trichoderma asperellum

Kota Chakrapani, Sujit Kumar Sethy, B. R. R. P. Sinha, Gousia Gani et al.
Plant Science Today
Plant-Microbe Interactions and Immunity
article

Role of pH and temperature in modulating the growth of Trichoderma asperellum

Kota Chakrapani, Sujit Kumar Sethy, B. R. R. P. Sinha, Gousia Gani, Falak Hanif, Kumar Piyush, R Jan, I Gull, F A Khan, M M R Ajam, N Meinam, L N Singh, S Devi, S M Ibrar, T Bijeeta, A K Anjana, J S Kshetrimayum, I Iram
article en

Abstract

The genus Trichoderma is asexually and sexually reproducing filamentous fungi that are widely distributed. These Trichoderma species are used extensively in agriculture as biocontrol agents to manage plant diseases. In view of this present study was conducted at College of Agriculture, Central Agricultural University, Imphal during the 2021–22 cropping season. In this study, various levels of pH and temperature were evaluated to investigate variations in mycelial growth among the isolates. The pH and temperature are significant factors influencing fungal growth. The study investigated how pH and temperature interact to influence the radial growth, fresh weight and dry weight of Trichoderma asperellum under in vitro conditions. The radial growth of the isolates improved as the temperature rise from 30–34 °C, within a pH range of 4–8. The highest fresh and dry weights of the mycelium were recorded at pH 4 when the temperature was either 26 °C or 30 °C. Radial growth, fresh weight and dry weight of the isolates peaked at 30 °C. Maximum fresh and dry mycelial weights occurred within the pH range of 4–6. This study demonstrated that the interaction between pH and temperature has a significant impact on the growth of T. asperellum isolates. The optimum pH (4–6) and temperature (30 °C) identified in this study can be used to optimise the mass multiplication and commercial production of T. asperellum. These findings will aid in developing efficient bioformulations with improved quality, consistency and biocontrol efficacy.

Plant Science TodayVol. 13(sp5)
Sher-e-Kashmir University of Agricultural Sciences and Technology of Kashmir (IN), Central Agricultural University (IN)
Central Agricultural University, Imphal
Openalex Percentile: Top 13%
Plant-Microbe Interactions and Immunity
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