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Preparation of Trichoderma asperellum Microcapsules and Biocontrol of Cucumber Powdery Mildew

Microencapsulation is an important technique for protecting the viability and activity of microorganisms under adverse environmental conditions. To improve biological control, controlled-release microcapsules of Trichoderma asperellum were prepared and embedded in combinations of the biodegradable w...

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Detalles Bibliográficos
Autores principales: Qi, Qi, Fan, Chengcheng, Wu, Hongqu, Sun, Lili, Cao, Chuanwang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10269890/
https://www.ncbi.nlm.nih.gov/pubmed/37102872
http://dx.doi.org/10.1128/spectrum.05084-22
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author Qi, Qi
Fan, Chengcheng
Wu, Hongqu
Sun, Lili
Cao, Chuanwang
author_facet Qi, Qi
Fan, Chengcheng
Wu, Hongqu
Sun, Lili
Cao, Chuanwang
author_sort Qi, Qi
collection PubMed
description Microencapsulation is an important technique for protecting the viability and activity of microorganisms under adverse environmental conditions. To improve biological control, controlled-release microcapsules of Trichoderma asperellum were prepared and embedded in combinations of the biodegradable wall materials sodium alginate (SA). The microcapsules were evaluated for their ability to control cucumber powdery mildew in the greenhouse. The results showed that the highest encapsulation efficiency of 95% was obtained by applying 1% SA and 4% calcium chloride. The microcapsules provided good, controlled release and UV resistance, and could be stored for a long time. The greenhouse experiment revealed that the T. asperellum microcapsules had a maximal biocontrol efficiency of 76% against cucumber powdery mildew. In summary, embedding T. asperellum in microcapsules is a promising technique to improve the survivability of T. asperellum conidia. The T. asperellum microcapsules exerted significant biocontrol efficiency against cucumber powdery mildew. IMPORTANCE Trichoderma asperellum is widely found in plant roots and soil and has been used for the biocontrol of various plant pathogens; however, the control efficiency of T. asperellum is usually unstable in field trials. To improve the control efficiency of T. asperellum, in the present study, T. asperellum microcapsules were prepared using sodium alginate as wall material to reduce the effects of temperature, UV irradiation, and other environmental factors on its activity, and to significantly improve its biocontrol efficiency on cucumber powdery mildew. Microcapsules can prolong the shelf life of microbial pesticides. This study provides a new way to prepare a biocontrol agent against cucumber powdery mildew with high efficiency.
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spelling pubmed-102698902023-06-16 Preparation of Trichoderma asperellum Microcapsules and Biocontrol of Cucumber Powdery Mildew Qi, Qi Fan, Chengcheng Wu, Hongqu Sun, Lili Cao, Chuanwang Microbiol Spectr Research Article Microencapsulation is an important technique for protecting the viability and activity of microorganisms under adverse environmental conditions. To improve biological control, controlled-release microcapsules of Trichoderma asperellum were prepared and embedded in combinations of the biodegradable wall materials sodium alginate (SA). The microcapsules were evaluated for their ability to control cucumber powdery mildew in the greenhouse. The results showed that the highest encapsulation efficiency of 95% was obtained by applying 1% SA and 4% calcium chloride. The microcapsules provided good, controlled release and UV resistance, and could be stored for a long time. The greenhouse experiment revealed that the T. asperellum microcapsules had a maximal biocontrol efficiency of 76% against cucumber powdery mildew. In summary, embedding T. asperellum in microcapsules is a promising technique to improve the survivability of T. asperellum conidia. The T. asperellum microcapsules exerted significant biocontrol efficiency against cucumber powdery mildew. IMPORTANCE Trichoderma asperellum is widely found in plant roots and soil and has been used for the biocontrol of various plant pathogens; however, the control efficiency of T. asperellum is usually unstable in field trials. To improve the control efficiency of T. asperellum, in the present study, T. asperellum microcapsules were prepared using sodium alginate as wall material to reduce the effects of temperature, UV irradiation, and other environmental factors on its activity, and to significantly improve its biocontrol efficiency on cucumber powdery mildew. Microcapsules can prolong the shelf life of microbial pesticides. This study provides a new way to prepare a biocontrol agent against cucumber powdery mildew with high efficiency. American Society for Microbiology 2023-04-27 /pmc/articles/PMC10269890/ /pubmed/37102872 http://dx.doi.org/10.1128/spectrum.05084-22 Text en Copyright © 2023 Qi et al. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Qi, Qi
Fan, Chengcheng
Wu, Hongqu
Sun, Lili
Cao, Chuanwang
Preparation of Trichoderma asperellum Microcapsules and Biocontrol of Cucumber Powdery Mildew
title Preparation of Trichoderma asperellum Microcapsules and Biocontrol of Cucumber Powdery Mildew
title_full Preparation of Trichoderma asperellum Microcapsules and Biocontrol of Cucumber Powdery Mildew
title_fullStr Preparation of Trichoderma asperellum Microcapsules and Biocontrol of Cucumber Powdery Mildew
title_full_unstemmed Preparation of Trichoderma asperellum Microcapsules and Biocontrol of Cucumber Powdery Mildew
title_short Preparation of Trichoderma asperellum Microcapsules and Biocontrol of Cucumber Powdery Mildew
title_sort preparation of trichoderma asperellum microcapsules and biocontrol of cucumber powdery mildew
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10269890/
https://www.ncbi.nlm.nih.gov/pubmed/37102872
http://dx.doi.org/10.1128/spectrum.05084-22
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