Literature DB >> 27198727

Improved shelf life of dried Beauveria bassiana blastospores using convective drying and active packaging processes.

Gabriel Moura Mascarin1,2,3, Mark A Jackson4, Robert W Behle5, Nilce N Kobori5, Ítalo Delalibera Júnior6.   

Abstract

The yeast form (blastospore) of the dimorphic insect-pathogenic fungus Beauveria bassiana can be rapidly produced using liquid fermentation methods but is generally unable to survive rapid dehydration processes or storage under non-refrigerated conditions. In this study, we evaluated the influence of two convective drying methods, various modified atmosphere packaging systems, and storage temperatures on the desiccation tolerance, storage stability, and virulence of blastospores of B. bassiana ESALQ 1432. All blastospore formulations were dried to <5 % water content equivalent to aw < 0.3. The viability of B. bassiana blastospores after air drying and spray drying was greater than 80 %. Vacuum-packaged blastospores remained viable longer when stored at 4 °C compared with 28 °C with virtually no loss in viability over 9 months regardless the drying method. When both oxygen and moisture scavengers were added to sealed packages of dried blastospore formulations stored at 28 °C, viability was significantly prolonged for both air- and spray-dried blastospores. The addition of ascorbic acid during spray drying did not improve desiccation tolerance but enhanced cell stability (∼twofold higher half-life) when stored at 28 °C. After storage for 4 months at 28 °C, air-dried blastospores produced a lower LC80 and resulted in higher mortality to whitefly nymphs (Bemisia tabaci) when compared with spray-dried blastospores. These studies identified key storage conditions (low aw and oxygen availability) that improved blastospore storage stability at 28 °C and will facilitate the commercial development of blastospores-based bioinsecticides.

Entities:  

Keywords:  Air drying; Desiccants; Liquid fermentation; Mycoinsecticides; Oxygen scavengers; Spray drying; Storage stability

Mesh:

Substances:

Year:  2016        PMID: 27198727     DOI: 10.1007/s00253-016-7597-2

Source DB:  PubMed          Journal:  Appl Microbiol Biotechnol        ISSN: 0175-7598            Impact factor:   4.813


  5 in total

Review 1.  The production and uses of Beauveria bassiana as a microbial insecticide.

Authors:  Gabriel Moura Mascarin; Stefan T Jaronski
Journal:  World J Microbiol Biotechnol       Date:  2016-09-15       Impact factor: 3.312

2.  Transcriptional Responses of Beauveria bassiana Blastospores Cultured Under Varying Glucose Concentrations.

Authors:  Gabriel Moura Mascarin; Natasha Sant'Anna Iwanicki; Jose Luis Ramirez; Ítalo Delalibera; Christopher A Dunlap
Journal:  Front Cell Infect Microbiol       Date:  2021-03-24       Impact factor: 5.293

3.  Effect of storage conditions on the shelf-life extension of fungus-colonized substrates based on Metarhizium anisopliae using modified atmosphere packaging.

Authors:  Seul-Gi Jeong; Ho Myeong Kim; Junheon Kim; Jae Su Kim; Hae Woong Park
Journal:  Sci Rep       Date:  2022-01-10       Impact factor: 4.379

4.  Metarhizium anisopliae blastospores are highly virulent to adult Aedes aegypti, an important arbovirus vector.

Authors:  Adriano Rodrigues de Paula; Leila Eid Imad Silva; Anderson Ribeiro; Gerson Adriano da Silva; Carlos Peres Silva; Tariq M Butt; Richard Ian Samuels
Journal:  Parasit Vectors       Date:  2021-10-28       Impact factor: 3.876

5.  The Fungus Metarhizium sp. BCC 4849 Is an Effective and Safe Mycoinsecticide for the Management of Spider Mites and Other Insect Pests.

Authors:  Rudsamee Wasuwan; Natnapha Phosrithong; Boonhiang Promdonkoy; Duangjai Sangsrakru; Chutima Sonthirod; Sithichoke Tangphatsornruang; Somsak Likhitrattanapisal; Supawadee Ingsriswang; Chettida Srisuksam; Kewarin Klamchao; Malinee Suksangpanomrung; Thipmanee Hleepongpanich; Sareeya Reungpatthanaphong; Morakot Tanticharoen; Alongkorn Amnuaykanjanasin
Journal:  Insects       Date:  2021-12-30       Impact factor: 2.769

  5 in total

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