The effect of lyophilization and storage time on the survival rate and hydrolytic activity of Trichoderma strains

Влияние лиофилизации и продолжительности хранения на выживаемость и гидролитическую активность штаммов Trichoderma
Monika Grzegorczyk, Anna Kancelista, Wojciech Łaba, Michał Piegza, Danuta Witkowska
2018-01-05

Trichoderma strainscellulolytic and xylanolytic activitiesextracellular hydrolaseslyophilizationstorage stability
The study evaluates the survivability and storage stability of seven Trichoderma strains belonging to the species: T. harzianum (1), T. atroviride (4), and T. virens (2) after the lyophilization of their solid state cultures on wheat straw. Biomass of Trichoderma strains was freeze-dried with and without the addition of maltodextrin. Furthermore, in order to determine the ability of tested Trichoderma strains to preserve selected technological features, the biosynthesis of extracellular hydrolases (cellulases, xylanases, and polygalacturonases) after a 3-month storage of lyophilizates was investigated. Strains of T. atroviride (except TRS40) and T. harzianum TRS85 showed the highest viability after lyophilization process (up to 100%). After 3 months of storage, T. atroviride TRS14 exhibited the highest stability (95.23%); however, the number of active conidia remained at high level of 10 6 –10 7 cfu/g for all tested T. atroviride strains and T. harzianum TRS85. Interestingly, after a 3-month storage of lyophilized formulations, most of the tested Trichoderma strains exhibited higher cellulolytic and xylanolytic activities compared to the control, i.e., before freeze-drying process. The highest activities of these enzymes exhibited the following: T. atroviride TRS14–2.37 U/g and T. atroviride TRS25–21.47 U/g, respectively, whereas pectinolytic activity was weak for all tested strains, with the highest value of 0.64 U/g registered for T. virens TRS109.
1
After storage, most strains exhibited higher cellulolytic and xylanolytic activities than before freeze-drying; maxima were 2.37 U/g for cellulase and 21.47 U/g for xylanase.
2
After three months, T. atroviride TRS14 showed the highest stability at 95.23%, while all T. atroviride strains and T. harzianum TRS85 maintained 10^6–10^7 cfu/g.
3
Most T. atroviride strains, except TRS40, and T. harzianum TRS85 achieved up to 100% viability immediately after lyophilization.
4
Pectinolytic activity remained weak across strains, reaching a maximum of 0.64 U/g in T. virens TRS109.
5
The study evaluated lyophilization and three-month storage effects on survival and extracellular hydrolase activity across seven Trichoderma strains.

Lyophilized solid-state cultures of seven Trichoderma strains on wheat straw, with or without maltodextrin, during three months of storage

Survival, storage stability, and preservation of extracellular hydrolytic activities (cellulase, xylanase, and polygalacturonase) after lyophilization and storage

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2018-01-05
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Monika Grzegorczyk
Anna Kancelista
Wojciech Łaba
Michał Piegza
Danuta Witkowska
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