By Vijai G. Gupta, Monika Schmoll, Alfredo Herrera-Estrella, R. S. Upadhyay, Irina Druzhinina, Maria Tuohy
Biotechnology and Biology of Trichoderma serves as a entire reference at the chemistry and biochemistry of 1 of an important microbial brokers, Trichoderma, and its use in an elevated variety of commercial bioprocesses for the synthesis of many biochemicals akin to prescription drugs and biofuels. This e-book offers participants operating within the box of Trichoderma, particularly biochemical engineers, biochemists and biotechnologists, very important info on how those priceless fungi can give a contribution to the construction of quite a lot of items of industrial and ecological interest.
- Provides a close and complete insurance of the chemistry, biochemistry and biotechnology of Trichoderma, fungi found in soil and plants
- Includes most vital present and strength functions of Trichoderma in bioengineering, bioprocess expertise together with bioenergy & biofuels, biopharmaceuticals, secondary metabolites and protein engineering
- Includes the latest learn developments made on Trichoderma functions in plant biotechnology and ecology and environment
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Additional resources for Biotechnology and Biology of Trichoderma
2008). A study on L. bicolor mycorrhiza formation in the rhizosphere of black spruce in presence of two Trichoderma species revealed strong antagonistic effect towards mycorrhizal colonization in both cases, when Trichoderma and L. bicolor were inoculated together and when establishment of the mycorrhizal fungus in the rhizosphere prior the inoculation of Trichoderma was allowed (Summerbell, 1987). Interestingly, one Trichoderma strain did not parasitize on L. bicolor in agar culture (Summerbell, 1987).
Pachypallidum in Austria, Czech Republic, Germany and Sweden. VERSATILE CARBON UTILIZATION PATTERNS REFLECT ECOLOGICAL SPECIALIZATION OF TRICHODERMA SPP. Conidial fungi are capable to metabolize a wide variety of nutrients, and their metabolic pathways and regulation are extensively studied in several model fungi. As an opportunistic fungus, species from the genus Tricho derma are able to degrade dead organic material more successfully than the competitors in their environment. Considering the broad range of habitats that Trichoderma spp.
2008). g. , 2008). , 2008). Also Trichoderma was found to be able to establish parasitic associations with the animal hosts. , 2001). , 2011). , 2011). Trichoderma spp. can cause invasive mycosis in immunocompromised mammals including humans. Such invasions are up to date known only from H. orien talis, T. longibrachiatum, and possibly T. cf. , 2009) though there are several species that can grow at 37 °C such as T. reesei or T. citrinoviride. It has been shown that the lung cell cultures infected with T.