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Titlebook: Key Element: C / Schlüsselelement: C; K.-H. Hellwege,A. M. Hellwege Book 1979Latest edition Springer-Verlag Berlin Heidelberg 1979 Kohlens

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楼主: 哄笑
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oses. Here we propose a synopsis of the recent literature on the interactions between mycorrhizal fungi and their hosts, with particular focus on the intimate contact that develops between plant cells and fungal hyphae, in terms of molecular signaling, nutrient exchange and cell organization.
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d intracellular hyphae. The mantle is often poorly developed or absent and extraradical mycelium appears to be limited. Ectendomycorrhizas are widespread globally and are particularly abundant in conifer nurseries and plantations as well as in disturbed sites. Pine ectendomycorrhizas are frequent in
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, algae, microorganisms, or from animal or human origin in inhibition and/or dispersion of fungal biofilms (especially . and . biofilms) is discussed. Some essential oils, phenolic compounds, saponins, peptides and proteins and alkaloids could be of particular interest in fighting fungal biofilms.
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is categorization may reflect their differential response to the conventional antifungal therapy. By means of drug susceptibility testing performed on fungal biofilm-growing isolates, it is now possible to evaluate not only the activity of conventional antifungal agents, but also of novel anti-biofi
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l materials and their composites secure an important position in the race of utilization of renewable resources for material synthesis. This chapter summarizes the utilization of mycelium-based materials for numerous applications like cosmetics, medicine, textile, construction, packaging, and the fo
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l materials and their composites secure an important position in the race of utilization of renewable resources for material synthesis. This chapter summarizes the utilization of mycelium-based materials for numerous applications like cosmetics, medicine, textile, construction, packaging, and the fo
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the AEC industry, MBC are currently used as insulation panels, load-bearing masonry components, and cores for sandwich structures. In this chapter, we review the methods used to enhance the material properties of MBC. Since material properties of MBC depend on various cultivation and post-processing
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diesel which are strain and growth substrate specific. Approaches to improve the process efficiency like optimization of fermentation conditions, one-step transesterification and metabolic engineering as well as the physico-chemical properties of biodiesel are also discussed.
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