Comparison of β-Glucanases Production by Acremonium sp. IMI 383068 in Batch and Continuous Culture System
Abstract
Studies on the possible influence of physical environmental factors on extracellular -glucanase production
by Acremonium sp. IMI 383068 were undertaken, in particular to assess the role of varying agitation speed and
pO
2
levels, since these have been shown in other studiesto affect the yields of other fungal extracellular
enzymes. The use of chemostat cultures in this present study meant that the possible influence of these two
parameters on enzyme production could be controlled independently of each other and of growth rate. No
other similar data on possible factors affecting fungal (13)- and (16)--glucanases are available in the
literature, and therefore other fungal extracellular enzyme systems are used here as comparisons for this
discussion.
To investigate the possible relationship between enzyme production and culture morphology, the HGU
values or branching frequencies of the fungal hyphae were assessed. Since substantial conidial production
also occurred in these cultures of Acremonium sp. IMI 383068, it was not possible always to distinguish
between mycelial branches that were true vegetative hyphae and those eventually forming the short tapered
lateral conidiophores that characterize this strain. Hence HGU determinations include both of these two
branch types, except where it was obvious that the branch in question was a conidiophore, adjudged by the
presence of emerging conidia from it.
The major findings of this study will be discused here which were mainly engaged to the relationship
between production of (13)--glucanases and the growth of the fungus, where it was growth rate
dependent, while that of the (16)--glucanase was growth rate independent. The production of (13)-glucanases
was
shear
sensitive
and
also
depended
on
O
2
availability in the culture medium. Based on the data
from both batch and chemostat culture, it was found that there was no clear relationship between branching
frequency of the fungal mycelium and -glucanase production by the fungus.
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