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Fermentation study was performed by using Clostridium butyricum BCC B2571 or Eubacterium rectale DSM 17629, which has been identified as capable of degradation of starch residue and also regarded as beneficial bacteria.
This FadD-catalyzed reaction produces fatty acyl-CoA, a molecule capable of degradation by the β-oxidation cycle or exerting transcriptional control on the E. coli fad-regulon by interacting with the FadR regulator to derepress fad-genes [24] [27].
Such unclicking approaches could be used to prepare hydrogels capable of degradation under applied mechanical force.
This is surprising since MMP-11 is not capable of degradation of the major ECM constituents.
An obvious strategy to achieve this is to screen for enzymes capable of degradation of AHL signal molecules [ 15].
The other clones demonstrated similarity to organisms capable of degradation of various xenobiotic molecules including phenols, methyl parathion and fenthion, as well as those capable of selenium reduction.
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This framework captures the impact of battery degradation on fuel consumption and battery replacement over the vehicle life by integrating a battery model capable of predicting degradation, and degraded performance, into the drivecycle simulation.
One-step conversion of lignocellulose degradation to ethanol with an organism capable of lignocellulose degradation and efficient fermentation (consolidated bioprocessing-CBP) would greatly enhance the cost effectiveness of bioethanol production [ 12].
FReET-D software is capable of performing degradation modeling, in which a large number of reinforced concrete degradation models can be utilized under the main FReET software engine.
Prior to completion of the draft NaphS2 genome sequence, the presence of gene clusters similar to bss and bbs gene clusters (Figure 5) involved in toluene degradation, and isolated through shotgun sequencing, led us to speculate that NaphS2 might be capable of toluene degradation.
Although several members of the Rhodocyclales group of Betaproteobacteria are of interest to the scientific community due to their ability to anaerobically degrade derivatives of benzene, D. aromatica is the first pure culture capable of anaerobic degradation of the stable underivitized benzene molecule to be isolated.
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