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Furthermore, recent studies have focused on the search for factors that could explain the relative refractoriness of lepidopterans to systemic RNAi, while silkworm cell lines have been engineered for efficient extracellular dsRNA uptake, with biotechnological applications.
Since the carotenoid pathway of this Gram-positive bacterium has previously been engineered for efficient production of several C50 and C40 carotenoids, its potential to produce a sesquiterpene was assessed.
Thus, the biotechnological production hosts E. coli, C. glutamicum, pseudomonads, bacilli and Baker's yeast used in these large scale processes have been engineered for efficient utilization of alternative carbon sources.
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To test this proposition we constructed a precise three-dimensional 4.35 metric ton replica of an actual statue and demonstrate how positioning the center of mass allowed it to fall forward and rock from side to side causing it to 'walk.' Our experiments reveal how the statue form was engineered for efficient transport by a small number of individuals.
We hypothesized that DCA needs to be engineered for efficient cellular and mitochondrial uptake to show efficient glycolytic inhibition, to exhibit anticancer activity, and to enhance the effects of antitumor immunity at pharmacologically relevant doses.
We began with a 21B3 peroxygenaseenase that had been engineered for highly efficient hydroxylation of 12-pNCA [ 23] (see Additional file 6).
Some have been engineered for better absorption.
These unique natural zeolite membranes have the potential to be engineered for high-temperature, energy-efficient industrial separation and purification applications including hydrogen separation, and to serve as a model for the development of robust synthetic zeolite membranes with superior separation characteristics.
The strain E. coli LA02 (Table 1) was engineered for isobutanol production by introducing an efficient Ehrlich pathway (consisting of kivd from L. lactis IL1403 and yqhD from E. coli MG1655) and biosynthetic 2-ketoisovalerate (KIV) precursor pathway (consisting of alsS from B. subtilis 168 and ilvCD from E.coli MG1655) into E. coli LA01.
It should be engineered for that.
Saccharomyces cerevisiae has increasingly been engineered as a cell factory for efficient and economic production of fuels and chemicals from renewable resources.
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