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In order to establish highly efficient strains, however, the systematic genome analysis and the development of molecular tools for genetic engineering approaches are necessary.
This study sought to develop molecular tools for rapid and efficient classification of European VHSV genotypes.
Supramolecular aptamer and DNAzyme structures are used as molecular tools for amplified sensing.
In the expansion of prokaryotic signaling systems, four main systemic resources were incorporated: molecular tools for detection of solutes, molecular tools for detection of solvent (Donnan effect), the apparatuses of cell-cycle control, and the combined system endocytosis/cytoskeleton.
Here, we describe several molecular tools for genetic engineering of A. chrysogenum, including a ΔAcku70 deletion strain for homologous recombination.
Genomics have provided several new molecular tools for the genotyping and phylogeographical tracing of isolates and description of plague foci.
Since its emergence as an important model organism the molecular tools for studying zebrafish have been limited.
A series of molecular tools for heterologous protein expression in Y. lipolytica have been developed [(Nicaud et al. 2002]; [Madzak et al. 2004]).
Results of this study extended the existing molecular tools for studying the NC10 bacterial community structures and provided new information on the ecological distributions of NC10 bacteria.
Recent advances have been made in the design of genetically-encoded biosensors and the application of this class of molecular tools for optimizing and regulating heterologous pathways.
Recent genetic studies on the flavonoid biosynthetic pathway show that transcription factors are efficient new molecular tools for plant metabolic engineering to increase the production of valuable compounds.
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