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Molecular technologies and machine-learning methods have already yielded diagnostics that help guide cancer treatment and cardiovascular procedures.
Finally, a natural and necessary complement to investigating the human genome across its multiple biological dimensions is the advancement of molecular technologies and computational models to test otherwise-untestable hypotheses.
This work was funded by the Japan Science and Technology Agency (JST) Core Research for Evolutional Science and Technology CRESTT) of Molecular Technologies and JSPS KAKENHI (JP15H01637) to I.H. and by a SUNBOR Grant from Suntory Foundation for Life Sciences to S.K.
In addition to surveying current use of DNA-based tools for aquatic invasive species monitoring, we explore potential sources of uncertainty associated with molecular technologies and possibilities for limiting that uncertainty and effectively communicating its implications for decision-making.
In recent years, refined molecular technologies and the generation of genetically engineered mice (e.g. "conventional" and "conditional" knock-outs) have allowed to specifically target individual genes involved in corticosteroid receptor signalling and stress hormone regulation.
Recent advances in molecular technologies and their application to insects have revolutionized the field of vector biology, and there is hope that such new approaches may form the basis for future tsetse interventions.
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To that end, we apply traditional or modern geochemical and molecular technologies -and develop new technologies- to interrogate physiological and biochemical processes in natural systems or laboratory simulations.
An early adopter of new molecular technology and the developer of novel mutagenesis procedures that led to several important discoveries, Collmer led the team that sequenced the genome of Pseudomonas syringae, the microbe responsible for causing bacterial speck disease in tomato plants.
Unprecedented advancements in molecular technology and major initiatives such as the Human Genome Project and the International Haplotype Map Project have created a need for methods to interpret the myriad sequence variations in the human genome, and to catalog disease-causing mutations.
Targeted therapies have evolved in medicine following advances in molecular technology and the successful mapping of the human genome.
All the isolates were finally characterized as CBV5 by using serologic and molecular technology and designated as CBV5/CC10/10, CBV5/CC10/16, and CBV5/CC10/17, respectively.
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