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One approach to studying the consequences of selection at the genomic level is the application of genome scans that screen a collection of polymorphic genetic marker loci for their extent of differentiation between multiple (typically two) populations occupying ecologically distinct environments.
The application of genome editing technologies, like CRISPR/Cas9 for industrially relevant microorganisms, is becoming increasingly important.
We then delve into the application of genome scans and association mapping of complex traits in natural populations.
At this moment, the use of CRISPR-based alterations in wild animal populations, in combination with a gene drive, is considered the most impactful application of genome editing.
The meeting identified immediate steps to take toward ensuring that the application of genome engineering technology is performed safely and ethically.
The application of genome editing for therapeutic purpose has begun to overlap with the rapidly evolving field of cancer immunotherapy, particularly for the production of next-generation chimeric antigen receptor (CAR) T cells.
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The advent of high-throughput genomic measurement techniques enabled the application of genome-wide computational approaches aimed at inferring these regulatory relations.
In recent years new molecular genetic findings, particularly from the application of genome-wide association studies (GWASs) and other genomic technologies [ 11- 14], have implicated risk factors for these disorders, and this has allowed the possibility of a genetic relationship between them to be explored directly and current orthodoxies to be challenged [ 8- 10].
The elucidation, design and application of genome-restructuring mechanisms are key elements in the directed evolution of cellular metabolic pathways.
By the application of genome-wide association studies, 26 PD risk loci have been established to date.
Also falling under the synthetic biology rubric and discussed here is the nascent application of genome-editing tools to probe physiological function.
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