Sentence examples for modern sequencing tools from inspiring English sources

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Nearly 60 years later, after the advent of modern sequencing tools, geneticist Jean Philippe Vielle-Catzada athehe Center for Research and Advanced Studies of the National Laboratory of Genomics for Biodiversity in Irapuato, Mexico, and his colleagues wanted to find out which genes the ancient domesticators had unwittingly been selecting.

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At the heart of these novel discoveries are the modern DNA sequencing tools, which continue to evolve at a rapid pace.

Advances in modern sequencing technologies, bioinformatics analysis tools, and environmental DNA cloning methods should allow for a movement in natural products discovery away from a random microbe screening approach to a more systematic sequence-based screening approach that will allow for the functional examination of gene clusters that remain hidden in the environment.

Our understanding of the diversity and abundance of circular replication associated protein (Rep) – encoding single stranded (CRESS) DNA viruses has increased considerably over the last few years due to a combination of modern sequencing technologies and new molecular tools.

The bioinformatics tools are applicable for any biologist requiring large-scale PCR-based variant validation and assay design from modern sequencing platforms.

Although modern sequencing technologies permit the ready detection of numerous DNA sequence variants in any organisms, converting such information to PCR-based genetic markers is hampered by a lack of simple, scalable tools.

The tools for PCR-based assay design we present provide a 'missing link' to facilitate access to the wealth of sequence variant data from modern sequencing technologies by researchers with limited informatics and laboratory equipment.

Modern sequence data was trimmed to cover the same regions.

In this paper we have demonstrated how modern gene sequence classification tools can be applied to large-scale malware detection.

The recent advancement of novel array-based sequencing technologies, high-throughput genotyping and modern genomic tools have accelerated the generation of transcript sequences encoding the known/candidate genes globally and their corresponding protein-coding and UTR sequences in diverse contrasting chickpea genotypes at a genome-wide scale.

"But the problem up until now is … how do you decide which products need more examination than others?" There, the report makes a new suggestion: Regulators should ask for a full analysis of a plant's composition using modern "-omics" tools such as genome sequencing and analysis of the proteins and small molecules in a sample to determine when a full safety review is necessary.

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