Sentence examples for mapping to molecular from inspiring English sources

Exact(1)

GO mapping to molecular function revealed that a majority of genes from the tissue transcriptomes of wild silkmoths have almost equal distribution for 'binding' function (property of binding macro-molecules) and catalytic activity.

Similar(59)

For example, compound fragments and related properties have been mapped to molecular fingerprints defined using bit strings [4].

Among the 1047 down-regulated and annotated genes, 326 mapped to biological process terms; 105 mapped to cellular component terms; and 616 mapped to molecular function terms.

A large number of the unique sequences from our study mapped to molecular functions and ligand binding, enzymes, molecular transducer and transporter subcategories.

Among the up-regulated genes of host cells at 24 h post infection, 713 unigenes were mapped to biological processes, 551 unigenes were mapped to cellular components, and 484 unigenes were mapped to molecular functions.

For the 192 ones, there were 51 enriched GO terms including 22 mapped to biological process ontology, 3 mapped to molecular function ontology and 26 mapped to cellular component ontology.

The genes were classified as follows: 1152 genes mapped to biological process terms; 311 genes mapped to cellular component terms; and 2031 genes mapped to molecular function terms (Table  2).

A total of 14,166 and 14,352 unique sequences map to biological processes, 15,130 and 14,923 sequences map to cellular components, and 7,137 and 7,252 sequences map to molecular functions in the control and SGIV infected libraries, respectively.

A total of 16,994 unique proteins mapped to 114,154 GO terms: 48,270 unigenes mapped to biological processes, 40,247 unigenes mapped to molecular functions, and 48,151 unigenes mapped to cellular components.EuKaryotic Orthologous Groups (KOG) classification of the unigenes is important for functional annotation and evolutionary studies.

We use and develop innovative experimental technologies, including CRISPR-based functional genomics, single-cell RNA-sequencing, and genetic interaction mapping, to investigate molecular and genetic networks.

Further studies are currently limited by the fact that knobs have not been mapped relative to molecular markers or to the maize reference genome assembly.

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