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  2. 16S ribosomal RNA - Wikipedia

    en.wikipedia.org/wiki/16S_ribosomal_RNA

    The 16S rRNA gene is used as the standard for classification and identification of microbes, because it is present in most microbes and shows proper changes. [42] Type strains of 16S rRNA gene sequences for most bacteria and archaea are available on public databases, such as NCBI. However, the quality of the sequences found on these databases ...

  3. GenBank - Wikipedia

    en.wikipedia.org/wiki/GenBank

    The GenBank sequence database is an open access, annotated collection of all publicly available nucleotide sequences and their protein translations. It is produced and maintained by the National Center for Biotechnology Information (NCBI; a part of the National Institutes of Health in the United States) as part of the International Nucleotide Sequence Database Collaboration (INSDC).

  4. Ribosomal RNA - Wikipedia

    en.wikipedia.org/wiki/Ribosomal_RNA

    Ribosomal RNA is transcribed from ribosomal DNA (rDNA) and then bound to ribosomal proteins to form small and large ribosome subunits. rRNA is the physical and mechanical factor of the ribosome that forces transfer RNA (tRNA) and messenger RNA (mRNA) to process and translate the latter into proteins. [ 1 ]

  5. MT-RNR1 - Wikipedia

    en.wikipedia.org/wiki/MT-RNR1

    The 12S rRNA is the mitochondrial homologue of the prokaryotic 16S and eukaryotic nuclear 18S ribosomal RNAs. [4] Mutations in the MT-RNR1 gene may be associated with hearing loss. [5] The rRNA gene also encodes a peptide MOTS-c, also known as Mitochondrial-derived peptide MOTS-c or Mitochondrial open reading frame of the 12S rRNA-c.

  6. Internal transcribed spacer - Wikipedia

    en.wikipedia.org/wiki/Internal_transcribed_spacer

    In bacteria and archaea, there is a single ITS, located between the 16S and 23S rRNA genes. Conversely, there are two ITSs in eukaryotes: ITS1 is located between 18S and 5.8S rRNA genes, while ITS2 is between 5.8S and 28S (in opisthokonts, or 25S in plants) rRNA genes. ITS1 corresponds to the ITS in bacteria and archaea, while ITS2 originated ...

  7. 'The All-Species Living Tree' Project - Wikipedia

    en.wikipedia.org/wiki/'The_All-Species_Living...

    ' The All-Species Living Tree' Project is a collaboration between various academic groups/institutes, such as ARB, SILVA rRNA database project, and LPSN, with the aim of assembling a database of 16S rRNA sequences of all validly published species of Bacteria and Archaea. At one stage, 23S sequences were also collected, but this has since stopped.

  8. List of RNA-Seq bioinformatics tools - Wikipedia

    en.wikipedia.org/wiki/List_of_RNA-Seq...

    A combination of tools is employed: PALMapper (reads alignment), mTiM and mGene (inference of new transcripts). Salmon is a software tool for computing transcript abundance from RNA-seq data using either an alignment-free (based directly on the raw reads) or an alignment-based (based on pre-computed alignments) approach.

  9. 16S rRNA pseudouridine516 synthase - Wikipedia

    en.wikipedia.org/wiki/16S_rRNA_pseudouridine516...

    16S rRNA pseudouridine516 synthase (EC 5.4.99.19, 16S RNA pseudouridine516 synthase, 16S PsiI516 synthase, 16S RNA Psi516 synthase, RNA pseudouridine synthase RsuA, RsuA, 16S RNA pseudouridine 516 synthase) is an enzyme with systematic name 16S rRNA-uridine516 uracil mutase. [1][2][3] This enzyme catalyses the following chemical reaction.