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ALDEx2 uses compositional data analysis and can be applied to RNAseq, 16S rRNA gene sequencing, metagenomic sequencing, and selective growth experiments. Alexa-Seq is a pipeline that makes possible to perform gene expression analysis, transcript specific expression analysis, exon junction expression and quantitative alternative analysis. Allows ...
By using oligonucleotide primers targeted to conserved regions in the 16S and 23S genes, RISA fragments can be generated from most of the dominant bacteria in an environmental sample. While the majority of the rRNA operon serves a structural function, portions of the 16S-23S intergenic region can encode tRNAs depending on the bacterial species ...
The genes coding for it are referred to as 16S rRNA genes and are used in reconstructing phylogenies, due to the slow rates of evolution of this region of the gene. [2] Carl Woese and George E. Fox were two of the people who pioneered the use of 16S rRNA in phylogenetics in 1977. [ 3 ]
MT-RNR2, or RRNL, is one of the two mitochondrial ribosomal RNA genes (blue boxes). Mitochondrially encoded 16S RNA (often abbreviated as 16S) is the mitochondrial large subunit ribosomal RNA [1] [2] that in humans is encoded by the MT-RNR2 gene. The MT-RNR2 gene also encodes the Humanin polypeptide that has been the target of Alzheimer's ...
Characteristics of the SSU rRNA for exemplary species. Type SSU rRNA size Species Length Accession Reference; Bacterial (Prokaryotic) 16S: Escherichia coli: 1,541 nt J01859.1 [1] Archaeal (Prokaryotic) 16S Halobacterium salinarum: 1,473 nt M38280.1 [2] Eukaryotic 18S: Homo sapiens: 1,969 nt M10098.1 [3] Mitochondrial 12S: Homo sapiens: 954 nt ...
[4] [5] For both bacteria and archaea the 16S rRNA/rDNA gene is used. It is a common housekeeping gene in all prokaryotic organisms and therefore is used as a standard barcode to assess prokaryotic diversity. For protists, the corresponding 18S rRNA/rDNA gene is used. [6]