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  2. Non-coding DNA - Wikipedia

    en.wikipedia.org/wiki/Non-coding_DNA

    Genes take up about 30% of the pufferfish genome and the coding DNA is about 10%. (Non-coding DNA = 90%.) The reduced size of the pufferfish genome is due to a reduction in the length of introns and less repetitive DNA. [8] [9] Utricularia gibba, a bladderwort plant, has a very small nuclear genome (100.7 Mb) compared to most plants.

  3. Conserved non-coding sequence - Wikipedia

    en.wikipedia.org/wiki/Conserved_non-coding_sequence

    A conserved non-coding sequence (CNS) is a DNA sequence of noncoding DNA that is evolutionarily conserved. These sequences are of interest for their potential to regulate gene production. [1] CNSs in plants [2] and animals [1] are highly associated with transcription factor binding sites and other cis-acting regulatory elements.

  4. Category:Non-coding DNA - Wikipedia

    en.wikipedia.org/wiki/Category:Non-coding_DNA

    This page was last edited on 15 December 2021, at 02:43 (UTC).; Text is available under the Creative Commons Attribution-ShareAlike 4.0 License; additional terms may apply.

  5. mtDNA control region - Wikipedia

    en.wikipedia.org/wiki/MtDNA_control_region

    The mtDNA control region is an area of the mitochondrial genome which is non-coding DNA. This region controls RNA and DNA synthesis. [1] It is the most polymorphic region of the human mtDNA genome, [2] with polymorphism concentrated in hypervariable regions. The average nucleotide diversity in these regions is 1.7%. [3]

  6. ncRNA therapy - Wikipedia

    en.wikipedia.org/wiki/NcRNA_therapy

    A majority of the human genome is made up of non-protein coding DNA. [1] It infers that such sequences are not commonly employed to encode for a protein. However, even though these regions do not code for protein, they have other functions and carry necessary regulatory information.They can be classified based on the size of the ncRNA.

  7. Onion Test - Wikipedia

    en.wikipedia.org/wiki/Onion_Test

    The onion test is a way of assessing the validity of an argument for a functional role for junk DNA.It relates to the paradox that would emerge if the majority of eukaryotic non-coding DNA were assumed to be functional and the difficulty of reconciling that assumption with the diversity in genome sizes among species. [1]

  8. Junk DNA - Wikipedia

    en.wikipedia.org/wiki/Junk_DNA

    Junk DNA (non-functional DNA) is a DNA sequence that has no known biological function. [ 1 ] [ 2 ] Most organisms have some junk DNA in their genomes —mostly, pseudogenes and fragments of transposons and viruses—but it is possible that some organisms have substantial amounts of junk DNA.

  9. De novo gene birth - Wikipedia

    en.wikipedia.org/wiki/De_novo_gene_birth

    Novel genes can emerge from ancestrally non-genic regions through poorly understood mechanisms. (A) A non-genic region first gains transcription and an open reading frame (ORF), in either order, facilitating the birth of a de novo gene. The ORF is for illustrative purposes only, as de novo genes may also , or lack an ORF, as with RNA genes.