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ONTOLOGY REPORT - ANNOTATIONS


Term:meiosis II
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Accession:GO:0007135 term browser browse the term
Definition:The second nuclear division of meiosis, in which the two chromatids in each chromosome are separated, resulting in four daughter nuclei from the two nuclei produced in meiosis II.
Synonyms:exact_synonym: meiosis II nuclear division
 xref: Wikipedia:Meiosis#Meiosis_II



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female meiosis II term browser
Symbol Object Name Qualifiers Evidence Notes Source PubMed Reference(s) RGD Reference(s) Position
G Dazl deleted in azoospermia-like acts_upstream_of_or_within ISO (MGI:4946299|PMID:21460039) RGD PMID:21460039 MGI:4946299 NCBI chr 9:10,695,593...10,712,330
Ensembl chr 9:10,695,592...10,712,323
JBrowse link
G Mastl microtubule associated serine/threonine kinase-like acts_upstream_of_or_within ISO (MGI:5607448|PMID:25246615) RGD PMID:25246615 MGI:5607448 NCBI chr17:85,250,512...85,287,479
Ensembl chr17:85,251,997...85,287,353
JBrowse link

Term paths to the root
Path 1
Term Annotations click to browse term
  biological_process 20350
    reproductive process 1858
      meiotic cell cycle process 256
        meiosis II cell cycle process 2
          meiosis II 2
            female meiosis II + 2
            male meiosis II + 0
            meiosis II nuclear membrane disassembly 0
            meiosis II nuclear membrane reassembly 0
            meiotic sister chromatid segregation + 0
Path 2
Term Annotations click to browse term
  biological_process 20350
    cellular process 18813
      cellular component organization or biogenesis 7188
        cellular component organization 6877
          organelle organization 3818
            organelle fission 536
              nuclear division 477
                meiotic nuclear division 227
                  meiosis II 2
                    female meiosis II + 2
                    male meiosis II + 0
                    meiosis II nuclear membrane disassembly 0
                    meiosis II nuclear membrane reassembly 0
                    meiotic sister chromatid segregation + 0
paths to the root