ggKbase home page

qh_8_scaffold_1349_2

Organism: QH_8_UNK

megabin RP 52 / 55 MC: 46 BSCG 46 / 51 MC: 44 ASCG 38 / 38 MC: 38
Location: comp(277..2076)

Top 3 Functional Annotations

Value Algorithm Source
Putative AAA ATPase containing von Willebrand factor type A (VWA)domain (Fragment) n=1 Tax=Chondrus crispus RepID=R7QV71_CHOCR similarity UNIREF
DB: UNIREF100
  • Identity: 40.1
  • Coverage: 526.0
  • Bit_score: 297
  • Evalue 3.90e-77
Putative AAA ATPase containing von Willebrand factor type A (VWA)domain {ECO:0000313|EMBL:CDF41366.1}; Flags: Fragment;; TaxID=2769 species="Eukaryota; Rhodophyta; Florideophyceae; Gigartinales; Gigar similarity UNIPROT
DB: UniProtKB
  • Identity: 40.1
  • Coverage: 526.0
  • Bit_score: 297
  • Evalue 5.50e-77
thrombospondin type 3 repeat family protein similarity KEGG
DB: KEGG
  • Identity: 38.1
  • Coverage: 462.0
  • Bit_score: 277
  • Evalue 1.20e-71

Lists

This feature is not on any list.

Notes

This feature has no notes.

Taxonomy

Chondrus crispus → Chondrus → Gigartinales → Florideophyceae → Eukaryota

Sequences

DNA sequence
Length: 1800
ATGAATGGGATAAAGGTGGGGATACTCTCAGTAGTAATGCTACTGTCGGTCATCGCGGCGCCGCCCGCGGTGACCGCTGCACAGTCTCTCGACGAGAACCCGGACGACGACCTGGCCGATACGGTCGCCGACGCCGTCGATACCGACGACGAGGTCCAGGAAGACGCCGACGATGCGGAAGCGGAGACGTCCGGCTCCGACGAGGCCGAGGAAGACACCGACGACGCGGGGGCGAAGACACCCAGCTCCGATGACGCCGAGGAAGACACCGACGATACGGGAGCGGAGACGTCCGGCTCCGACGAGGCCGAGGGGGACGCCGACGACACGGGGGCGAAGACATCCAGCTCCGACGACGCTGACGAGGACGCCGCCGATGAGGCGCCGGCGGTCGACCGGGACGATGACTCCGTCGATGAGCCCGAGGTCGACGACGCCGCCGATCGCCTCGCGGAGACGGCGGACAACCACAGCGACAACGACACGGCCGATGCCGACGTCTGTGCCGACGCAGCCGGGAGCAGTTGCGAGAACGGCACCGAGGACGACGTCGTCGACGTCGACGCCTGCATACAGGTTGACGACGAGTCGGCCGCCGTCAAGGCGTACGTGCGGGCGACGGGCGAGTGGAATGCAACGGCCGATACCGGCTGTTCGTCCTCCGCGGACGACGGGGATGACGGTGGAGACGGAGACGACGGCAGCGATGACGATGACAACGGTGACGATGGCAGCGGTGACGACAACAACGGTGATGACGGCAGTGGTGACGGTGACAATAACAGCGGTGACGACGGAAGCACCGATGACGGCAGCACCGGCGGTTCGGACGGTTCCGGCGAGACGGACACCGACGGCGACGGCATCTCCGACTCCGAGGAGGGCGACGACGACGTCGACGGCGACGGTGACCCGAACCTCGACGACACCGACTCGGACGGCGACGGCATTCCCGATTCGGAGGAAGGGACCGACGACACCGATGGCGATGGCACGCCGAACTACAAAGACACCGACTCGGACGGCGACGGCATTCCCGATTCGGAGGAGGGGGCCGGCGATGTCGACGGCGACGGTGTCCCCGACTACCTCGACGAGGACTCGGACGGTGACGGTATCCCCGATTCGGAGGAGGGGGCCGACGACACCGATGGTGATGGCATCCCGAACTACCTCGACGGGGACTCGGACGGTGACGGCATCCTCGATTTGGAGGAGGGGACCGGCGACGTCGACGGCGACGGAACGCCGAACTACCTCGACGAGGACTCGGACGGTGACGGGGTCCCGGACGCCGAGGAGGGGACCGGCGACGCCGACGGCGACGGCGTCCCCGACTACCTCGACCCGGACACCCCCGGCGACGATACCGAGCAGAGCGTCGTCGACGTCGAGAGCGTGACGGTCATCGACTCGACGGTCGACCCCGTCGAGGTCGGCACCGGCGAGACCGTCTCCGGCGGTGCGACGCTCGGGAACTCCGCCGACGAGGGCGACGAGACCGTCGTCGTCCGGATGTTCGCCGACGGCGAGATCGTCGACTCCGAGACGGTCACCGTGCCGGCCGGCGAGACGCGCGAAATCTCCCTCGAACACGCCTTCGACGCACCGGGCGAGTACGAGGTCGGCATCGAGGGCGGCGTCACTCGGACGGTGACGGTGACGGTAACCGACGACGACTCGATCCAGAGGTCGGGCGTGTTCCTCGGGTCGCTCGGCGGCGCTCTGTGGGTCTACCTGCTCCTGTTTGCCATCCTCGCGGTCGCGCTGATCGGCGGCGTTCGCATCATCCGCGATTGA
PROTEIN sequence
Length: 600
MNGIKVGILSVVMLLSVIAAPPAVTAAQSLDENPDDDLADTVADAVDTDDEVQEDADDAEAETSGSDEAEEDTDDAGAKTPSSDDAEEDTDDTGAETSGSDEAEGDADDTGAKTSSSDDADEDAADEAPAVDRDDDSVDEPEVDDAADRLAETADNHSDNDTADADVCADAAGSSCENGTEDDVVDVDACIQVDDESAAVKAYVRATGEWNATADTGCSSSADDGDDGGDGDDGSDDDDNGDDGSGDDNNGDDGSGDGDNNSGDDGSTDDGSTGGSDGSGETDTDGDGISDSEEGDDDVDGDGDPNLDDTDSDGDGIPDSEEGTDDTDGDGTPNYKDTDSDGDGIPDSEEGAGDVDGDGVPDYLDEDSDGDGIPDSEEGADDTDGDGIPNYLDGDSDGDGILDLEEGTGDVDGDGTPNYLDEDSDGDGVPDAEEGTGDADGDGVPDYLDPDTPGDDTEQSVVDVESVTVIDSTVDPVEVGTGETVSGGATLGNSADEGDETVVVRMFADGEIVDSETVTVPAGETREISLEHAFDAPGEYEVGIEGGVTRTVTVTVTDDDSIQRSGVFLGSLGGALWVYLLLFAILAVALIGGVRIIRD*