2024-11-23 16:13:57, GGRNA.v2 : RefSeq release 226 (Sep, 2024)
LOCUS XM_015775890 4134 bp mRNA linear PLN 10-JUL-2024 DEFINITION PREDICTED: Oryza sativa Japonica Group protein argonaute 13-like (LOC4334374), mRNA. ACCESSION XM_015775890 VERSION XM_015775890.3 DBLINK BioProject: PRJNA1123306 KEYWORDS RefSeq; corrected model. SOURCE Oryza sativa Japonica Group (Japanese rice) ORGANISM Oryza sativa Japonica Group Eukaryota; Viridiplantae; Streptophyta; Embryophyta; Tracheophyta; Spermatophyta; Magnoliopsida; Liliopsida; Poales; Poaceae; BOP clade; Oryzoideae; Oryzeae; Oryzinae; Oryza; Oryza sativa. COMMENT MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_089037) annotated using gene prediction method: Gnomon, supported by mRNA and EST evidence. Also see: Documentation of NCBI's Annotation Process On Jul 10, 2024 this sequence version replaced XM_015775890.2. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI RefSeq Annotation Status :: Full annotation Annotation Name :: GCF_034140825.1-RS_2024_06 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 10.3 Annotation Method :: Best-placed RefSeq; Gnomon; cmsearch; tRNAscan-SE Features Annotated :: Gene; mRNA; CDS; ncRNA Annotation Date :: 06/21/2024 ##Genome-Annotation-Data-END## ##RefSeq-Attributes-START## frameshifts :: corrected 1 indel ##RefSeq-Attributes-END## PRIMARY REFSEQ_SPAN PRIMARY_IDENTIFIER PRIMARY_SPAN COMP 1-106 CP132237.1 33785611-33785716 107-312 CP132237.1 33786116-33786321 313-448 CP132237.1 33786406-33786541 449-582 CP132237.1 33786655-33786788 583-692 CP132237.1 33786879-33786988 693-799 CP132237.1 33787060-33787166 800-938 CP132237.1 33787623-33787761 939-1055 CP132237.1 33787840-33787956 1056-1163 CP132237.1 33788148-33788255 1164-1235 CP132237.1 33788344-33788415 1236-1355 CP132237.1 33788681-33788800 1356-1521 CP132237.1 33788882-33789047 1522-1643 CP132237.1 33789131-33789252 1644-1751 CP132237.1 33789373-33789480 1752-1753 "NN" 1-2 1754-1784 CP132237.1 33789481-33789511 1785-1924 CP132237.1 33789700-33789839 1925-1987 CP132237.1 33789924-33789986 1988-2051 CP132237.1 33790066-33790129 2052-2187 CP132237.1 33790225-33790360 2188-2261 CP132237.1 33790465-33790538 2262-2356 CP132237.1 33790634-33790728 2357-2388 CP132237.1 33790825-33790856 2389-2519 CP132237.1 33791408-33791538 2520-2752 CP132237.1 33791659-33791891 2753-3560 CP132237.1 33791980-33792787 3561-3719 CP132237.1 33792879-33793037 3720-4134 CP132237.1 33794176-33794590 FEATURES Location/Qualifiers source 1..4134 /organism="Oryza sativa Japonica Group" /mol_type="mRNA" /db_xref="taxon:39947" /chromosome="3" gene 1..4134 /gene="LOC4334374" /note="protein argonaute 13-like; The sequence of the model RefSeq transcript was modified relative to its source genomic sequence to represent the inferred CDS: inserted 2 bases in 1 codon; Derived by automated computational analysis using gene prediction method: Gnomon. Supporting evidence includes similarity to: 1 mRNA, 3 ESTs, 74 long SRA reads, 1 Protein, and 99% coverage of the annotated genomic feature by RNAseq alignments, including 41 samples with support for all annotated introns" /db_xref="GeneID:4334374" misc_feature 1 /gene="LOC4334374" /experiment="COORDINATES: cap analysis [ECO:0007248]" /note="transcription start site" CDS 561..3713 /gene="LOC4334374" /note="The sequence of the model RefSeq protein was modified relative to its source genomic sequence to represent the inferred CDS: inserted 2 bases in 1 codon" /codon_start=1 /product="LOW QUALITY PROTEIN: protein argonaute 13-like" /protein_id="XP_015631376.2" /db_xref="GeneID:4334374" /translation="
MGLSLNIDISATSFFKPVTVIQFVEEFLNIRDTSRPLSDRDRVKIKKALRGVRIETNHQEDQIRRYKITGITPIPMSQLIFPVDDNGTRKTVVQYFWDRYNYRLKYASWPCLQSGSDSRPVYLPMEVCKIVEGQRYSKKLNNKQVTNILRATCQRPQQREQRIHEMVLHNKYTDDRFAQEFGIKVCNDLVSVPARVLPPPMLKYHDSGREKTCAPSVGQWNMINKKMINGGTVDNWTCLSFSRMRPEEVQRFCGDLIQMCNATGMSFNPRPVVDVRSSNPNNIENALRDVHSRTSELLAREGKGGLQLLIVILLEVSGSYGKIKRVCENDLGIVSQCCLPRHASRPNKQYLENVALKINVKVGGRNTVLERAFIRNGIPFVSEVPTIIFGADVTHSTXGEDSASSIAAVVASMDWPEITKYRGLVSAQSHRQEIIEDLFSVGKDPVKVVNGGMIREFLIAFRKKTGRRPERIIFYRDGVSEGQFSRVLLHEMDAIRKACASLEEGYLPPVTFVVVQKRHHTRLFPEVHGRRDMTDKSGNILPGTVKDRQICHPTEFYFYLCSHAGIQGTSRPTHYHVLYDENHFTADELQTLTNNLCYIYARCTHAVSVVPPAYYSHLAASHAHCCIKGHSSGSGSTPGNEHDIVKNSAPTLQILVKVLDFQIVPLTMKLKSSAEDIVALALSKHRVSLHDVYVYHGRRVIAKSLTLESLKADRDSTFLIMPRMRGGCNDTIGGFKCIPLEQHIRSLGDSLFEIIWIPPDLRVSGFCSYLIILGKPARKIICQLLKLLEIIHAANRFASRFTIADLVFLPDLGCIAFKKGVKIRWNLRREEYKLNMGDVASIISCWFRFNRRKLEALEAGIHELRPGQGDSPMFVDILVKDLRSPTHETGLSANYRGFYKNCSALRSCSAHMNLFTSLDIRKDFMVGSADWGNFVKALGDIKLPGWYRTAMRSPEMRKVLFFEFNDPHTGELRGKRYRALSVFSWLEFARIFIKHMKKGLCTDKQATALLCVIFSNIVPVVEKKLTYSYRPPAKEKSNESFTVEEILDPS"
misc_feature 609..953 /gene="LOC4334374" /note="PAZ domain, argonaute_like subfamily. Argonaute is part of the RNA-induced silencing complex (RISC), and is an endonuclease that plays a key role in the RNA interference pathway. The PAZ domain has been named after the proteins Piwi,Argonaut, and Zwille; Region: PAZ_argonaute_like; cd02846" /db_xref="CDD:239212" misc_feature order(756..758,801..803,834..836,846..848,900..902, 921..923,927..929) /gene="LOC4334374" /note="nucleic acid-binding interface [nucleotide binding]; other site" /db_xref="CDD:239212" misc_feature 1089..2435 /gene="LOC4334374" /note="PIWI domain, Argonaute-like subfamily. Argonaute is the central component of the RNA-induced silencing complex (RISC) and related complexes. The PIWI domain is the C-terminal portion of Argonaute and consists of two subdomains, one of which provides the...; Region: Piwi_ago-like; cd04657" /db_xref="CDD:240015" misc_feature order(1518..1520,1530..1532,1566..1577,1584..1586, 1608..1610,1617..1619,1629..1631,1641..1643) /gene="LOC4334374" /note="5' RNA guide strand anchoring site [active]" /db_xref="CDD:240015" misc_feature order(1734..1736,1740..1742,1989..1991,2409..2411) /gene="LOC4334374" /note="active site" /db_xref="CDD:240015" polyA_site 4134 /gene="LOC4334374" /experiment="COORDINATES: polyA evidence [ECO:0006239]" ORIGIN
ataatcttcaactctcactatccattcttccctccccattattcctcaacgcttcgccggcgattcccctctagactctagcgttcgccatggatgcccgccccatgtttcaatcaatcctgagtcaaaatcaagagcaacaaatagggaagtactcaatgagctcatcaagttgcatgggaagacatctcttggtggcaaattgcctgcttatgatggaagaaaaagtctctatactgctggttcactcccttttgaatcggaggagtttgtggttaagctaattgatcccgaaaagaaggataaagaaagggcggagagggagtacaagatcacaattcggattgctggcagaacagacttctaccacctccagcagtttttgcttggaagacagagggatatgccccaagaaaccattcaagtcagtcattgatgttgtcctcagttatgtcacagtgtccagatccttcttctctacccagtttggtcaccggggtgacattggtgagggacttgagtgttggagaggttactatcagagcctgcgcccaacacagatgggcctttcgctgaatatagatatatctgcaacatcattttttaagcctgtgacagtgatccaatttgtggaggagttcctgaacatacgtgacacctcaagacctttgtcagaccgggatcgtgtgaagataaagaaagcattacgtggggttcgcattgaaacaaaccaccaagaggaccaaatcagaagatacaaaataacagggattacccccattcctatgagccagctgatatttcctgttgatgataatgggacaaggaagactgttgttcagtacttctgggataggtacaattacagactgaagtatgcttcttggccctgcctacagtctggcagtgattctcgtcctgtatacttgcctatggaggtgtgcaagattgtagaagggcagaggtactccaagaagcttaacaacaaacaggtgaccaacatccttagagcaacctgtcaacgcccccagcagagggaacagagaattcatgagatggttctccacaacaagtatacagatgataggtttgctcaggagttcggcatcaaggtctgcaatgacctagtctctgttccagcccgtgtgctgcctccacccatgttgaagtatcatgattctggaagggagaaaacttgtgcacccagtgttggacagtggaacatgattaacaagaaaatgatcaatggaggaactgtggataactggacatgtctgagtttttcacgaatgcgtccagaggaggtacaaaggttctgtggtgacctgattcagatgtgcaatgccactggaatgtctttcaatccaagaccagttgtggatgtccggtcatcaaatcctaacaatatagagaatgctctgagggatgttcacagcagaacatcagaactgctagccagagagggaaagggaggcctgcagcttttaattgtaattctgcttgaagttagtggttcttatgggaaaattaaaagggtatgtgagaatgaccttggcattgtatctcaatgttgtttgccaaggcatgccagcaggccgaacaagcaatatttggaaaatgttgcactcaaaatcaatgtcaaggtcggagggcgcaacactgttcttgagcgagcctttatccgcaatggcataccatttgtgtcagaagtcccaacaatcatctttggtgctgatgtcacacactccaccnntggagaggactctgcatcatctattgctgcggttgtggcatcaatggattggcctgaaatcaccaaataccgaggtctggtctctgctcaatcacatagacaggagataatagaagatctctttagtgttggtaaagatccagtgaaggttgtaaatggtgggatgatcagggagttccttatcgcattccgcaagaagactggcagaaggcctgagaggataatcttctatagagatggtgtaagtgaaggtcagttcagccgtgtgcttcttcatgaaatggatgccatcagaaaggcttgtgcatctttggaggagggatatctaccacctgtcacatttgtagtagtccagaaaaggcatcacacaaggcttttcccagaggttcatgggaggcgagacatgactgacaagagcggaaacatccttcctggaactgtcaaggaccgccagatttgccatcctacagagttctatttctacctgtgtagccatgctggcatacagggtactagcaggccaactcattaccatgtcctttatgatgagaaccattttacagctgatgaacttcagaccctgaccaacaatctttgctatatctatgcacgatgcacccatgcagtgtctgtggtcccaccggcctattattctcatcttgctgcatcacatgcacactgctgcattaaaggacatagttcaggtagtggctcaacccctggcaatgagcatgacatagttaaaaattctgctccaacactccagatccttgtcaaagtgctggacttccaaatagttccactgacaatgaaactgaagtcttcagctgaagacattgtagctttagctctatcaaaacatcgcgtctctctgcatgatgtctatgtctaccatggtaggcgagttattgccaagagcttgactcttgaatctttaaaagcagacagggattcaacttttcttataatgccacgtatgaggggtggatgcaatgatacgattggcggtttcaagtgcattcctttagaacaacatatcagatcattaggtgattccctttttgaaatcatatggataccaccagatctgcgagtgagcgggttctgttcatatcttatcatacttggaaaaccagcaagaaaaatcatctgccaacttttaaagttgttggagattatccatgctgccaacagatttgcttccaggtttacaatagctgatctggtgttcctccctgatctgggttgtatagcttttaagaaaggagtaaaaataaggtggaacctcaggagagaggagtacaaactcaacatgggtgatgtagctagcataattagctgctggttcaggtttaaccgcaggaagcttgaagcgctggaagcagggatccatgagcttcgtcctggccaaggtgactctccaatgtttgttgatatattagttaaggatcttagaagccccacacatgagactggtctcagtgccaattatagaggtttctacaaaaattgtagtgctctgagatcttgttcggcccacatgaatttgttcacctctttggacattcgtaaggacttcatggttggttctgctgattggggtaattttgtcaaggctttgggtgatatcaaacttccaggctggtatcgtactgctatgcgatcacctgaaatgaggaaagtactcttctttgagtttaatgatccacatactggggagttacgaggcaaaagatatcgtgccttatcagttttttcatggcttgaatttgcgcggatatttattaagcacatgaagaaagggctgtgtaccgataaacaggcaacagcacttctctgtgtgatattctcgaatattgtacctgttgtggagaagaaacttacttacagttacaggccaccagctaaggagaagagcaatgaaagctttacagttgaagaaatcctggacccatcatagtcatagatgtcggaggaaagacagaatgttgctgtaagctacaaatctcagtatggttggaggatgactctgcaaaggttggagtatgtatgacaaagcgcgaagaaaaagctttcaaggaaagggtttctgaagtttttattggtttgaacagatcctggaaatgaattcatatggatggggagctatatcagttgtagaagttctttttttccttaagttttctgtgtttgtcagtttagcctggtagtgatagactgatagatcctgatgatgtagctgtgtgttagtttgaacgattttctgtttttaagctttttgttcgatgccctggaactgtccaggcatgagtgaccttgtagaaactttcacatttcttttaatagaaatggaggggtattgcccttttgataaagaaaaa
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If you use GGRNA in your work, please cite:
Naito Y, Bono H. (2012)
GGRNA: an ultrafast, transcript-oriented search engine for genes and transcripts.
Nucleic Acids Res., 40, W592-W596.
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