DCAR_020901

Resource Type: 
Polypeptide
Name: 
DCAR_020901
Identifier: 
DCAR_020901.mRNA-protein
Sequence: 
MIEEMEKLEIEQSQNDAVKSRVRNDESERDDLEEGEIAGNDDVSSSTKAV
EAVMHPLEHSWTFWFDSPSAKSRQAAWGSSMRPIYTFSDVEVFWSLYNNI
HHPSKLTPRADLYCFKNHIEPKWEDPICANGGNWTATFQKGKSDNAWMYS
LLAMIGEQFDHGDEICGAVVNVRARQEKISLWTKNAANEAAQLSIGKQWK
EFLDYNEQIGFIFHEDAKKHDKNAKNKYTA*
Sequence Length: 
231
Sequence Checksum: 
9ca657407886cd2e015118f38e3ffca0
View location in JBrowse: 
Relationship: 
There is 1 relationship.
Relationships
The polypeptide, DCAR_020901, derives from mRNA, DCAR_020901.
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Blast Results: 
The following BLAST results are available for this feature:
BLAST of DCAR_020901 vs. ExPASy Swiss-Prot and TrEMBL without DCAR
Analysis Date: 2021-12-09
Analysis Name: DCAR peptide blastp to SwissProt and TrEMBL without DCAR
Total hits: 20
BLAST of DCAR_020901 vs. ExPASy Swiss-Prot and TrEMBL without DCAR
Match: A0A835CHP3 ((Eukaryotic translation initiation factor 4E {ECO:0000313|EMBL:KAF7840390.1}))

HSP 1 Score: 348.977 bits (894), Expect = 1.385e-120
Identity = 165/236 (69.92%), Postives = 195/236 (82.63%), Query Frame = 0
 
Query:    1 MIEEMEKLEIEQSQ---NDAVKSRVRNDESERDDLEEGEIAGNDDVSSSTKAVEAVM---HPLEHSWTFWFDSPSAKSRQAAWGSSMRPIYTFSDVEVFWSLYNNIHHPSKLTPRADLYCFKNHIEPKWEDPICANGGNWTATFQKGKSDNAWMYSLLAMIGEQFDHGDEICGAVVNVRARQEKISLWTKNAANEAAQLSIGKQWKEFLDYNEQIGFIFHEDAKKHDKNAKNKYTA 230
            ++E++ K  I   Q     +     R  +S+ D+LEEGEIAG DD S+++K   AV+   HPLE+SWTFWFD+PSAKS+QAAWGSS+RPIYTF+ VE FWSLYNNIHHPSKLT  AD +CFK+ IEPKWEDP+CANGG WT TF +GKSD  W+Y+LLAMIGEQFDHGDEICGAVVNVR+RQ+KIS+WTKNA+NE AQ+SIGKQWKEFLDYNE IGFIFHEDAKKHD+ AKN+YTA
Sbjct:    2 VVEDIPKSTITDDQISNTSSTNPNPRAPDSDDDELEEGEIAGEDD-STTSKPSSAVVRQPHPLENSWTFWFDNPSAKSKQAAWGSSIRPIYTFATVEEFWSLYNNIHHPSKLTVGADFHCFKDKIEPKWEDPVCANGGKWTVTFPRGKSDTCWLYTLLAMIGEQFDHGDEICGAVVNVRSRQDKISIWTKNASNEGAQVSIGKQWKEFLDYNETIGFIFHEDAKKHDRGAKNRYTA 236    
BLAST of DCAR_020901 vs. ExPASy Swiss-Prot and TrEMBL without DCAR
Match: I1MEZ2 (mRNA cap-binding protein {ECO:0000256|ARBA:ARBA00016999})

HSP 1 Score: 345.51 bits (885), Expect = 2.649e-119
Identity = 164/235 (69.79%), Postives = 197/235 (83.83%), Query Frame = 0
 
Query:    1 MIEEMEKLEIEQSQNDAVKSRVRNDESERDDLEEGEIA--GNDDVSSSTKAVEAVM---HPLEHSWTFWFDSPSAKSRQAAWGSSMRPIYTFSDVEVFWSLYNNIHHPSKLTPRADLYCFKNHIEPKWEDPICANGGNWTATFQKGKSDNAWMYSLLAMIGEQFDHGDEICGAVVNVRARQEKISLWTKNAANEAAQLSIGKQWKEFLDYNEQIGFIFHEDAKKHDKNAKNKYTA 230
            ++E+ +K  I + QN    SRV ND ++ +DLEEGEI   G+D  S+++K   A++   HPLE+SWTFWFD+PSAKS+QAAWGSS+RPIYTF+ VE FWS+YNNIHHPSKL   AD +CFK+ IEPKWEDPICANGG WT TFQ+GKSD +W+Y+LLAMIGEQFDHGDEICGAVVNVR+RQEKI++WTKNA+NEAAQ+SIGKQWKEFLDYN+ IGFIFHEDAKK D+ AKNKY  
Sbjct:    2 VVEDAQKSAITEDQN---PSRVANDNNDDEDLEEGEIPDDGDDGASATSKPPSALVRNPHPLENSWTFWFDNPSAKSKQAAWGSSIRPIYTFATVEEFWSIYNNIHHPSKLGVGADFHCFKHKIEPKWEDPICANGGKWTMTFQRGKSDTSWLYTLLAMIGEQFDHGDEICGAVVNVRSRQEKIAIWTKNASNEAAQVSIGKQWKEFLDYNDTIGFIFHEDAKKLDRGAKNKYVV 233    
BLAST of DCAR_020901 vs. ExPASy Swiss-Prot and TrEMBL without DCAR
Match: A0A0B2PHB3 (mRNA cap-binding protein {ECO:0000256|ARBA:ARBA00016999})

HSP 1 Score: 345.125 bits (884), Expect = 3.335e-119
Identity = 164/235 (69.79%), Postives = 197/235 (83.83%), Query Frame = 0
 
Query:    1 MIEEMEKLEIEQSQNDAVKSRVRNDESERDDLEEGEIA--GNDDVSSSTKAVEAVM---HPLEHSWTFWFDSPSAKSRQAAWGSSMRPIYTFSDVEVFWSLYNNIHHPSKLTPRADLYCFKNHIEPKWEDPICANGGNWTATFQKGKSDNAWMYSLLAMIGEQFDHGDEICGAVVNVRARQEKISLWTKNAANEAAQLSIGKQWKEFLDYNEQIGFIFHEDAKKHDKNAKNKYTA 230
            ++E+ +K  I + QN    SRV ND ++ +DLEEGEI   G+D  S+++K   A++   HPLE+SWTFWFD+PSAKS+QAAWGSS+RPIYTF+ VE FWS+YNNIHHPSKL   AD +CFK+ IEPKWEDPICANGG WT TFQ+GKSD +W+Y+LLAMIGEQFDHGDEICGAVVNVR+RQEKI++WTKNA+NEAAQ+SIGKQWKEFLDYN+ IGFIFHEDAKK D+ AKNKY  
Sbjct:    2 VVEDAQKSAITEDQN---PSRVANDNNDDEDLEEGEILDDGDDGASATSKPPSALVRNPHPLENSWTFWFDNPSAKSKQAAWGSSIRPIYTFATVEEFWSIYNNIHHPSKLGVGADFHCFKHKIEPKWEDPICANGGKWTMTFQRGKSDTSWLYTLLAMIGEQFDHGDEICGAVVNVRSRQEKIAIWTKNASNEAAQVSIGKQWKEFLDYNDTIGFIFHEDAKKLDRGAKNKYVV 233    
BLAST of DCAR_020901 vs. ExPASy Swiss-Prot and TrEMBL without DCAR
Match: A0A7J6F6A7 (mRNA cap-binding protein {ECO:0000256|ARBA:ARBA00016999})

HSP 1 Score: 343.969 bits (881), Expect = 8.064e-119
Identity = 163/226 (72.12%), Postives = 185/226 (81.86%), Query Frame = 0
 
Query:    8 LEIEQSQNDAVKSRVRNDESERDDLEEGEIAGNDDVSSSTKAVEAVMH---PLEHSWTFWFDSPSAKSRQAAWGSSMRPIYTFSDVEVFWSLYNNIHHPSKLTPRADLYCFKNHIEPKWEDPICANGGNWTATFQKGKSDNAWMYSLLAMIGEQFDHGDEICGAVVNVRARQEKISLWTKNAANEAAQLSIGKQWKEFLDYNEQIGFIFHEDAKKHDKNAKNKYTA 230
            + +E++Q      RV     E DDLEEGEI  +DD SSS  A   ++H   PLEHSWTFWFD+PSAKS+QAAWGSS+RPIYTFS VE FWS+YN+IHHPSKL P AD +CFK  IEPKWEDPIC+NGG WT TFQKGKSD  W+Y+LLAMIGEQFDHGDEICGAVVNVRARQEKIS+WTKNAANE AQ+SIG+QWKEFLDY E IGFIFH+DAKK D+ AKN+YT 
Sbjct:    1 MVVEENQTIPTNPRV-----EEDDLEEGEIIADDDSSSSNPANAPLLHQPHPLEHSWTFWFDNPSAKSKQAAWGSSIRPIYTFSTVEEFWSMYNSIHHPSKLAPGADFHCFKFKIEPKWEDPICSNGGKWTMTFQKGKSDTCWLYTLLAMIGEQFDHGDEICGAVVNVRARQEKISIWTKNAANEEAQVSIGRQWKEFLDYKETIGFIFHDDAKKLDRGAKNRYTV 221    
BLAST of DCAR_020901 vs. ExPASy Swiss-Prot and TrEMBL without DCAR
Match: A0A1S2XC41 (mRNA cap-binding protein {ECO:0000256|ARBA:ARBA00016999})

HSP 1 Score: 340.117 bits (871), Expect = 4.089e-117
Identity = 164/235 (69.79%), Postives = 193/235 (82.13%), Query Frame = 0
 
Query:    1 MIEEMEKLEIEQSQNDAVKSRV-RNDESERDDLEEGEIAGNDDVSSSTK----AVEAVMHPLEHSWTFWFDSPSAKSRQAAWGSSMRPIYTFSDVEVFWSLYNNIHHPSKLTPRADLYCFKNHIEPKWEDPICANGGNWTATFQKGKSDNAWMYSLLAMIGEQFDHGDEICGAVVNVRARQEKISLWTKNAANEAAQLSIGKQWKEFLDYNEQIGFIFHEDAKKHDKNAKNKYTA 230
            ++E++ K  I    +D + +RV  +D +  +DLEEGEI   DD S+++K    A+    HPLE+SWTFWFD+PSAKS+QAAWGSS+RPIYTF+ VE FWS+YNNIHHPSKL   AD +CFK  IEPKWEDPIC+NGG WT TFQKGKSD +W+Y+LLAMIGEQFDHGDEICGAVVNVR RQEKIS+WTKNA+NEAAQ+SIGKQWKEFLDYNE IGFIFHEDAKK D+NAKNKY  
Sbjct:    2 VVEDVPKSTI---TDDQIPNRVIEDDNNNINDLEEGEILDEDDSSATSKSHTTAIVHQPHPLENSWTFWFDNPSAKSKQAAWGSSIRPIYTFATVEEFWSIYNNIHHPSKLAVGADFHCFKYKIEPKWEDPICSNGGKWTMTFQKGKSDTSWLYTLLAMIGEQFDHGDEICGAVVNVRNRQEKISIWTKNASNEAAQVSIGKQWKEFLDYNETIGFIFHEDAKKLDRNAKNKYVV 233    
BLAST of DCAR_020901 vs. ExPASy Swiss-Prot and TrEMBL without DCAR
Match: A0A6P4C8A6 (mRNA cap-binding protein {ECO:0000256|ARBA:ARBA00016999})

HSP 1 Score: 338.191 bits (866), Expect = 2.200e-116
Identity = 164/235 (69.79%), Postives = 188/235 (80.00%), Query Frame = 0
 
Query:    1 MIEEMEKLEIEQSQNDAVKSRVRNDESERDDLEEGEIAGNDDVS------SSTKAVEAVMHPLEHSWTFWFDSPSAKSRQAAWGSSMRPIYTFSDVEVFWSLYNNIHHPSKLTPRADLYCFKNHIEPKWEDPICANGGNWTATFQKGKSDNAWMYSLLAMIGEQFDHGDEICGAVVNVRARQEKISLWTKNAANEAAQLSIGKQWKEFLDYNEQIGFIFHEDAKKHDKNAKNKYT 229
            ++E+ +K  I   Q  A      N  +E +DLEEGEI  +DD S      SS+ A+    HPLE+SWTFWFD+PSAKS+QAAWGSS+RPIYTF+ VE FWS+YNNIHHPSKL   AD +CFK+ IEPKWEDPICANGG WT TF +GKSD +W+Y+LL MIGEQFDHGDEICGAVVNVR RQEKI+LWTKNAANEAAQ+SIGKQWKEFLDYNE IGFIFHEDAKKHD+ AKNKY 
Sbjct:    2 VVEDTQKSSITDDQITA------NPNNENEDLEEGEILDDDDSSATSRPPSSSGALARNPHPLENSWTFWFDNPSAKSKQAAWGSSIRPIYTFATVEEFWSIYNNIHHPSKLAVGADFHCFKHKIEPKWEDPICANGGKWTMTFPRGKSDTSWLYTLLGMIGEQFDHGDEICGAVVNVRNRQEKIALWTKNAANEAAQVSIGKQWKEFLDYNETIGFIFHEDAKKHDRAAKNKYV 230    
BLAST of DCAR_020901 vs. ExPASy Swiss-Prot and TrEMBL without DCAR
Match: K0P2S0 (mRNA cap-binding protein {ECO:0000256|ARBA:ARBA00016999})

HSP 1 Score: 336.65 bits (862), Expect = 7.669e-116
Identity = 163/235 (69.36%), Postives = 188/235 (80.00%), Query Frame = 0
 
Query:    1 MIEEMEKLEIEQSQNDAVKSRVRNDESERDDLEEGEIAGNDDVS------SSTKAVEAVMHPLEHSWTFWFDSPSAKSRQAAWGSSMRPIYTFSDVEVFWSLYNNIHHPSKLTPRADLYCFKNHIEPKWEDPICANGGNWTATFQKGKSDNAWMYSLLAMIGEQFDHGDEICGAVVNVRARQEKISLWTKNAANEAAQLSIGKQWKEFLDYNEQIGFIFHEDAKKHDKNAKNKYT 229
            ++E+ +K  I   Q  A      N  +E +DLEEGEI  +DD S      SS+ A+    HPLE+SWTFWFD+PSAKS+QAAWGSS+RPIYTF+ VE FWS+YNNIHHPSKL   AD +CFK+ IEPKWEDPICANGG WT TF +GKSD +W+Y+LL MIGEQFDHGDEICGAVVNVR RQEKI+LWTKNAANEAAQ+SIGKQWKEFLDYN+ IGFIFHEDAKKHD+ AKNKY 
Sbjct:    2 VVEDTQKSSITDDQITA------NPNNENEDLEEGEILDDDDSSATSRPPSSSGALARNPHPLENSWTFWFDNPSAKSKQAAWGSSIRPIYTFATVEEFWSIYNNIHHPSKLAVGADFHCFKHKIEPKWEDPICANGGKWTMTFPRGKSDTSWLYTLLGMIGEQFDHGDEICGAVVNVRNRQEKIALWTKNAANEAAQVSIGKQWKEFLDYNDTIGFIFHEDAKKHDRAAKNKYV 230    
BLAST of DCAR_020901 vs. ExPASy Swiss-Prot and TrEMBL without DCAR
Match: A0A5A7NV97 (mRNA cap-binding protein {ECO:0000256|ARBA:ARBA00016999})

HSP 1 Score: 337.806 bits (865), Expect = 9.495e-116
Identity = 159/234 (67.95%), Postives = 183/234 (78.21%), Query Frame = 0
 
Query:    1 MIEEMEKLEI----EQSQNDAVKSRVRNDESERDDLEEGEIAGNDDVSSSTKAVEAVMHPLEHSWTFWFDSPSAKSRQAAWGSSMRPIYTFSDVEVFWSLYNNIHHPSKLTPRADLYCFKNHIEPKWEDPICANGGNWTATFQKGKSDNAWMYSLLAMIGEQFDHGDEICGAVVNVRARQEKISLWTKNAANEAAQLSIGKQWKEFLDYNEQIGFIFHEDAKKHDKNAKNKYTA 230
            M+EE E L      E   + ++     N   +  D EEGEI G DD   +  A     HPLEHSWTFWFD+PSAKS+QAAWGSS+RPIYTFS VE FWS+YNNIHHPSKL   AD +CFKN IEPKWEDP+CANGG WT TF +GKSD  W+Y+LLAMIGEQFD+GDEICGAV+NVRARQEKIS+WTKNAANEAAQLSIG+QWKEFLDYN+ IGFIFH+DAKK D+ AKN+Y+ 
Sbjct:   37 MVEESENLATAVKEETEDSTSMAKNHHNPSGDESDAEEGEIVG-DDPEKAAVAAPVPKHPLEHSWTFWFDNPSAKSKQAAWGSSIRPIYTFSTVEDFWSVYNNIHHPSKLAVGADFHCFKNKIEPKWEDPVCANGGKWTVTFSRGKSDTCWLYTLLAMIGEQFDYGDEICGAVINVRARQEKISIWTKNAANEAAQLSIGRQWKEFLDYNDTIGFIFHDDAKKLDRGAKNRYSV 269    
BLAST of DCAR_020901 vs. ExPASy Swiss-Prot and TrEMBL without DCAR
Match: A0A2G9HYL8 (mRNA cap-binding protein {ECO:0000256|ARBA:ARBA00016999})

HSP 1 Score: 336.265 bits (861), Expect = 1.132e-115
Identity = 160/234 (68.38%), Postives = 186/234 (79.49%), Query Frame = 0
 
Query:    1 MIEEMEKLEI---EQSQNDAVKSRVRNDESERDDLEEGEIAGNDDVSSSTKAVEAVM-HPLEHSWTFWFDSPSAKSRQAAWGSSMRPIYTFSDVEVFWSLYNNIHHPSKLTPRADLYCFKNHIEPKWEDPICANGGNWTATFQKGKSDNAWMYSLLAMIGEQFDHGDEICGAVVNVRARQEKISLWTKNAANEAAQLSIGKQWKEFLDYNEQIGFIFHEDAKKHDKNAKNKYTA 230
            M+EE EKL     + ++N ++     N   E  + EEGEI G D   ++         HPLEHSWTFWFD+PSAK++QAAWGSSMRPIYTFS VE FWS+YNNIHHPSKL   AD +CFKN IEPKWEDP+CANGG WT TFQ+GKSD+ W+Y+LLAMIGEQFD+GDEICGAVVNVR RQ+KIS+WTKNAANEAAQLSIG+QWKEFLDYNE IGFIFH+DAKK D+ AKN+YT 
Sbjct:    1 MVEETEKLATAITDDAENSSMNKNHNNIGGEDSEAEEGEIVGGDADDAAKAVAAPAPKHPLEHSWTFWFDNPSAKAKQAAWGSSMRPIYTFSTVEDFWSVYNNIHHPSKLAVGADFHCFKNKIEPKWEDPVCANGGKWTVTFQRGKSDSCWLYTLLAMIGEQFDYGDEICGAVVNVRGRQDKISIWTKNAANEAAQLSIGRQWKEFLDYNETIGFIFHDDAKKLDRGAKNRYTV 234    
BLAST of DCAR_020901 vs. ExPASy Swiss-Prot and TrEMBL without DCAR
Match: A0A0K9S0I3 (mRNA cap-binding protein {ECO:0000256|ARBA:ARBA00016999})

HSP 1 Score: 335.495 bits (859), Expect = 1.492e-115
Identity = 153/201 (76.12%), Postives = 175/201 (87.06%), Query Frame = 0
 
Query:   30 DDLEEGEIAGNDDVSSSTKAVEAVMHPLEHSWTFWFDSPSAKSRQAAWGSSMRPIYTFSDVEVFWSLYNNIHHPSKLTPRADLYCFKNHIEPKWEDPICANGGNWTATFQKGKSDNAWMYSLLAMIGEQFDHGDEICGAVVNVRARQEKISLWTKNAANEAAQLSIGKQWKEFLDYNEQIGFIFHEDAKKHDKNAKNKYTA 230
            DDLEEGEI       +  K  ++V HPLE+SWTFWFD+PSAKS+ AAWGSS+RPIYTFS+VE FWSLYNNIHHPSKL   AD +CFK+ IEPKWEDPICANGG WT TF +GKSD AW+Y+LLAMIGEQFDHGD+ICGAV+NVRARQEKI++WTKNAANEAAQLSIGKQWK+FLDYNE IGFIFH+DAKKHD+ AKN+Y+ 
Sbjct:   14 DDLEEGEIINEGGDVAVAKPSKSVSHPLENSWTFWFDNPSAKSKAAAWGSSIRPIYTFSNVEEFWSLYNNIHHPSKLGVGADFHCFKDKIEPKWEDPICANGGKWTVTFSRGKSDTAWLYTLLAMIGEQFDHGDDICGAVINVRARQEKIAIWTKNAANEAAQLSIGKQWKKFLDYNESIGFIFHDDAKKHDRGAKNRYSC 214    
Match NameStatsDescription
A0A835CHP3E-Value: 1.385e-120, PID: 69.92(Eukaryotic translation initiation factor 4E {ECO:... [more]
I1MEZ2E-Value: 2.649e-119, PID: 69.79mRNA cap-binding protein {ECO:0000256|ARBA:ARBA000... [more]
A0A0B2PHB3E-Value: 3.335e-119, PID: 69.79mRNA cap-binding protein {ECO:0000256|ARBA:ARBA000... [more]
A0A7J6F6A7E-Value: 8.064e-119, PID: 72.12mRNA cap-binding protein {ECO:0000256|ARBA:ARBA000... [more]
A0A1S2XC41E-Value: 4.089e-117, PID: 69.79mRNA cap-binding protein {ECO:0000256|ARBA:ARBA000... [more]
A0A6P4C8A6E-Value: 2.200e-116, PID: 69.79mRNA cap-binding protein {ECO:0000256|ARBA:ARBA000... [more]
K0P2S0E-Value: 7.669e-116, PID: 69.36mRNA cap-binding protein {ECO:0000256|ARBA:ARBA000... [more]
A0A5A7NV97E-Value: 9.495e-116, PID: 67.95mRNA cap-binding protein {ECO:0000256|ARBA:ARBA000... [more]
A0A2G9HYL8E-Value: 1.132e-115, PID: 68.38mRNA cap-binding protein {ECO:0000256|ARBA:ARBA000... [more]
A0A0K9S0I3E-Value: 1.492e-115, PID: 76.12mRNA cap-binding protein {ECO:0000256|ARBA:ARBA000... [more]

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Analysis: 
NameDescription

An orange, doubled-haploid, Nantes-type carrot (DH1) was used for genome sequencing. We used BAC end sequences and a newly developed linkage map with 2,075 markers to correct 135 scaffolds with one or more chimeric regions. The resulting v2.0 assembly spans 421.5 Mb and contains 4,907 scaffolds (N50 of 12.7 Mb), accounting for ∼90% of the estimated genome size of 473 Mb. The scaftig N50 of 31.2 kb is similar to those of other high-quality genome assemblies such as potato and pepper. About 86% (362 Mb) of the assembled genome is included in only 60 superscaffolds anchored to the nine pseudomolecules. The longest superscaffold spans 30.2 Mb, 85% of chromosome 4.

There are a few different naming schemes for this assembly. First there is the
Authors' original naming scheme: Sequences with DCARv2 prefix are the original assembly as submitted to NCBI. These are labelled DCARv2_Chr1 through DCARv2_Chr9 for the chromosome pseudomolecules, DCARv2_MT and DCARv2_PT for the organellar assemblies, DCARv2_B1 and up for unincorporated superscaffolds, DCARv2_S26.1 and up for unincorporated scaffolds, and DCARv2_C10542132 and up for unincorporated contigs. A file with sequences using this naming scheme can be downloaded from the File: link below.
These sequences can be viewed in JBrowse here.

Phytozome genome ID 388: The authors' sequences and gene predictions were also submitted to Phytozome, and can be accessed at this address: https://phytozome-next.jgi.doe.gov/info/Dcarota_v2_0

LNRQ01: These sequences were then assigned GenBank accession numbers starting at LNRQ01000001.1 which corresponds to DCARv2_Chr1, up to LNRQ01004826.1 which corresponds to an unincorporated contig, DCARv2_C10750146. These reside in bioproject PRJNA268187, which is a subproject of umbrella project PRJNA285926.

Assembly GCA_001625215.1: The genome assembly was later defined an accession number GCA_001625215.1 for assembly ASM162521v1 which consists of only the 9 chromosome sequences and the plastid assembly, which have accession numbers from CM004278.1 to CM004286.1 for the chromosomes and CM004358.1 for the plastid. The mitochondrial genome was not included because it is classified as an incomplete sequence.

RefSeq: The assembly was then later added to RefSeq, and there another new set of identifiers was defined from NC_030381.1 to NC_030389.1 for the chromosomes, and from NW_016089425.1 to NW_016094239.1 for unincorporated scaffolds and contigs. These reside in bioproject PRJNA326436. Note that NCBI substituted different assembled organellar genomes from different genotypes for the RefSeq records.

The NCBI Sequence report lists the correspondences between the various naming methods

Link to the LNRQ01000000.1 master record at NCBI

Raw Reads: Link to SRA accessions used for the genome assembly

This genome is available in the CarrotOmics Blast Search

This analysis is a blastp search of all of the DCAR V1.0 Gene Prediction polypeptide sequences against combined ExPASy SwissProt and TrEMBL databases from Nov. 17, 2021. Prior to performing the blast search, the database was filtered to remove organisms not in the Viridiplantae, and also filtered to remove these same DCAR gene predictions.

For gene model prediction, mobile element–related repeats were masked using RepeatMasker. De novo prediction using AUGUSTUS v2.5.5, GENSCAN v.1.1.0, and GlimmerHMM-3.0.1 was trained using model species A. thaliana and S. lycoperisum training sets. The protein sequences of S. lycoperisum, Solanum tuberosum, A. thaliana, Brassica rapa, and Oryza sativa were mapped to the carrot genome using TBLASTN (BLAST All 2.2.23) and analyzed with GeneWise version 2.2.0. Carrot ESTs were aligned to the genome using BLAT and analyzed with PASA to detect spliced gene models. RNA-seq reads from 20 DH1 libraries were aligned with TopHat 2.0.9. Transcripts were predicted by Cufflinks. All gene models produced by de novo prediction, protein homology searches, and prediction and transcript-based evidence were integrated using GLEAN v1.1. Putative gene functions were assigned using the best BLASTP match to SwissProt and TrEMBL databases. Gene motifs and domains were determined with InterProScan version 4.7 against the ProDom, PRINTS, Pfam, SMART, PANTHER, and PROSITE protein databases. GO IDs for each gene were obtained from the corresponding InterPro entries. All genes were aligned against KEGG (release 58) proteins.

Data from this analysis can be viewed in JBrowse here.

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