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WormBase Tree Display for Variation: WBVar00144552

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Name Class

WBVar00144552NamePublic_namee2088
Sequence_detailsSeqStatusPending_curation
Variation_typeAllele
OriginSpeciesCaenorhabditis elegans
StrainWBStrain00004806
WBStrain00004819
LaboratoryCB
StatusLive
AffectsGeneWBGene00003102
InteractorWBInteraction000519197
WBInteraction000520380
WBInteraction000524197
WBInteraction000524205
WBInteraction000524206
WBInteraction000538767
WBInteraction000538768
WBInteraction000538769
DescriptionPhenotypeWBPhenotype:0000239Paper_evidenceWBPaper00004710
Curator_confirmedWBPerson712
RemarkIn mab-5(lf) single mutants, P9.p and P10.p still fused with hyp7, as in wild type. P11.p, however, is sometimes transformed into a copy of its posterior neighbor, P12.p.Paper_evidenceWBPaper00004710
Curator_confirmedWBPerson712
Variation_effectProbable_null_via_phenotypePaper_evidenceWBPaper00004710
Curator_confirmedWBPerson712
WBPhenotype:0000469Paper_evidenceWBPaper00002582
WBPaper00003383
WBPaper00001492
WBPaper00004437
Curator_confirmedWBPerson712
WBPerson2987
RemarkQL initially migrated posteriorly; however, her descendants migrated towards the anterior. The final position of QL.pa daughters were displaced anteriorly compared to controls.Paper_evidenceWBPaper00002582
Curator_confirmedWBPerson712
mab-5(e2088) results in 0% of descendants of the QL neuroblast in the posterior of the animal, where the cell migrates in wild type (Table 1).Paper_evidenceWBPaper00003383
Curator_confirmedWBPerson2987
QL descendants aberrantly migrate to the anterior of the animal, similar to QR descendants (Figure 1); "Changes in mab-5 activity do, however, strongly affect the migratory behaviours of the Q daughters, Q.a and Q.p, and their descendants. In a mab-5(e2088lf) background, these cells migrate anteriorly on both sides (Fig. lc), as seen on the wildtype right side. This shows that mab-5(+) activity is necessary to prevent the QL descendants from migrating anteriorly."Paper_evidenceWBPaper00001492
Curator_confirmedWBPerson2987
QL.pax cells aberrantly migrate to the anterior of the animal (Figure 7)Paper_evidenceWBPaper00004437
Variation_effectLoss_of_function_undetermined_extentPaper_evidenceWBPaper00001492
Curator_confirmedWBPerson2987
Probable_null_via_phenotypePaper_evidenceWBPaper00002582
Curator_confirmedWBPerson712
EQ_annotationsAnatomy_termWBbt:0004056PATO:0000460Paper_evidenceWBPaper00003383
Curator_confirmedWBPerson2987
WBbt:0007274PATO:0000460Paper_evidenceWBPaper00001492
Curator_confirmedWBPerson2987
WBbt:0004096PATO:0000460Paper_evidenceWBPaper00001492
Curator_confirmedWBPerson2987
WBbt:0007276PATO:0000460Paper_evidenceWBPaper00001492
Curator_confirmedWBPerson2987
WBbt:0007277PATO:0000460Paper_evidenceWBPaper00001492
Curator_confirmedWBPerson2987
WBbt:0004086PATO:0000460Paper_evidenceWBPaper00001492
WBPaper00004437
Curator_confirmedWBPerson2987
WBbt:0004993PATO:0000460Paper_evidenceWBPaper00001492
WBPaper00004437
Curator_confirmedWBPerson2987
Life_stageWBls:0000024PATO:0000460Paper_evidenceWBPaper00003383
Curator_confirmedWBPerson2987
GO_termGO:0016477PATO:0000460Paper_evidenceWBPaper00001492
WBPaper00004437
Curator_confirmedWBPerson2987
Phenotype_assayGenotypehim-5(e1490)Paper_evidenceWBPaper00001492
Curator_confirmedWBPerson2987
Reference (12)
MethodAllele