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clcnkbxenopus mesoderm [+] 

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Expression summary for clcnkb

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Experiment Species Images Stages Anatomy Assay
Nichane M et al. (2006) Assay

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NF stage 37 and 38 early distal tubule, late distal tubule, pronephric duct, pronephric kidney in situ hybridization
Van Campenhout C et al. (2006) Assay

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laevis
2 images
NF stage 28 to NF stage 35 and 36 early distal tubule, late distal tubule, pronephric duct in situ hybridization
The miR-30 miRNA family regulates Xenopus pronephros development and targets the transcription factor Xlim1/Lhx1.

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laevis
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NF stage 39 early distal tubule, late distal tubule, pronephric duct in situ hybridization
The miR-30 miRNA family regulates Xenopus pronephros development and targets the transcription factor Xlim1/Lhx1.

Paper
laevis
1 image
NF stage 40 early distal tubule, late distal tubule, pronephric duct in situ hybridization
The miR-30 miRNA family regulates Xenopus pronephros development and targets the transcription factor Xlim1/Lhx1.

Xenbase Image
laevis
1 image
NF stage 39 early distal tubule, late distal tubule, pronephric duct in situ hybridization
The chloride conductance channel ClC-K is a specific marker for the Xenopus pronephric distal tubule and duct.

Paper
laevis
2 images
NF stage 31 to NF stage 43 late distal tubule, pronephric duct, pronephric nephron in situ hybridization
Evi1 is specifically expressed in the distal tubule and duct of the Xenopus pronephros and plays a role in its formation.

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laevis
1 image
NF stage 28 early distal tubule, pronephric mesenchyme, pronephric tubule in situ hybridization
The chloride conductance channel ClC-K is a specific marker for the Xenopus pronephric distal tubule and duct.

Paper
laevis
1 image
NF stage 40 to NF stage 41 early distal tubule, kidney, pronephric kidney in situ hybridization
The chloride conductance channel ClC-K is a specific marker for the Xenopus pronephric distal tubule and duct.

Paper
laevis
1 image
NF stage 37 and 38 early distal tubule, kidney, late distal tubule, pronephric duct, pronephric kidney in situ hybridization
Li L et al. (2012) Assay

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laevis
1 image
NF stage 37 and 38 early distal tubule, late distal tubule, pronephric duct in situ hybridization
Tran U et al. (2007) Assay

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1 image
NF stage 37 and 38 early distal tubule, late distal tubule, pronephric duct, pronephric kidney, pronephric tubule in situ hybridization
Embryonic expression of Xenopus SGLT-1L, a novel member of the solute carrier family 5 (SLC5), is confined to tubules of the...

Paper
laevis
1 image
NF stage 35 and 36 early distal tubule, pronephric duct, pronephric kidney, pronephric tubule in situ hybridization
Raciti D et al. (2008) Assay

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laevis
2 images
NF stage 35 and 36 distal tubule, early distal tubule, late distal tubule, pronephric duct, pronephric kidney in situ hybridization
Reggiani L et al. (2007) Assay

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1 image
NF stage 35 and 36 distal tubule, pronephric duct, pronephric kidney, proximal tubule in situ hybridization
Buisson I et al. (2014) Assay

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laevis
2 images
NF stage 33 and 34 to NF stage 35 and 36 distal tubule, early distal tubule, early proximal tubule, late distal tubule, late proximal tubule, [+] in situ hybridization
Yan B et al. (2015) Assay

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1 image
NF stage 11 to NF stage 14 mesoderm in situ hybridization
Leukemia inhibitory factor signaling in Xenopus embryo: Insights from gain of function analysis and dominant negative mutant...

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1 image
NF stage 35 and 36 pronephric duct, pronephric kidney in situ hybridization
DeLay BD et al. (2019) Assay

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1 image
NF stage 40 to NF stage 41 pronephric kidney, pronephric tubule in situ hybridization
Lienkamp S et al. (2010) Assay

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1 image
NF stage 37 and 38 distal tubule in situ hybridization
Cervino AS et al. (2023) Assay

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laevis
2 images
NF stage 39 distal tubule, pronephric duct, pronephric kidney in situ hybridization

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