Publication |
Data |
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Fish |
Anatomy
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Große et al., 2019
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Fig. 2
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WT + MO2-ctnnb2
, 
w25Tg/+ + MO2-ctnnb2
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Xing et al., 2018
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Fig. 5
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WT + MO1-ctnnb2
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Lu et al., 2017
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Fig. 7
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AB + MO3-ctnnb2
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Tanaka et al., 2017
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Fig. 1
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ctnnb2p1/p1
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Fig. 2
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ctnnb2p1/p1
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Fig. 3
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ctnnb2p1/p1
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Fig. 4
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ctnnb2p1/p1
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Fig. 5
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ctnnb2p1/p1
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Fig. 6
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ctnnb2p1/p1
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Fig. 7
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ctnnb2p1/p1
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Fig. 8
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ctnnb2p1/p1
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Lin et al., 2015
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Fig. 6
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AB + MO1-ctnnb2
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Fig. 7
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AB + MO1-ctnnb2
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Fig. S8
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AB + MO1-ctnnb2
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Toruń et al., 2015
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Fig. 8
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AB + MO1-ctnnb2
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Valenti et al., 2015
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Fig. 3
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ctnnb2p1/p1
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Fig. 4
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ctnnb2p1/p1
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Fig. 5
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ctnnb2p1/p1
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Wu et al., 2012
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Fig. 2
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ctnnb2p1
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Fig. 5
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ctnnb2p1
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Cruz et al., 2010
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Fig. 5
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ctnnb2p1/p1
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Rui et al., 2007
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Fig. 8
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WT + MO3-ctnnb2
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Bellipanni et al., 2006
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Fig. 4
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WT + MO1-ctnnb2
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- axis specification arrested, abnormal
- caudal fin multiple, abnormal
- embryonic camera-type eye development disrupted, abnormal
- eye aplastic, abnormal
- forebrain aplastic, abnormal
- forebrain development disrupted, abnormal
- head necrotic, abnormal
- neural tube distended, abnormal
- notochord aplastic, abnormal
- spinal cord decreased length, abnormal
- spinal cord decreased width, abnormal
- whole organism wholly ventralized, abnormal
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Phenotype Annotation (1994-2006)
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Fig. for (p1)
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ctnnb2p1
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Xiong et al., 2006
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Fig. 1
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TU + MO3-ctnnb2
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