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1 Here, we define a new postembryonic role for gooseberry.
2 gment polarity genes wingless, engrailed and gooseberry.
3 ion of the target genes engrailed, hedgehog, gooseberry and even-skipped, suggesting that these in vi
4 f the Drosophila Pax group III genes paired, gooseberry and gooseberry-neuro in short germ flour beet
6 red-, and black-currant cultivars as well as gooseberry and jostaberry fruit were investigated at thr
9 t two other proteins, a transcription factor Gooseberry (Gsb) and a transmembrane protein Patched (Pt
10 ale screening effort, we identified the gene gooseberry (gsb) as being necessary for synaptic homeost
13 hh activates transcription of wingless (wg), gooseberry (gsb), and patched (ptc) in the cells immedia
14 ide evidence that the segment-polarity gene, gooseberry (gsb), controls expression of signals from th
15 t, several segment polarity genes, including gooseberry (gsb), specify cell fate in the Drosophila ce
17 nd white currants, jostaberry, red and white gooseberry, hardy kiwifruit, goji berry, rowan, dog rose
23 a Pax group III genes paired, gooseberry and gooseberry-neuro in short germ flour beetles and grassho
24 such as gooseberry, which in turn regulates gooseberry-neuro, a gene expressed later in the developi
28 e neural and muscular development of the sea gooseberry, Pleurobrachia bachei, starting from the clea
30 uroblasts, whereas the nuclear Engrailed and Gooseberry proteins repress huckebein expression in spec
31 on of pine stands by eliminating currant and gooseberry (ribes) alternate hosts from within and aroun
32 elected fruits, underutilized fruit cultivar gooseberry showed the highest overall antioxidant potent
35 genome of Pleurobrachia bachei, Pacific sea gooseberry, together with ten other ctenophore transcrip
36 regulation of segment polarity genes such as gooseberry, which in turn regulates gooseberry-neuro, a
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