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XB-IMG-49572

Xenbase Image ID: 49572


Fig. 5. Effect of FGF8a overexpression on neural patterning. (A) FGF8a induces posterior neural genes in ectodermal explants. Embryos were injected into the animal hemisphere at the one-cell stage. Explants were excised at stage 9 and cultured until stage 20. Whole embryo (WE) stage-control embryo sample; whole embryo lysate processed without reverse transcriptase (RT-); explants from uninjected embryo (UI). Embryos were injected as indicated along the top. EF1α, loading control; muscle actin (MA) is an indicator of dorsal mesoderm. Endogenous neural gene expression domains are as follows: sox2, general neural tissue; otx2, forebrain and midbrain; en2, MHB; krox20, hindbrain r3 and r5; hoxD1, posterior hindbrain and spinal cord; hoxB9 and cad3, spinal cord. (B) Uninjected X. laevis tadpole; (C) FGF8a-injected tadpole. (D-V) Embryos displayed dorsoanteriorly; red staining indicates the lineage tracer. Embryos injected into a dorsal blastomere at the four-cell stage with 50 pg of FGF8a mRNA and cultured until neural tube stage 19/20. (D-I) FGF8a does not expand expression of the mesodermal genes myoD (32/32 embryos) or coll II (6/6), but sox2 expression domains are mispatterned and expanded (25/25). (M) Fluorescein-conjugated control MO was injected with the FGF8a mRNA as a lineage tracer (pink). (J-V) FGF8a expands posterior neural domains and reduces anterior neural domains. The displayed phenotypes are representative of the effects of FGF8a mRNA quantitated as follows: (K) otx2, 13/14; (M) rx1, 17/17; (O,P) ephA4, 33/35; (R,S) en2, 25/32; (U,V) krox20, 45/52; hoxB9, 43/44.

Image published in: Fletcher RB et al. (2006)

Copyright © 2006. Image reproduced with permission of the publisher and the copyright holder. This is an Open Access article distributed under the terms of the Creative Commons Attribution License.

GeneSynonymsSpeciesStage(s)Tissue
sox2.Sanop3, LOC108718087, mcops3, Sox-2, XLSOX-2, Xsox-2, XSox2X. laevisThroughout NF stage 20neural tube
otx2.Lotx-2, otx2-a, otx2-b, otxA, Xotx-2, Xotx2X. laevisThroughout NF stage 20forebrain
optic vesicle
myod1.Lmf25, MyoD, myod1-a, myod1-b, myogenic factor 3, XMyoD, XtmyoDX. laevisThroughout NF stage 20paraxial mesoderm
presomitic mesoderm
rax.Lrax-a, rax-b, rax1, rx, rx-1, rx1, rx1a, Rx2A, Xrax, Xrx1, Xrx1AX. laevisThroughout NF stage 20optic vesicle
col2a1.Lcol11a3, col2a1-a, col2a1-b, X-col II, xcol2a1X. laevisThroughout NF stage 20somite
epha4.Leph-a4, epha4-a, epha4-b, hek8, Pag, Pagliaccio, rtk1, sek, sek-1, tyr01, XEpha4X. laevisThroughout NF stage 20hindbrain
stomodeal-hypophyseal primordium
preplacodal ectoderm
anterior placodal area
posterior placodal area
en2.LEn-2, en2-a, en2-b, eng2, engrailed 2, engrailed homolog 2, engrailed-2, maben, xen2X. laevisThroughout NF stage 20midbrain
egr2.LEGR-2, Krox-20, krox20, XKr20, XKrox-20X. laevisSometime during NF stage 20 to NF stage 26rhombomere R3
rhombomere R5
hoxc9-like.LX. laevisThroughout NF stage 20posterior
neural tube
posterior neural tube

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