Abitua PB, Gainous TB, Kaczmarczyk AN, Winchell CJ, Hudson C, Kamata K, Nakagawa M, Tsuda M, Kusakabe TG, Levine M (2015) The pre-vertebrate origins of neurogenic placodes. Nature 524:462–465
Article ADS CAS PubMed PubMed Central Google Scholar
Akiyama-Oda Y, Oda H (2006) Axis specification in the spider embryo: dpp is required for radial-to-axial symmetry transformation and sog for ventral patterning. Development 133:2347–2357
Article CAS PubMed Google Scholar
Aono A, Hazama M, Notoya K, Taketomi S, Yamasaki H, Tsukuda R, Sasaki S, Fujisawa Y (1995) Potent ectopic bone-inducing activity of bone morphogenetic protein-4/7 heterodimer. Biochem Biophys Res Commun 210:670–677
Article CAS PubMed Google Scholar
Arendt D, Nübler-Jung K (1994) Inversion of dorsoventral axis? Nature 371:26
Arendt D, Tosches MA, Marlow H (2016) From nerve net to nerve ring, nerve cord and brain–evolution of the nervous system. Nat Rev Neurosci 17:61–72
Article CAS PubMed Google Scholar
Arnold SJ, Robertson EJ (2009) Making a commitment: cell lineage allocation and axis patterning in the early mouse embryo. Nat Rev Mol Cell Biol 10:91–103
Article CAS PubMed Google Scholar
Arora K, Levine MS, O’Connor MB (1994) The screw gene encodes a ubiquitously expressed member of the TGF-β family required for specification of dorsal cell fates in the Drosophila embryo. Genes Dev 8:2588–2601
Article CAS PubMed Google Scholar
Ashe HL, Levine M (1999) Local inhibition and long-range enhancement of Dpp signal transduction by Sog. Nature 398:427–431
Article ADS CAS PubMed Google Scholar
Babonis LS, Martindale MQ (2017) Phylogenetic evidence for the modular evolution of metazoan signalling pathways. Philos Trans R Soc Lond B Biol Sci 372:1713
Bachiller D, Klingensmith J, Kemp C, Belo JA, Anderson RM, May SR, McMahon JA, McMahon AP, Harland RM, Rossant J, De Robertis EM (2000) The organizer factors Chordin and Noggin are required for mouse forebrain development. Nature 403:658–661
Article ADS CAS PubMed Google Scholar
Bauer M, Aguilar G, Wharton KA, Matsuda S, Affolter M (2023) Heterodimerization-dependent secretion of bone morphogenetic proteins in Drosophila. Dev Cell 58(645–659):e644
Beccari L, Moris N, Girgin M, Turner DA, Baillie-Johnson P, Cossy AC, Lutolf MP, Duboule D, Arias AM (2018) Multi-axial self-organization properties of mouse embryonic stem cells into gastruloids. Nature 562:272–276
Article ADS CAS PubMed Google Scholar
Beck S, Le Good JA, Guzman M, Ben Haim N, Roy K, Beermann F, Constam DB (2002) Extraembryonic proteases regulate Nodal signalling during gastrulation. Nat Cell Biol 4:981–985
Article CAS PubMed Google Scholar
Ben-Haim N, Lu C, Guzman-Ayala M, Pescatore L, Mesnard D, Bischofberger M, Naef F, Robertson EJ, Constam DB (2006) The nodal precursor acting via activin receptors induces mesoderm by maintaining a source of its convertases and BMP4. Dev Cell 11:313–323
Article CAS PubMed Google Scholar
Ben-Zvi D, Shilo BZ, Fainsod A, Barkai N (2008) Scaling of the BMP activation gradient in Xenopus embryos. Nature 453:1205–1211
Article ADS CAS PubMed Google Scholar
Berking S (2007) Generation of bilateral symmetry in Anthozoa: a model. J Theor Biol 246:477–490
Article ADS MathSciNet PubMed Google Scholar
Bier E, De Robertis EM (2015) BMP gradients: a paradigm for morphogen-mediated developmental patterning. Science 348:aaa5838
Brazil DP, Church RH, Surae S, Godson C, Martin F (2015) BMP signalling: agony and antagony in the family. Trends Cell Biol 25:249–264
Article CAS PubMed Google Scholar
Cannon JT, Vellutini BC, Smith J 3rd, Ronquist F, Jondelius U, Hejnol A (2016) Xenacoelomorpha is the sister group to Nephrozoa. Nature 530:89–93
Article ADS CAS PubMed Google Scholar
Chang C, Holtzman DA, Chau S, Chickering T, Woolf EA, Holmgren LM, Bodorova J, Gearing DP, Holmes WE, Brivanlou AH (2001) Twisted gastrulation can function as a BMP antagonist. Nature 410:483–487
Article ADS CAS PubMed Google Scholar
Chang YC, Pai CY, Chen YC, Ting HC, Martinez P, Telford MJ, Yu JK, Su YH (2016) Regulatory circuit rewiring and functional divergence of the duplicate admp genes in dorsoventral axial patterning. Dev Biol 410:108–118
Article CAS PubMed Google Scholar
Chapman JA, Kirkness EF, Simakov O, Hampson SE, Mitros T, Weinmaier T, Rattei T, Balasubramanian PG, Borman J, Busam D, Disbennett K, Pfannkoch C, Sumin N, Sutton GG, Viswanathan LD, Walenz B, Goodstein DM, Hellsten U, Kawashima T, Prochnik SE, Putnam NH, Shu S, Blumberg B, Dana CE, Gee L, Kibler DF, Law L, Lindgens D, Martinez DE, Peng J, Wigge PA, Bertulat B, Guder C, Nakamura Y, Ozbek S, Watanabe H, Khalturin K, Hemmrich G, Franke A, Augustin R, Fraune S, Hayakawa E, Hayakawa S, Hirose M, Hwang JS, Ikeo K, Nishimiya-Fujisawa C, Ogura A, Takahashi T, Steinmetz PR, Zhang X, Aufschnaiter R, Eder MK, Gorny AK, Salvenmoser W, Heimberg AM, Wheeler BM, Peterson KJ, Bottger A, Tischler P, Wolf A, Gojobori T, Remington KA, Strausberg RL, Venter JC, Technau U, Hobmayer B, Bosch TC, Holstein TW, Fujisawa T, Bode HR, David CN, Rokhsar DS, Steele RE (2010) The dynamic genome of Hydra. Nature 464:592–596
Article ADS CAS PubMed PubMed Central Google Scholar
Clark EG, Petersen CP (2023) BMP suppresses WNT to integrate patterning of orthogonal body axes in adult planarians. PLoS Genet 19:e1010608
Article CAS PubMed PubMed Central Google Scholar
Cui Y, Hackenmiller R, Berg L, Jean F, Nakayama T, Thomas G, Christian JL (2001) The activity and signaling range of mature BMP-4 is regulated by sequential cleavage at two sites within the prodomain of the precursor. Genes Dev 15:2797–2802
Article CAS PubMed PubMed Central Google Scholar
Dale L, Howes G, Price BM, Smith JC (1992) Bone morphogenetic protein 4: a ventralizing factor in early Xenopus development. Development 115:573–585
Article CAS PubMed Google Scholar
Dal-Pra S, Furthauer M, Van-Celst J, Thisse B, Thisse C (2006) Noggin1 and Follistatin-like2 function redundantly to Chordin to antagonize BMP activity. Dev Biol 298:514–526
Article CAS PubMed Google Scholar
Darras S, Nishida H (2001) The BMP/CHORDIN antagonism controls sensory pigment cell specification and differentiation in the ascidian embryo. Dev Biol 236:271–288
Article CAS PubMed Google Scholar
Denes AS, Jekely G, Steinmetz PR, Raible F, Snyman H, Prud’homme B, Ferrier DE, Balavoine G, Arendt D (2007) Molecular architecture of annelid nerve cord supports common origin of nervous system centralization in bilateria. Cell 129:277–288
Article CAS PubMed Google Scholar
Dick A, Hild M, Bauer H, Imai Y, Maifeld H, Schier AF, Talbot WS, Bouwmeester T, Hammerschmidt M (2000) Essential role of Bmp7 (snailhouse) and its prodomain in dorsoventral patterning of the zebrafish embryo. Development 127:343–354
Article CAS PubMed Google Scholar
Dickmeis T, Rastegar S, Aanstad P, Clark M, Fischer N, Korzh V, Strahle U (2001) Expression of the anti-dorsalizing morphogenetic protein gene in the zebrafish embryo. Dev Genes Evol 211:568–572
Article CAS PubMed Google Scholar
Duboc V, Rottinger E, Besnardeau L, Lepage T (2004) Nodal and BMP2/4 signaling organizes the oral-aboral axis of the sea urchin embryo. Dev Cell 6:397–410
Article CAS PubMed Google Scholar
DuBuc TQ, Ryan JF, Martindale MQ (2019) “Dorsal-ventral” genes are part of an ancient axial patterning system: evidence from Trichoplax adhaerens (Placozoa). Mol Biol Evol 36:966–973
Article CAS PubMed PubMed Central Google Scholar
Dunn CW, Hejnol A, Matus DQ, Pang K, Browne WE, Smith SA, Seaver E, Rouse GW, Obst M, Edgecombe GD, Sorensen MV, Haddock SH, Schmidt-Rhaesa A, Okusu A, Kristensen RM, Wheeler WC, Martindale MQ, Giribet G (2008) Broad phylogenomic sampling improves resolution of the animal tree of life. Nature 452:745–749
Article ADS CAS PubMed Google Scholar
Eldar A, Dorfman R, Weiss D, Ashe H, Shilo BZ, Barkai N (2002) Robustness of the BMP morphogen gradient in Drosophila embryonic patterning. Nature 419:304–308
Article ADS CAS PubMed Google Scholar
Etoc F, Metzger J, Ruzo A, Kirst C, Yoney A, Ozair MZ, Brivanlou AH, Siggia ED (2016) A balance between secreted inhibitors and edge sensing controls gastruloid self-organization. Dev Cell 39:302–315
Comments (0)