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( Denotes literature images)
Regulation of MSH release from the neurointermediate lobe of Xenopus laevis by CRF-like peptides.
Verburg-Van Kemenade BM, Jenks BG, Cruijsen PM, Dings A, Tonon MC, Vaudry H.
Peptides. null; 8 (6): 1093-100.

Rotation in Xenopus laevis embryos after the appearance of the first cleavage furrow.
Starodubov SM, Doronin YK, Golichenkov VA.
Dokl Biol Sci. null; 421 251-3.

Rod-Specific Ablation Using the Nitroreductase/Metronidazole System to Investigate Regeneration in Xenopus.
Martinez-De Luna RI, Zuber ME.
Cold Spring Harb Protoc. May 22, 2018;

RSPO2 inhibition of RNF43 and ZNRF3 governs limb development independently of LGR4/5/6.
Szenker-Ravi E, Altunoglu U, Leushacke M, Bosso-Lefèvre C, Khatoo M, Thi Tran H, Naert T, Noelanders R, Hajamohideen A, Beneteau C, de Sousa SB, Karaman B, Latypova X, Başaran S, Yücel EB, Tan TT, Vlaeminck L, Nayak SS, Shukla A, Girisha KM, Le Caignec C, Soshnikova N, Uyguner ZO, Vleminckx K, Barker N, Kayserili H, Reversade B.
Nature. May 16, 2018;

Retinoic acid induced expression of Hnf1β and Fzd4 is required for pancreas development in Xenopus laevis.
Gere MB, Pommerenke C, Lingner T, Pieler T.
Development. May 16, 2018;

Retraction of rod-like mitochondria during microtubule-dependent transport.
De Rossi MC, Levi V, Bruno L.
Biosci Rep. May 11, 2018;

RXR Ligands Modulate Thyroid Hormone Signaling Competence in Young Xenopus laevis Tadpoles.
Mengeling BJ, Goodson ML, Furlow JD.
Endocrinology. May 11, 2018;

Ribosomal RNA Biogenesis and Its Response to Chilling Stress in Oryza sativa.
Hang R, Wang Z, Deng X, Liu C, Yan B, Yang C, Song X, Mo B, Cao X.
Plant Physiol. May 1, 2018; 177 (1): 381-397.

Roles of Xenopus chemokine ligand CXCLh (XCXCLh) in early embryogenesis.
Goto T, Ito Y, Michiue T.
Dev Growth Differ. April 26, 2018;

Regulation of neural crest development by the formin family protein Daam1.
Ossipova O, Kerney R, Saint-Jeannet JP, Sokol SY.
Genesis. April 19, 2018; e23108.

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