| Literature DB >> 27522305 |
Yoshikazu Haramoto1, Tomohito Saijyo2, Toshiaki Tanaka3, Nobuaki Furuno2, Atsushi Suzuki2, Yuzuru Ito1, Mariko Kondo4, Masanori Taira5, Shuji Takahashi6.
Abstract
Two siamois-related homeobox genes siamois (sia1) and twin (sia2), have been reported in Xenopus laevis. These genes are expressed in the blastula chordin- and noggin-expressing (BCNE) center and the Nieuwkoop center, and have complete secondary axis-inducing activity when over-expressed on the ventral side of the embryo. Using whole genome sequences of X. tropicalis and X. laevis, we identified two additional siamois-related genes, which are tandemly duplicated near sia1 and sia2 to form the siamois gene cluster. Four siamois genes in X. tropicalis are transcribed at blastula to gastrula stages. In X. laevis, the siamois gene cluster is present on both homeologous chromosomes, XLA3L and XLA3S. Transcripts from seven siamois genes (three on XLA3L and four on XLA3S) in X. laevis were detected at blastula to gastrula stages. A transcribed gene, sia1p. S, encodes an inactive protein without a homeodomain. When over-expressed ventrally, all siamois-related genes tested in this study except for sia1p. S induced a complete secondary axis, indicating that X. tropicalis and X. laevis have four and six active siamois-related genes, respectively. Of note, each gene required different amounts of mRNA for full activity. These results suggest the possibility that siamois cluster genes have functional redundancy to endow robustness and quickness to organizer formation in Xenopus species.Entities:
Keywords: Early development; Genome; Secondary axis; Siamois-related gene; Wnt/β--catenin; Xenopus
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Year: 2016 PMID: 27522305 DOI: 10.1016/j.ydbio.2016.07.015
Source DB: PubMed Journal: Dev Biol ISSN: 0012-1606 Impact factor: 3.582