タケウチ マサキ
Takeuchi Masaki
竹内 雅貴 所属 川崎医療福祉大学 医療技術学部 臨床検査学科 職種 准教授 |
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論文種別 | 原著 |
言語種別 | 英語 |
査読の有無 | 査読あり |
表題 | Germ layer patterning in bichir and lamprey; an insight into its evolution in vertebrates |
掲載誌名 | 正式名:Developmental biology 略 称:Dev Biol ISSNコード:00121606/1095564X |
巻・号・頁 | 332(1),pp.90-102 |
著者・共著者 | Masaki Takeuchi, Maiko Takahashi, Masataka Okabe, Shinichi Aizawa |
担当区分 | 筆頭著者 |
発行年月 | 2009/08 |
概要 | Amphibian holoblastic cleavage in which all blastomeres contribute to any one of the three primary germ layers has been widely thought to be a developmental pattern in the stem lineage of vertebrates, and meroblastic cleavage to have evolved independently in each vertebrate lineage. In extant primitive vertebrates, agnathan lamprey and basal bony !shes also undergo holoblastic cleavage, and their vegetal blastomeres have been generally thought to contribute to embryonic endoderm. However, the present marker analyses in basal ray-!nned !sh bichir and agnathan lamprey embryos indicated that their mesoderm and endoderm develop in the equatorial marginal zone, and their vegetal cell mass is extraembryonic nutritive yolk cells, having non-cell autonomous meso-endoderm inducing activity. Eomesodermin (eomes), but not VegT, orthologs are expressed maternally in these animals, suggesting that VegT is a maternal factor for endoderm differentiation only in amphibian. The study raises the viewpoint that the lamprey/bichir type holoblastic development would have been ancestral to extant vertebrates and retained in their stem lineage; amphibian-type holoblastic development would have been acquired secondarily, accompanied by the exploitation of new molecular machinery such as maternal VegT. |
DOI | doi:10.1016/j.ydbio.2009.05.543 |
文献番号 | 19433081 |