urmetazoon

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  • 文章类型: Journal Article
    PlacozoanTrichoplaxadhaerens一直在弥合研究学科之间的差距,这是其他动物所没有的。如第1部分所述,placozoans一直是热门进化辩论的主题,placozoans挑战了一些基本的进化概念。在第2部分中,我们讨论了Placozoa门的特殊遗传学,并指出了一些最知名物种的具有挑战性的模型系统应用。Trichoplaxadhaerens.
    The placozoan Trichoplax adhaerens has been bridging gaps between research disciplines like no other animal. As outlined in part 1, placozoans have been subject of hot evolutionary debates and placozoans have challenged some fundamental evolutionary concepts. Here in part 2 we discuss the exceptional genetics of the phylum Placozoa and point out some challenging model system applications for the best known species, Trichoplax adhaerens.
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  • 文章类型: Journal Article
    The placozoan Trichoplax adhaerens is a tiny hairy plate and more simply organized than any other living metazoan. After its original description by F.E. Schulze in 1883, it attracted attention as a potential model for the ancestral state of metazoan organization, the \"Urmetazoon\". Trichoplax lacks any kind of symmetry, organs, nerve cells, muscle cells, basal lamina, and extracellular matrix. Furthermore, the placozoan genome is the smallest (not secondarily reduced) genome of all metazoan genomes. It harbors a remarkably rich diversity of genes and has been considered the best living surrogate for a metazoan ancestor genome. The phylum Placozoa presently harbors three formally described species, while several dozen \"cryptic\" species are yet awaiting their description. The phylogenetic position of placozoans has recently become a contested arena for modern phylogenetic analyses and view-driven claims. Trichoplax offers unique prospects for understanding the minimal requirements of metazoan animal organization and their corresponding malfunctions.
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