Placozoan

placozoan
  • 文章类型: Journal Article
    在早期分支后生动物谱系中,胎盘动物门仍然是探索最少的物种之一。130多年来,该门以单一物种Trichoplaxadhaerens为代表,该动物具有最简单的已知身体计划(没有任何器官的三个细胞层),但行为复杂。最近,在全球范围内对placozoans进行广泛的采样及其随后的遗传分析揭示了全球范围内具有众多隐秘物种的令人难以置信的生物多样性。然而,迄今为止只有少数文化协议可用,所有这些都只属于一个物种。这里,我们描述了代表两个placozoan属的四个不同物种的繁殖:Trichoplaxadhaerens,Trichoplaxsp.H2,Hoilungiasp.H4,和Hoilungiahongkongensis起源于不同的生物群落。我们的协议允许在可比条件下培养所有物种。接下来,我们概述了各种食物来源和优化的菌株特异性参数,从而可以进行长期培养。这些协议可以促进胎盘生物和行为的比较分析,它们一起将有助于破译动物组织的一般原则。
    The phylum Placozoa remains one of the least explored among early-branching metazoan lineages. For over 130 years, this phylum had been represented by the single species Trichoplax adhaerens-an animal with the simplest known body plan (three cell layers without any organs) but complex behaviors. Recently, extensive sampling of placozoans across the globe and their subsequent genetic analysis have revealed incredible biodiversity with numerous cryptic species worldwide. However, only a few culture protocols are available to date, and all are for one species only. Here, we describe the breeding of four different species representing two placozoan genera: Trichoplax adhaerens, Trichoplax sp. H2, Hoilungia sp. H4, and Hoilungia hongkongensis originating from diverse biotopes. Our protocols allow to culture all species under comparable conditions. Next, we outlined various food sources and optimized strain-specific parameters enabling long-term culturing. These protocols can facilitate comparative analyses of placozoan biology and behaviors, which together will contribute to deciphering general principles of animal organization.
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  • 文章类型: Journal Article
    Placozoa是在全球热带和亚热带环境中发现的一组形态简单的海洋动物。它们由两个命名的物种组成,TrichoplaxadhaerensandmorerecentlyHoilungiahongkongensis,两者都有大约六种形态不同的细胞类型。有了测序的基因组,数量有限的细胞类型,和简单的扁平形态,Trichoplax是一种理想的模型生物,可从中探索与最早的动物具有细胞复杂性的动物生物学。使用一种新的方法来鉴定基因表达模式,这项研究着眼于Chordin/TgfΒ信号传导与胎盘虫轴向模式系统的关系。我们的结果表明,胎盘动物的口腹轴与刺胞动物相似,并且副足动物的祖先(胎盘动物和Cnidaria的共同祖先)可能是径向对称的。
    Placozoa are a morphologically simplistic group of marine animals found globally in tropical and subtropical environments. They consist of two named species, Trichoplax adhaerens and more recently Hoilungia hongkongensis, both with roughly six morphologically distinct cell types. With a sequenced genome, a limited number of cell types, and a simple flattened morphology, Trichoplax is an ideal model organism from which to explore the biology of an animal with a cellular complexity analagous to that of the earliest animals. Using a new approach for identification of gene expression patterns, this research looks at the relationship of Chordin/TgfΒ signaling and the axial patterning system of Placozoa. Our results suggest that placozoans have an oral-aboral axis similar to cnidarians and that the parahoxozoan ancestor (common ancestor of Placozoa and Cnidaria) was likely radially symmetric.
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