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The biology of coral metamorphosis: molecular responses of larvae to inducers of settlement and metamorphosis

机译:珊瑚变态的生物学:幼虫对沉降和变态诱导物的分子反应

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摘要

Like many other cnidarians, corals undergo metamorphosis from a motile planula larva to a sedentary polyp. In some sea anemones such as Nematostella this process is a smooth transition requiring no extrinsic stimuli, but in many corals it is more complex and is cue-driven. To better understand the molecular events underlying coral metamorphosis, competent larvae were treated with either a natural inducer of settlement (crustose coralline algae chips/extract) or LWamide, which bypasses the settlement phase and drives larvae directly into metamorphosis. Microarrays featuring > 8000 Acropora unigenes were used to follow gene expression changes during the 12 h period after these treatments, and the expression patterns of specific genes, selected on the basis of the array experiments, were investigated by in situ hybridization. Three patterns of expression were common—an aboral pattern restricted to the searching/settlement phase, a second phase of aboral expression corresponding to the beginning of the development of the calicoblastic ectoderm and continuing after metamorphosis, and a later orally-restricted pattern.
机译:像许多其他cnidarians一样,珊瑚经历了从活动性扁平幼虫到久坐息肉的蜕变。在诸如Nematostella的一些海葵中,该过程是平稳的过渡,不需要外部刺激,但是在许多珊瑚中,它更为复杂且受提示驱动。为了更好地了解珊瑚变态的分子事件,用天然的定居诱导剂(地壳珊瑚藻片/提取物)或LWamide处理感受态幼虫,该幼虫绕过定居阶段,直接将幼体带入变态。这些处理后的12 h内,使用具有> 8000个Acropora unigenes基因的微阵列来追踪基因表达变化,并通过原位杂交研究了根据阵列实验选择的特定基因的表达模式。三种表达模式是常见的:限制搜索/沉降期的无花果模式,对应于成釉细胞外胚层发展的开始并在变态后继续的第二个表达阶段,以及后来的限制性表达模式。

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