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Transcriptome Changes during the Life Cycle of the Red Sponge Mycale phyllophila (Porifera Demospongiae Poecilosclerida)

机译:红色海绵Mycale phyllophila(PoriferaDemospongiaePoecilosclerida)生命周期内的转录组变化。

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摘要

Sponges are an ancient metazoan group with broad ecological, evolutionary, and biotechnological importance. As in other marine invertebrates with a biphasic life cycle, the developing sponge undergoes a significant morphological, physiological, and ecological transformation during settlement and metamorphosis. In this study, we compare new transcriptome datasets for three life cycle stages of the red sponge (Mycale phyllophila) to test whether gene expression (as in the model poriferan, Amphimedon queenslandica) also varies more after settlement and metamorphosis. In contrast to A. queenslandica, we find that the transcriptome of M. phyllophila changes more during the earlier pre-competent larva/post-larva transition that spans these defining events. We also find that this transition is marked by a greater frequency of significantly up-regulated Gene Ontology terms including those for morphogenesis, differentiation, and development and that the transcriptomes of its pre-competent larvae and adult are distinct. The life cycle transcriptome variation between M. phyllophila and A. queenslandica may be due to their long separate evolutionary histories and corresponding differences in developmental rates and timing. This study now calls for new transcriptome datasets of M. phyllophila and other sponges, which will allow for tests of the generality of our life cycle expression differences and for the greater exploitation of poriferans in both basic and applied research.
机译:海绵是一种古老的后生动物群,具有广泛的生态,进化和生物技术重要性。与其他具有双相生命周期的海洋无脊椎动物一样,发育中的海绵在沉降和变态过程中会经历重大的形态,生理和生态变化。在这项研究中,我们比较了红色海绵(Mycale phyllophila)三个生命周期阶段的新转录组数据集,以测试基因表达(如模型poriferan,Amphimedon queenslandica)在沉降和变态后是否也发生更多变化。与昆士兰昆士兰相反,我们发现在跨越这些定义性事件的较早的前幼虫/幼虫过渡期间,嗜盐分枝杆菌的转录组变化更多。我们还发现,这种转变的特征是基因本体词显着上调的频率更高,这些基因本体词包括形态发生,分化和发育的术语,其前幼虫和成虫的转录组是截然不同的。嗜盐M.和昆士兰A.之间的生命周期转录组差异可能是由于它们长期分开的进化史以及相应的发育速率和时机差异。这项研究现在需要新的嗜盐支原体和其他海绵的转录组数据集,这将有助于测试我们生命周期表达差异的普遍性,并在基础研究和应用研究中进一步开发紫属植物。

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