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Coralline algal metabolites induce settlement and mediate the inductive effect of epiphytic microbes on coral larvae

机译:珊瑚藻代谢产物诱导沉降并介导附生微生物对珊瑚幼虫的诱导作用

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Settlement of invertebrates is a key process affecting the structure of marine communities and underpins the ability of benthic ecosystems to recover from disturbance. While it is known that specific crustose coralline algae (CCA) are important for settlement of some coral species, the role of algal chemical compounds versus surface microbial biofilms has long been ambiguous. Using a model system - a CCA of a genus that has been shown to induce high levels of settlement of Acropora corals (Titanoderma cf. tessellatum) and an abundant coral species (Acropora millepora)- we show that chemical effects of CCA are stronger than those from CCA surface microbial biofilms as drivers of coral settlement. Biofilms contributed to some extent to larval settlement via synergistic effects, where microbial cues were dependent on the CCA primary metabolism (production of dissolved organic carbon). We propose that optimal coral settlement is caused by complex biochemical communications among CCA, their epiphytic microbial community and coral larvae.
机译:无脊椎动物的定居是影响海洋群落结构的关键过程,并增强了底栖生态系统从干扰中恢复的能力。虽然已知特定的硬壳珊瑚藻类(CCA)对于某些珊瑚物种的沉积很重要,但藻类化合物与表面微生物生物膜的作用长期以来一直是模棱两可的。使用模型系统-已证明该属的CCA会诱导高水平的棘足珊瑚(Titanoderma cf. tessellatum)和丰富的珊瑚物种(Acropora millepora)沉降-我们证明了CCA的化学作用要强于来自CCA的表面微生物生物膜作为珊瑚定居的驱动力。生物膜通过协同作用在一定程度上促进了幼虫的沉降,其中微生物提示取决于CCA的主要代谢(溶解有机碳的产生)。我们认为,最佳的珊瑚沉降是由CCA,其附生微生物群落和珊瑚幼虫之间复杂的生化通讯引起的。

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