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首页> 外文期刊>Scientific reports. >The interaction between the proliferating macroalga Asparagopsis taxiformis and the coral Astroides calycularis induces changes in microbiome and metabolomic fingerprints
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The interaction between the proliferating macroalga Asparagopsis taxiformis and the coral Astroides calycularis induces changes in microbiome and metabolomic fingerprints

机译:增殖大甲杆芦笋之间的相互作用Tanfiformis和Coral Astroides Calycularis诱导微生物组和代原指纹的变化

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Mediterranean Sea ecosystems are considered as hotspots of biological introductions, exposed to possible negative effects of non–indigenous species. In such temperate marine ecosystems, macroalgae may be dominant, with a great percentage of their diversity represented by introduced species. Their interaction with temperate indigenous benthic organisms have been poorly investigated. To provide new insights, we performed an experimental study on the interaction between the introduced proliferative red alga Asparagopsis taxiformis and the indigenous Mediterranean coral Astroides calycularis. The biological response measurements included meta–barcoding of the associated microbial communities and metabolomic fingerprinting of both species. Significant changes were detected among both associated microbial communities, the interspecific differences decreasing with stronger host interaction. No short term effects of the macroalga on the coral health, neither on its polyp activity or its metabolism, were detected. In contrast, the contact interaction with the coral induced a change in the macroalgal metabolomic fingerprint with a significant increase of its bioactivity against the marine bacteria Aliivibrio fischeri. This induction was related to the expression of bioactive metabolites located on the macroalgal surface, a phenomenon which might represent an immediate defensive response of the macroalga or an allelopathic offense against coral.
机译:地中海生态系统被认为是生物介绍的热点,暴露于非本土物种可能的负面影响。在这种温带海洋生态系统中,Macroalgae可能是占主导地位的,其介绍物种代表的多样性百分比。它们与温带土着底栖生物的相互作用已经调查很差。为了提供新的见解,我们对引入的增殖红藻山芦笋类动物和土着地中海珊瑚星座胰岛素的相互作用进行了实验研究。生物反应测量包括相关的微生物群体和两种物种的代谢物指纹的Meta-barcoding。在关联的微生物社区中检测到显着的变化,具有较强的宿主相互作用的差异差异。未经检测到癌泌氨酸健康的癌症对珊瑚健康的短期效应。相比之下,与珊瑚的接触相互作用诱导了大类代谢型指纹的变化,其对海洋细菌的生物活性的显着增加。该诱导与位于大草表面上的生物活性代谢物的表达有关,该现象可能代表大型巨大的近似防御性反应或针对珊瑚的化感作者。

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