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Coral-associated marine fungi form novel lineages and heterogeneous assemblages

机译:与珊瑚有关的海洋真菌形成新的谱系和异质组合

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摘要

Coral stress tolerance is intricately tied to the animal's association with microbial symbionts. The most well-known of these symbioses is that between corals and their dinoflagellate photobionts (Symbiodinium spp.), whose genotype indirectly affects whether a coral can survive cyclical and anthropogenic warming events. Fungi comprise a lesser-known coral symbiotic community whose taxonomy, stability and function is largely un-examined. To assess how fungal communities inside a coral host correlate with water temperature and the genotype of co-occurring Symbiodinium, we sampled Acropora hyacinthus coral colonies from adjacent natural pools with different water temperatures and Symbiodinium identities. Phylogenetic analysis of coral-associated fungal ribosomal DNA amplicons showed a high diversity of Basidiomycetes and Ascomycetes, including several clades separated from known fungal taxa by long and well-supported branches. Community similarity did not correlate with any measured variables, and total fungal community composition was highly variable among A. hyacinthus coral colonies. Colonies in the warmer pool contained more phylogenetically diverse fungal communities than the colder pool and contained statistically significant ‘indicator' species. Four taxa were present in all coral colonies sampled, and may represent obligate associates. Messenger RNA sequenced from a subset of these same colonies contained an abundance of transcripts involved in metabolism of complex biological molecules. Coincidence between the taxonomic diversity found in the DNA and RNA analysis indicates a metabolically active and diverse resident marine fungal community.
机译:珊瑚对压力的承受能力与动物与微生物共生体的联系紧密相关。这些共生中最著名的是珊瑚与它们的鞭毛藻生物假体(Symbiodinium spp。)之间的共生关系,其基因型间接影响珊瑚是否能在周期性和人为变暖事件中生存。真菌由鲜为人知的珊瑚共生群落组成,其分类,稳定性和功能在很大程度上未经检查。为了评估珊瑚寄主内的真菌群落与水温和共生共生菌基因型之间的相关性,我们从相邻的天然池中取样了凤头花凤头珊瑚菌落,它们具有不同的水温和共生菌身份。珊瑚相关真菌核糖体DNA扩增子的系统进化分析表明,担子菌和子囊菌具有高度多样性,包括通过已知的长而支配的分支与已知真菌类群分离的多个进化枝。群落相似性与任何测量变量均不相关,并且风信子珊瑚菌落之间的总真菌群落组成高度可变。与较冷的库相比,较暖的库中的菌群在系统发育上具有更多的真菌群落,并且在统计学上具有重要的“指示”物种。在所有采样的珊瑚群落中都存在四个分类单元,它们可能代表专职伙伴。从这些相同菌落的子集测序的信使RNA含有大量参与复杂生物分子代谢的转录本。在DNA和RNA分析中发现的分类学多样性之间的巧合表明了具有代谢活性和多样性的常驻海洋真菌群落。

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