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Combined genotyping microbial diversity and metabolite profiling studies on farmed Mytilus spp. from Kiel Fjord

机译:结合基因型微生物多样性和代谢谱分析的养殖Mytilus spp。从基尔峡湾

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摘要

The blue mussel Mytilus is a popular food source with high economical value. Species of the M. edulis complex (M. edulis, M. galloprovincialis and M. trossulus) hybridise whenever their geographic ranges overlap posing difficulties to species discrimination, which is important for blue mussel aquaculture. The aim of this study was to determine the genetic structure of farmed blue mussels in Kiel Fjord. Microbial and metabolic profile patterns were studied to investigate a possible dependency on the genotype of the bivalves. Genotyping confirmed the complex genetic structure of the Baltic Sea hybrid zone and revealed an unexpected dominance of M. trossulus alleles being in contrast to the predominance of M. edulis alleles described for wild Baltic blue mussels. Culture-dependent and -independent microbial community analyses indicated the presence of a diverse Mytilus-associated microbiota, while an LC-MS/MS-based metabolome study identified 76 major compounds dominated by pigments, alkaloids and polyketides in the whole tissue extracts. Analysis of mussel microbiota and metabolome did not indicate genotypic dependence, but demonstrated high intraspecific variability of farmed mussel individuals. We hypothesise that individual differences in microbial and metabolite patterns may be caused by high individual plasticity and might be enhanced by e.g. nutritional condition, age and gender.
机译:蓝贻贝Mytilus是一种流行的食物来源,具有很高的经济价值。只要其地理范围重叠对物种歧视造成困难,可食用的M. edulis复合体(M. edulis,M。galloprovincialis和M. trossulus)杂种,这对于蓝贻贝养殖而言很重要。这项研究的目的是确定基尔峡湾养殖蓝贻贝的遗传结构。研究了微生物和代谢谱模式,以研究对双壳类动物基因型的可能依赖性。基因分型证实了波罗的海杂种区的复杂遗传结构,并揭示了特罗氏沼虾等位基因的出乎意料的优势,与野生波罗的海蓝贻贝所描述的蓝靛果等位基因的优势相反。培养依赖性和非依赖性微生物群落分析表明存在多种与Mytilus相关的微生物群,而一项基于LC-MS / MS的代谢组研究则确定了整个组织提取物中76种主要化合物,其中以色素,生物碱和聚酮化合物为主。贻贝微生物群和代谢组的分析未表明基因型依赖性,但表明养殖贻贝个体的种内变异性较高。我们假设微生物和代谢产物模式的个体差异可能是由于个体的高可塑性引起的,并可能通过例如营养状况,年龄和性别。

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