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Microbial origin of bioflocculation components within a promising natural bioflocculant resource of Ruditapes philippinarum conglutination mud from an aquaculture farm in Zhoushan China

机译:来自中国舟山水产养殖场的菲律宾芦苇凝集泥浆中有希望的天然生物絮凝剂资源中生物絮凝成分的微生物来源

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摘要

Ruditapes philippinarum conglutination mud (RPM) is a byproduct from the aquiculture of an important commercially bivalve mollusk R. philippinarum and has been recently reported as a promising natural bioflocculant resource. However the origin of bioflocculation components within RPM is still a pending doubt and impedes its effective exploitation. This study investigated the probability that RPM bioflocculation components originate from its associated microbes. RPM samples from an aquaculture farm in Zhoushan of China were applied to characterize its microbial community structure, screen associated bioflocculant-producing strains, and explore the homology between extracellular polysaccharides (EPS) from bioflocculant-producing isolates and RPM flocculation components. Results showed that RPM exhibited high bacterial biodiversity, with Proteobacteria, Bacteroidetes and Actinobacteria as the most abundant phyla; hgcI_clade, CL500_29_marine_group, Fusibacter, MWH_UniP1_aquatic_group and Arcobacter as the dominant genera. Fourteen highly efficient bioflocculant-producing strains were screened and phylogenetically identified as Pseudoalteromonas sp. (5), Psychrobacter sp. (3), Halomonas sp. (2), Albirhodobacter sp. (1), Celeribacter sp. (1), Kocuria sp. (1) and Bacillus sp. (1), all of which except Bacillus sp. were reported for the first time for their excellent flocculation capability. Furthermore, EPS from the bioflocculant-producing strains exhibited highly similar monosaccharide composition to the reported flocculation-effective RPM polysaccharides. On the other hand, the existence of fungi in RPM was rare and showed no flocculation functionality. Findings from Zhoushan RPM strongly supported that RPM flocculation components were of bacterial origin and make RPM reproduction possible by fermentation approach.
机译:菲律宾蛤仔(Ruditapes philippinarum)凝集泥(RPM)是重要的商业双壳软体动物菲律宾蛤(R.philippinarum)的水产养殖副产品,最近已被报道为一种有前途的天然生物絮凝剂资源。然而,RPM中生物絮凝成分的起源仍然是一个悬而未决的问题,并阻碍了其有效利用。这项研究调查了RPM生物絮凝成分源自其相关微生物的可能性。来自中国舟山市水产养殖场的RPM样品用于表征其微生物群落结构,筛选相关的生物絮凝剂生产菌株,并探索生物絮凝剂分离株的细胞外多糖(EPS)与RPM絮凝成分之间的同源性。结果表明,RPM表现出较高的细菌生物多样性,其中以Proteobacteria,Bacteroidetes和Actinobacteria为最多。 hgcI_clade,CL500_29_marine_group,Fusibacter,MWH_UniP1_aquatic_group和Arcobacter为主要属。筛选了十四个高效的生物絮凝剂生产菌株,并在系统发育上鉴定为假单孢菌。 (5),Psychrobacter sp.。 (3),盐单胞菌。 (2),Albirhodobacter sp.。 (1),Celeribacter sp.。 (1),Kocuria sp。 (1)和芽孢杆菌(1),除芽孢杆菌属(Bacillus sp。)以外的全部。首次报道了其出色的絮凝能力。此外,来自产生生物絮凝剂的菌株的EPS表现出与报道的絮凝有效RPM多糖高度相似的单糖组成。另一方面,RPM中真菌的存在非常罕见,并且没有絮凝功能。舟山RPM的发现强烈支持RPM絮凝成分是细菌来源的,并通过发酵方法使RPM繁殖成为可能。

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