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Association between algal productivity and phycosphere composition in an outdoor Chlorella sorokiniana reactor based on multiple longitudinal analyses

机译:基于多重纵向分析的室外小黄氏菌氏菌植物反应器中的藻类生产力与植物晶间组成的关系

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摘要

Microalgae as a biofuel source are of great interest. Bacterial phycosphere inhabitants of algal cultures are hypothesized to contribute to productivity. In this study, the bacterial composition of the phycosphere was determined over several production cycles in different growing seasons by 16S rRNA gene sequencing and identification. The diversity of the phycosphere increased with time during each individual reactor run, based on Faith’s phylogenetic diversity metric days post‐inoculation (  = 0.66,  Vampirovibrio chlorellavorus, an obligate predatory bacterium, was prevalent. Bacterial sequences assigned to the Rhizobiales, Betaproteobacteriales and Chitinophagales were positively associated with algal biomass productivity. Applications of the general biocide, benzalkonium chloride, to a subset of experiments intended to abate appeared to temporarily suppress phycosphere bacterial growth, however, there was no relationship between those bacterial taxa suppressed by benzalkonium chloride and their association with algal productivity, based on multinomial model correlations. Algal health was approximated using a model‐based metric, or the ‘Health Index’ that indicated a robust, positive relationship between fitness and presence of members belonging to the Burholderiaceae and Allorhizobium–Neorhizobium–Pararhizobium–Rhizobium clade. Bacterial community composition was linked to the efficiency of microalgal biomass production and algal health.
机译:微藻作为生物燃料来源非常兴趣。藻类培养的细菌植物植物居民被假设有助于生产率。在这项研究中,通过16S rRNA基因测序和鉴定,在不同生长季节的几种生产循环中测定了偶晶的细菌组成。在每种反应器运行期间,植入植晶的多样性随着接种后的发育(= 0.66,Vamproovibrio氯含量,普遍存在的捕食性细菌,普遍存在的基于信仰的系统发育多样性公原因。分配给Rhizobiales,Betaproteobagerial和几邻塔的细菌序列是与藻类生物质生产率正相关。一般杀生物剂,苯扎氯化铵,苯并氯化铵的临时实验暂时抑制植山间细菌生长的应用,但是,这些细菌氯化苯菌抑制的细菌分类基因群之间没有关系及其与基于多项模型相关性的藻类生产率。使用基于模型的公制或“健康指数”近似的藻类健康,或者“健康指数”,其表明属于毛建筑群和含有含量的成员的健身和存在性的稳健性,正面关系。 - 帕拉里Zobium-Rhizobium Clade。细菌群落组合物与微藻生物量产生和藻类健康的效率相关联。

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