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Different co‐occurring bacteria enhance or decrease the growth of the microalga Nannochloropsis sp. CCAP211/78

机译:不同的共同发生的细菌增强或降低微藻Nannochloropsis sp的生长。 CCAP211 / 78.

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摘要

Marine photosynthetic microalgae are ubiquitously associated with bacteria in nature. However, the influence of these bacteria on algal cultures in bioreactors is still largely unknown. In this study, eighteen different bacterial strains were isolated from cultures of Nannochloropsis sp. CCAP211/78 in two outdoor pilot‐scale tubular photobioreactors. The majority of isolates was affiliated with the classes Alphaproteobacteria and Flavobacteriia. To assess the impact of the eighteen strains on the growth of Nannochloropsis sp. CCAP211/78, 24‐well plates coupled with custom‐made LED boxes were used to simultaneously compare replicate axenic microalgal cultures with addition of individual bacterial isolates. Co‐culturing of Nannochloropsis sp. CCAP211/78 with these strains demonstrated distinct responses, which shows that the technique we developed is an efficient method for screening the influence of harmful/beneficial bacteria. Two of the tested strains, namely a strain of Maritalea porphyrae (DMSP31) and a Labrenzia aggregata strain (YP26), significantly enhanced microalgal growth with a 14% and 12% increase of the chlorophyll concentration, respectively, whereas flavobacterial strain YP206 greatly inhibited the growth of the microalga with 28% reduction of the chlorophyll concentration. Our study suggests that algal production systems represent a ‘natural’ source to isolate and study microorganisms that can either benefit or harm algal cultures.
机译:海洋光合作用微藻与本质上的细菌普遍相关。然而,这些细菌对生物反应器中的藻类培养物的影响仍然很大程度上是未知的。在这项研究中,从Nannchloropsis sp的培养物中分离了18种不同的细菌菌株。 CCAP211 / 78在两个户外先导管状光学生成器的反应器。大多数分离株与类αα和黄杆菌隶属。评估十八株对Nannochloropsis Sp生长的影响。 CCAP211 / 78,24孔板与定制的LED盒联接,同时比较复制轴烯微藻培养,加入单独的细菌分离株。 Nannchloropsis sp的共同培养。具有这些菌株的CCAP211 / 78表明我们开发的技术是筛选有害/有益细菌影响的有效方法。两种测试的菌株,即Maritalea porphyrae(DMSP31)的菌株和鼠李氏菌菌株(YP26),显着增强了微藻生长,分别增加了叶绿素浓度的14%和12%,而黄芪菌株YP206大大抑制了微藻的生长,叶绿素浓度降低28%。我们的研究表明,藻类生产系统代表了一个“自然”来源,以孤立和研究可以有益或危害藻类培养的微生物。

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