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首页> 外文期刊>Journal of Applied Phycology >Effect of light and temperature on biomass, photosynthesis and capsular polysaccharides in cultured phototrophic biofilms
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Effect of light and temperature on biomass, photosynthesis and capsular polysaccharides in cultured phototrophic biofilms

机译:光和温度对培养的光养生物膜中生物量,光合作用和荚膜多糖的影响

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摘要

Phototrophic biofilms seem to be suitable candidates for tertiary wastewater treatment due to their high uptake capacity for nutrients and other pollutants, also taking into account the time and cost savings derived from easy procedures for biomass harvesting. Biomass accrual, structure, and physiology of biofilms affect the efficiency of nutrient removal by its microbial community. Here, we construct a biofilm consisting of a cyanobacterium Synechocystis sp. and the green alga Chlorococcum sp. and determine the effect of combined variations of irradiance and temperature on the biofilm structure and function. The two species were isolated from phototrophic biofilms naturally developing in an Italian wastewater treatment plant and grown in a microcosm designed for biofilm investigations. Phototrophic biomass accumulation, percent species composition, photosynthetic response and the amount and composition of capsular polysaccharides (CPS), including anionic residues, are reported. The results showed that biofilm development required relatively moderate irradiances (60 mu mol photons m(-2) s(-1)) below which development was arrested. Both light and temperature had a strong effect on the composition of each species to the biofilm. The CPS compositions also changed with temperature, light and species composition. The CPS of the green-algal-dominated biofilm had the higher uronic acid content indicating a potential to exploit green algae in the treatment of waste contaminated with heavy metals. Given the knowledge of the response of certain species to light and temperature combinations, it may be possible to construct biofilms of known species and CPS composition to use them for specific applications.
机译:由于营养养分生物膜对养分和其他污染物的吸收能力强,并且考虑到因生物质收获的简便程序而节省的时间和成本,因此营养养分的生物膜似乎是适合第三级废水处理的候选材料。生物膜的生物质累积,结构和生理会影响其微生物群落去除营养的效率。在这里,我们构建了由蓝藻集胞藻sp。组成的生物膜。和绿藻Chlorococcum sp。并确定辐照度和温度的综合变化对生物膜结构和功能的影响。这两个物种是从在意大利废水处理厂中自然发育的光养生物膜中分离出来的,并在为生物膜研究设计的缩影中生长。报告了光养生物量的积累,物种组成百分比,光合作用响应以及荚膜多糖(CPS)的数量和组成,包括阴离子残基。结果表明,生物膜的发育需要相对中等的辐照度(60μmol光子m(-2)s(-1)),低于该辐照度则被阻止。光和温度对生物膜上每个物种的组成都有很强的影响。 CPS组成也随温度,光照和物质组成而变化。绿藻为主的生物膜的CPS具有较高的糖醛酸含量,这表明在处理重金属污染的废物中可能会利用绿藻。在了解某些物种对光和温度组合的响应的知识后,有可能构建已知物种和CPS组成的生物膜以将其用于特定应用。

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