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啤酒废水和植物激素引发的协同处理策略对球型拟微球藻生物量和脂类积累的强化作用。

The enhanced biomass and lipid accumulation in Coccomyxa subellipsoidea with an integrated treatment strategy initiated by brewery effluent and phytohormones.

机构信息

Biological Engineering Department, School of Chemical Engineering, Xiangtan University, Xiangtan, 411105, People's Republic of China.

出版信息

World J Microbiol Biotechnol. 2018 Jan 12;34(2):25. doi: 10.1007/s11274-018-2408-9.

Abstract

Brewery effluent (BE) as an appreciable and sustainable resource presented new possibilities in low-cost algal biomass production, whereas the relatively low essential macronutrients hindered extensive applications as growth medium for microalgae cultivation. The objective of this study was to investigate the feasibility of an integrated treatment strategy initiated by BE coupling phytohormones in augmenting biomass and lipid accumulation in Coccomyxa subellipsoidea. Results revealed that BE coupling synthetic 1-naphthaleneacetic acid (NAA) accomplished the favorable lipid productivity of 481.76 mg/L/days, representing 6.80- to 9.71-fold more than that of single BE as well as standard Basal media. BE coupling NAA feeding also heightened the proportions of C16-C18 fatty acids (over 96%) and mono-unsaturated C18:1 (approximate 45%) which were prone to high-quality biofuels-making. Such profound lipids accumulation might be attributable to that BE coupling NAA treatment drove most of metabolic flux (i.e. acetyl-CoA) derived from TCA cycle and glycolysis flowing into lipid accumulation pathway. Concurrently, the complete removal of total nitrogen and total phosphorus by C. subellipsoidea with assistance of NAA were easily complied with the permissible dischargeable limits for BE. These present results strongly demonstrated that BE coupling NAA was a potential feeding strategy in boosting algal lipid productivity and further provided great possibilities in linking affordable algal biomass production with high-efficient biological contaminants removal.

摘要

啤酒废水(BE)作为一种具有重要意义且可持续的资源,为低成本藻类生物质生产带来了新的可能性,然而,其相对较低的必需大量营养素限制了其作为微藻培养生长介质的广泛应用。本研究旨在探讨通过 BE 与植物激素耦合的综合处理策略来提高球等鞭金藻生物质和脂质积累的可行性。结果表明,BE 与合成 1-萘乙酸(NAA)的耦合实现了 481.76 mg/L/d 的理想脂质生产力,比单一 BE 和标准基础培养基分别高出 6.80-9.71 倍。BE 与 NAA 共培养还提高了 C16-C18 脂肪酸(超过 96%)和单不饱和 C18:1(约 45%)的比例,这些脂肪酸易于制备高质量的生物燃料。这种显著的脂质积累可能归因于 BE 与 NAA 的共处理促使大多数来自三羧酸循环和糖酵解的代谢通量(即乙酰辅酶 A)流入脂质积累途径。同时,在 NAA 的协助下,球等鞭金藻能够完全去除总氮和总磷,这很容易符合 BE 的允许排放标准。这些结果有力地证明了 BE 与 NAA 共培养是一种提高藻类脂质生产力的潜在喂养策略,进一步为将负担得起的藻类生物质生产与高效的生物污染物去除联系起来提供了巨大的可能性。

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