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从反渗透废水中分离出的多极端耐受细菌:对废水管理的启示。

Poly-extremotolerant bacterium isolated from reverse osmosis reject: an implication toward waste water management.

机构信息

Central Salt and Marine Chemicals Research Institute, Council for Scientific and Industrial Research, Bhavnagar 364021, India.

出版信息

Folia Microbiol (Praha). 2010 Nov;55(6):614-20. doi: 10.1007/s12223-010-0100-z.

Abstract

We demonstrate the tolerance of bacterial strain SM2014 to various unsustainable conditions and suggest its implication in waste water management. Its sustainability to reverse osmosis pressure (2.1 MPa) during desalination, and survival percentage of 73 % under hyperbaric conditions (pressure tension of 3.1 MPa under absolute oxygen atmosphere) confirmed its pressure tolerance. The growth of this strain at pH 9 or 10 and at 60 °C alone or in combination revealed its unique physiology as poly-extremotolerant strain. As an adaptive mechanism, the ratio of saturated to unsaturated fatty acids changed with growth conditions. Under poly-extreme condition long chain saturated fatty acid (C₁₈:₀, C₁₆:₀, C₁₄:₀, C₁₂:₀) predominated at the expense of unsaturated fatty acids. The nucleotide BLAST of 16S rRNA gene sequence of strain SM2014 with the NCBI gene bank sequences showed its close identity to Bacillus licheniformis with a similarity match of 94 %. The secretion of industrially valuable enzymes proteinase, lipase and amylase under such harsh conditions further signified potential of this strain as a source of extremozymes. Its unique characteristics underscore its relevance in waste water management.

摘要

我们展示了细菌菌株 SM2014 对各种不可持续条件的耐受性,并提出了其在废水管理中的应用。它在海水淡化过程中能够耐受反渗透压力(2.1 MPa),在超高压条件下(绝对氧气环境下的压力为 3.1 MPa)的存活率为 73%,这证实了其耐压能力。该菌株在 pH 值为 9 或 10 以及在 60°C 下单独或组合生长的情况表明,它是一种独特的多极端耐受菌株。作为一种适应机制,饱和脂肪酸与不饱和脂肪酸的比例随生长条件而变化。在多极端条件下,长链饱和脂肪酸(C₁₈:₀、C₁₆:₀、C₁₄:₀、C₁₂:₀)占主导地位,而不饱和脂肪酸则减少。菌株 SM2014 的 16S rRNA 基因序列与 NCBI 基因库序列的核苷酸 BLAST 显示,它与地衣芽孢杆菌具有密切的同源性,相似度匹配为 94%。该菌株在如此恶劣的条件下分泌具有工业价值的蛋白酶、脂肪酶和淀粉酶,进一步证明了它作为极端酶源的潜力。其独特的特性强调了它在废水管理中的相关性。

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