首页> 外文期刊>Journal of applied microbiology >Cell surface hydrophobicity: a key component in the degradation of polyethylene succinate by Pseudomonas sp. AKS2.
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Cell surface hydrophobicity: a key component in the degradation of polyethylene succinate by Pseudomonas sp. AKS2.

机译:细胞表面疏水性:假单胞菌sp。降解琥珀酸聚乙烯的关键组成部分。 AKS2。

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摘要

Aim: Polyethylene succinate (PES) contains hydrolysable ester bonds that make it a potential substitute for polyethylene (PE) and polypropylene (PP). Towards bioremediation of PES, we have already reported that a new strain of Pseudomonas, Pseudomonas sp. AKS2, can efficiently degrade PES and hypothesized that cell surface hydrophobicity plays an important role in this degradation process. In this study, our efforts were targeted towards establishing a correlation between cell surface hydrophobicity and PES degradation. Methods and Results: We have manipulated cell surface hydrophobicity of AKS2 by varying concentrations of glucose and ammonium sulphate in the growth medium and subsequently examined the extent of PES degradation. We observed an increase in PES degradation by AKS2 with an increase in cell surface hydrophobicity. The increased surface hydrophobicity caused an enhanced biofilm formation on PES surface that resulted in better polymer degradation. Conclusion: The current study establishes a direct correlation between cell surface hydrophobicity of an organism and its potential to degrade a nonpolar polymer like PES. Significance and Impact of the Study: Cell surface hydrophobicity manipulation can be used as an important strategy to increase bioremediation of nonpolar polymer like PES.
机译:目的:琥珀酸聚乙烯酯(PES)包含可水解的酯键,使其可以替代聚乙烯(PE)和聚丙烯(PP)。关于PES的生物修复,我们已经报道了一种新的假单胞菌菌株,Pseudomonas sp。 AKS2可以有效降解PES,并假设细胞表面疏水性在该降解过程中起着重要作用。在这项研究中,我们的努力旨在建立细胞表面疏水性与PES降解之间的相关性。方法和结果:我们通过改变生长培养基中葡萄糖和硫酸铵的浓度来控制AKS2的细胞表面疏水性,然后研究PES降解的程度。我们观察到随着细胞表面疏水性的增加,AKS2引起的PES降解增加。增加的表面疏水性导致增强的PES表面生物膜形成,从而导致更好的聚合物降解。结论:当前的研究建立了生物体细胞表面疏水性与其降解非极性聚合物(如PES)的潜力之间的直接关联。研究的意义和影响:细胞表面疏水性操纵可用作增加非极性聚合物(如PES)生物修复的重要策略。

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