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通过用源自假丝酵母属酵母菌株的生物表面活性剂甘露糖赤藓糖醇脂处理来控制可生物降解聚合物的酶促降解。

Control of enzymatic degradation of biodegradable polymers by treatment with biosurfactants, mannosylerythritol lipids, derived from Pseudozyma spp. yeast strains.

作者信息

Fukuoka Tokuma, Shinozaki Yukiko, Tsuchiya Wataru, Suzuki Ken, Watanabe Takashi, Yamazaki Toshimasa, Kitamoto Dai, Kitamoto Hiroko

机构信息

Research Institute for Sustainable Chemistry, National Institute of Advanced Industrial Science and Technology (AIST), 1-1-1 Higashi, Tsukuba, Ibaraki, 305-8565, Japan.

National Institute for Agro-Environmental Sciences (NIAES), 3-1-3 Kan-nondai, Tsukuba, Ibaraki, 305-8604, JAPAN.

出版信息

Appl Microbiol Biotechnol. 2016 Feb;100(4):1733-1741. doi: 10.1007/s00253-015-7068-1. Epub 2015 Oct 28.

Abstract

Cutinase-like esterase from the yeasts Pseudozyma antarctica (PaE) shows strong degradation activity in an agricultural biodegradable plastic (BP) model of mulch films composed of poly(butylene succinate-co-adipate) (PBSA). P. antarctica is known to abundantly produce a glycolipid biosurfactant, mannosylerythritol lipid (MEL). Here, the effects of MEL on PaE-catalyzed degradation of BPs were investigated. Based on PBSA dispersion solution, the degradation of PBSA particles by PaE was inhibited in the presence of MEL. MEL behavior on BP substrates was monitored by surface plasmon resonance (SPR) using a sensor chip coated with polymer films. The positive SPR signal shift indicated that MEL readily adsorbed and spread onto the surface of a BP film. The amount of BP degradation by PaE was monitored based on the negative SPR signal shift and was decreased 1.7-fold by MEL pretreatment. Furthermore, the shape of PBSA mulch films in PaE-containing solution was maintained with MEL pretreatment, whereas untreated films were almost completely degraded and dissolved. These results suggest that MEL covering the surface of BP film inhibits adsorption of PaE and PaE-catalyzed degradation of BPs. We applied the above results to control the microbial degradation of BP mulch films. MEL pretreatment significantly inhibited BP mulch film degradation by both PaE solution and BP-degradable microorganism. Moreover, the degradation of these films was recovered after removal of the coated MEL by ethanol treatment. These results demonstrate that the biodegradation of BP films can be readily and reversibly controlled by a physical approach using MEL.

摘要

来自南极假丝酵母(PaE)的角质酶样酯酶在由聚(丁二酸丁二醇酯 - 共 - 己二酸酯)(PBSA)组成的农业可生物降解塑料(BP)地膜模型中表现出很强的降解活性。已知南极假丝酵母大量产生一种糖脂生物表面活性剂,甘露糖赤藓糖醇脂(MEL)。在此,研究了MEL对PaE催化的BP降解的影响。基于PBSA分散溶液,在MEL存在下,PaE对PBSA颗粒的降解受到抑制。使用涂有聚合物膜的传感器芯片通过表面等离子体共振(SPR)监测MEL在BP底物上的行为。正的SPR信号偏移表明MEL很容易吸附并铺展在地膜表面。基于负的SPR信号偏移监测PaE对BP的降解量,MEL预处理使其降低了1.7倍。此外,MEL预处理可使含PaE溶液中的PBSA地膜形状得以保持,而未经处理的地膜几乎完全降解并溶解。这些结果表明,覆盖在地膜表面的MEL会抑制PaE的吸附以及PaE催化的BP降解。我们将上述结果应用于控制BP地膜的微生物降解。MEL预处理显著抑制了PaE溶液和BP可降解微生物对BP地膜的降解。此外,通过乙醇处理去除包覆的MEL后,这些地膜的降解得以恢复。这些结果表明,使用MEL通过物理方法可以轻松且可逆地控制BP膜的生物降解。

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