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Molecular Characterization of the Bacterial Community in Biofilms for Degradation of Poly(3-Hydroxybutyrate-co-3-Hydroxyhexanoate) Films in Seawater

机译:降解海水中聚(3-羟基丁酸酯-co-3-羟基己酸)膜的生物膜中细菌群落的分子表征

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摘要

Microplastics are fragmented pieces of plastic in marine environments, and have become a serious environmental issue. However, the dynamics of the biodegradation of plastic in marine environments have not yet been elucidated in detail. Polyhydroxyalkanoates (PHAs) are biodegradable polymers that are synthesized by a wide range of microorganisms. One of the PHA derivatives, poly(3-hydroxybutyrate-co-3-hydroxyhexanoate) (PHBH) has flexible material properties and a low melting temperature. After an incubation in seawater samples, a significant amount of biofilms were observed on the surfaces of PHBH films, and some PHBH films were mostly or partially degraded. In the biofilms that formed on the surfaces of unbroken PHBH films, the most dominant operational taxonomic units (OTUs) showed high similarity with the genus Glaciecola in the family Alteromonadaceae. On the other hand, the dominant OTUs in the biofilms that formed on the surfaces of broken PHBH films were assigned to the families Rhodobacteraceae, Rhodospirillaceae, and Oceanospirillaceae, and the genus Glaciecola mostly disappeared. The bacterial community in the biofilms on PHBH films was assumed to have dynamically changed according to the progression of degradation. Approximately 50 colonies were isolated from the biofilm samples that formed on the PHBH films and their PHBH-degrading activities were assessed. Two out of three PHBH-degrading isolates showed high similarities to Glaciecola lipolytica and Aestuariibacter halophilus in the family Alteromonadaceae. These results suggest that bacterial strains belonging to the family Alteromonadaceae function as the principal PHBH-degrading bacteria in these biofilms.
机译:微塑料是海洋环境中的塑料碎片,已经成为一个严重的环境问题。但是,尚未详细阐明海洋环境中塑料的生物降解动力学。聚羟基链烷酸酯(PHA)是由多种微生物合成的可生物降解的聚合物。 PHA衍生物之一,聚(3-羟基丁酸酯-co-3-羟基己酸酯)(PHBH)具有柔韧性的材料特性和较低的熔融温度。在海水样品中孵育后,在PHBH膜的表面上观察到大量生物膜,并且某些PHBH膜大部分或部分降解。在完整的PHBH膜表面形成的生物膜中,最主要的操作分类单位(OTU)与Alteromonadaceae属的Glaciecola属具有高度相似性。另一方面,在破裂的PHBH膜表面上形成的生物膜中的主要OTU被分配到了红细菌科,红螺旋藻科和大洋螺旋藻科,而Glaciecola属大部分消失了。假设PHBH膜上生物膜中的细菌群落根据降解的进程而动态变化。从在PHBH膜上形成的生物膜样品中分离出大约50个菌落,并评估了它们的PHBH降解活性。降解PHBH的三个分离株中有两个显示与脂褐藻和嗜盐伊氏杆菌在Alteromonadaceae家族中高度相似。这些结果表明,属于Alteromonadaceae科的细菌菌株在这些生物膜中起主要的PHBH降解细菌的作用。

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