首页> 外文期刊>Science of the total environment >Microbial communities of polyhydroxyalkanoate (PHA)-based biodegradable composites plastisphere and of surrounding environmental matrix: a comparison between marine (seabed) and coastal sediments (dune sand) over a long-time scale
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Microbial communities of polyhydroxyalkanoate (PHA)-based biodegradable composites plastisphere and of surrounding environmental matrix: a comparison between marine (seabed) and coastal sediments (dune sand) over a long-time scale

机译:聚羟基烷烃(PHA)的微生物群落 - 基于可生物降解的复合材料的塑体裂隙和周围环境基质:在长期规模上的海洋(海床)和沿海沉积物(沙丘沙滩)的比较

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摘要

Most researches on the plastisphere in coastal environments deal with plastics floating in seawater. Comparatively smaller attention has been devoted to the plastisphere of plastics buried in marine sediments, and very little is known on that of plastics on coastal sand dunes. Yet, limited information is available on the impact of plastics, especially biodegradable plastics, on microbial organisms in their surroundings. Nevertheless, a large amount of plastics sink on the seabed or is deposited on beach-dune systems. We investigated the succession of plastisphere microbial community on two biodegradable composites based on poly(hydroxybutyrate-co-hydroxyvalerate) (PHBV) and seagrass fibres (PHBV/PO), buried in seabed and dune sediments over a 27 months period in mesocosm. PHBV is regarded as a valuable alternative to conventional plastics and PHBV/PO has recently been designed for applications in coastal habitat restoration. We also examined the degradation rate and impact of these plastics on the microbial communities of surrounding sediments. Microbial communities of the surface of PHBV and PHBV/PO in seabed and dune sand differ from those of surrounding sediments, displaying a lower richness. Plastics colonization occurs largely from bacteria present in surrounding sediments, although the contribution from the water column bacterial pool could be not negligible for plastics in the seabed. No significant differences were detected between the communities of the two plastics and no significant impact of plastics on microbial community of the surrounding sediments was detected. The exceptional long duration of this study allowed to gain information on the succession of a plastisphere community over a previously unexplored time scale. Succession appears highly dynamic in dune sand even after two years, while the community structure in seabed seems to reach stability after one year. These findings highlight the importance of performing long-term studies when trying to characterize composition and dynamics of plastisphere bacterial communities.
机译:大多数关于沿海环境中的塑料裂缝的研究应对海水漂浮的塑料。相对较小的注意力已经致力于埋藏在海洋沉积物中的塑料的塑料体育席,并且沿海沙丘上的塑料众所周知。然而,有限的信息可用于塑料,特别是可生物降解的塑料,对周围的微生物生物的影响。尽管如此,大量的塑料水槽在海床上或沉积在海滩沙丘系统上。我们研究了基于聚(羟基丁酸酯 - 羟基羟基戊羟基)(PHBV)和海底沉积物的两种可生物降解的复合材料的两种可生物降解复合材料的继承,在Mesocosm的27个月内埋入海底和沙丘沉积物。 PHBV被认为是传统塑料的有价值的替代品,最近专为沿海栖息地恢复的应用而设计的PHBV / PA。我们还研究了这些塑料对周围沉积物的微生物群落的降解率和影响。海底和沙丘沙子的PHBV和PHBV / PO表面的微生物群落不同于周围沉积物,呈现较低的丰富性。塑料定植在很大程度上来自周围沉积物中存在的细菌,尽管海底水柱细菌池的贡献可能不会忽略塑料。在两种塑料的社区之间未检测到显着差异,并且检测到塑料对周围沉积物的微生物群落的显着影响。本研究的特殊长期持续时间允许通过以前未开发的时间尺度来获取有关塑体群众社区的连续的信息。即使经过两年后,继承在沙丘沙子中显得高度动态,而一年后海底的社区结构似乎达到稳定。这些发现突出了在尝试表征血浆细菌社区的组成和动态时进行长期研究的重要性。

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