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首页> 外文期刊>Journal of Hazardous Materials >New insights into the structure and function of the prokaryotic communities colonizing plastic debris collected in King George Island (Antarctica): Preliminary observations from two plastic fragments
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New insights into the structure and function of the prokaryotic communities colonizing plastic debris collected in King George Island (Antarctica): Preliminary observations from two plastic fragments

机译:新的见解,纳入乔治岛(南极洲)收集的原核杂志的结构和功能:两个塑料碎片的初步观察

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摘要

In Antarctic regions, the composition and metabolic activity of microbial assemblages associated with plastic debris ("plastisphere") are almost unknown. A macroplastic item from land (MaL, 30 cm) and a mesoplastic from the sea (MeS, 4 mm) were collected in Maxwell Bay (King George Island, South Shetland) and analyzed by Fourier transform infrared spectroscopy in attenuated total reflectance geometry (FTIR-ATR), which confirmed a polystyrene foam and a composite high-density polyethylene composition for MaL and MeS, respectively. The structure and function of the two plastic-associated prokaryotic communities were studied by complementary 16S ribosomal RNA gene clone libraries, total bacterioplankton and culturable heterotrophic bacterial counts, enzymatic activities of the whole community and enzymatic profiles of bacterial isolates. Results showed that Gamma- and Betaproteobacteria (31% and 28%, respectively) dominated in MeS, while Beta- and Alphaproteobacteria (21% and 13%, respectively) in MaL. Sequences related to oil degrading bacteria (Alcanivorax, Marinobacter) confirmed the known anthropogenic pressure in King George Island. This investigation on plasticassociated prokaryotic structure and function represents the first attempt to characterize the ecological role of plastisphere in this Antarctic region and provides the necessary background for future research on the significance of polymer type, surface characteristics and environmental conditions in shaping the plastisphere.
机译:在南极区域,与塑料碎片相关的微生物组合物(“Plastisphere”)的组成和代谢活性几乎未知。来自麦克斯韦湾(MES,4毫米)的土地(MAL,30厘米)和豆科泥(MES,4毫米)的宏观形状物品被收集在Maxwell Bay(南部驻地,南方驻地),并通过傅里叶变换红外光谱分析,在减振的总反射率几何形状(FTIR -ATR),其分别证实了用于MAL和MES的聚苯乙烯泡沫和复合高密度聚乙烯组合物。通过互补的16S核糖体RNA基因克隆文库,总噬菌体和培养的异养细菌计数,整个社区的酶活性和细菌分离株的酶促活性进行了两个塑料相关原核群体的结构和功能。结果表明,在MES中占主导地位的γ-和Betaproteobacteria(分别为31%和28%),而β-和α-和α-α-和α-分别在21%和13%)。与油脂有关的序列(Alcanivorax,Marinobacter)证实了乔治岛国王的已知的人为压力。这次对塑料大约治疗原核结构和功能的调查代表了第一次表征Plastisphere在该南极地区的生态作用,并为未来的聚合物类型,表面特征和环境条件的意义研究提供了必要的背景。

著录项

  • 来源
    《Journal of Hazardous Materials》 |2021年第15期|125586.1-125586.13|共13页
  • 作者单位

    Natl Res Council CNR Inst Biol Resources & Marine Biotechnol IRBIM Spianata San Raineri 86 I-98122 Messina Italy;

    Natl Res Council CNR Inst Polar Sci ISP Spianata San Raineri 86 I-98122 Messina Italy;

    Univ Siena Dept Phys Earth & Environm Sci Via Mattioli 4 I-53100 Siena Italy;

    Natl Res Council CNR Inst Biol Resources & Marine Biotechnol IRBIM Spianata San Raineri 86 I-98122 Messina Italy|Univ Messina Dept Chem Biol Pharmaceut & Environm Sci Viale Ferdinando Stagno DAlcontres 31 I-98166 Messina Italy;

    Univ Messina Dept Math & Comp Sci Phys Sci & Earth Sci Viale Ferdinando Stagno DAlcontres 31 I-98166 Messina Italy;

    Univ Messina Dept Math & Comp Sci Phys Sci & Earth Sci Viale Ferdinando Stagno DAlcontres 31 I-98166 Messina Italy;

    Univ Siena Dept Phys Earth & Environm Sci Via Mattioli 4 I-53100 Siena Italy;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Plastic pollution; Maritime Antarctica; FTIR-ATR; Prokaryotic community; Enzymatic profiles; Substrate nature;

    机译:塑料污染;海上南极;FTIR-ATR;原核群落;酶促谱;基础自然;

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