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沉积物及相关微塑料的可培养真菌群落:从港口到海洋保护区的比较研究

The Culturable Mycobiota of Sediments and Associated Microplastics: From a Harbor to a Marine Protected Area, a Comparative Study.

作者信息

Florio Furno Matteo, Poli Anna, Ferrero Davide, Tardelli Federica, Manzini Chiara, Oliva Matteo, Pretti Carlo, Campani Tommaso, Casini Silvia, Fossi Maria Cristina, Varese Giovanna Cristina, Prigione Valeria

机构信息

Department of Life Sciences and Systems Biology, University of Torino, Mycotheca Universitatis Taurinensis (MUT), Viale Mattioli 25, 10125 Torino, Italy.

Interuniversity Consortium of Marine Biology and Applied Ecology "G. Bacci" (CIBM), Viale N. Sauro 4, 57128 Livorno, Italy.

出版信息

J Fungi (Basel). 2022 Aug 31;8(9):927. doi: 10.3390/jof8090927.

Abstract

Fungi are an essential component of marine ecosystems, although little is known about their global distribution and underwater diversity, especially in sediments. Microplastics (MPs) are widespread contaminants worldwide and threaten the organisms present in the oceans. In this study, we investigated the fungal abundance and diversity in sediments, as well as the MPs, of three sites with different anthropogenic impacts in the Mediterranean Sea: the harbor of Livorno, the marine protected area "Secche della Meloria"; and an intermediate point, respectively. A total of 1526 isolates were cultured and identified using a polyphasic approach. For many of the fungal species this is the first record in a marine environment. A comparison with the mycobiota associated with the sediments and MPs underlined a "substrate specificity", highlighting the complexity of MP-associated fungal assemblages, potentially leading to altered microbial activities and hence changes in ecosystem functions. A further driving force that acts on the fungal communities associated with sediments and MPs is sampling sites with different anthropogenic impacts.

摘要

真菌是海洋生态系统的重要组成部分,尽管人们对它们的全球分布和水下多样性知之甚少,尤其是在沉积物中。微塑料是全球范围内广泛存在的污染物,威胁着海洋中的生物。在本研究中,我们调查了地中海三个受不同人为影响的地点的沉积物中的真菌丰度和多样性以及微塑料情况,这三个地点分别是里窝那港、“梅洛里亚礁群”海洋保护区以及一个中间点。总共培养了1526个分离株,并采用多相方法进行鉴定。对于许多真菌物种来说,这是在海洋环境中的首次记录。与沉积物和微塑料相关的真菌群落的比较强调了“底物特异性”,突出了与微塑料相关的真菌组合的复杂性,这可能导致微生物活动改变,进而导致生态系统功能变化。作用于与沉积物和微塑料相关的真菌群落的另一个驱动力是具有不同人为影响的采样地点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2905/9501098/f45f7a79b5a8/jof-08-00927-g001.jpg

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