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不同种类海洋微藻及其群落对渔具衍生微塑料的响应。

Responses of different species of marine microalgae and their community to gear-derived microplastics.

作者信息

Wang Meng, Jiang Shiyang, Tan Hongmei, Wang Hao, Wang Jianjun, Song Ke, Xu Dongfang, Zhang Bowen, Liu Zhuomiao, Liu Xia, Dai Yanhui, Yue Tongtao, Zhao Jian

机构信息

Frontiers Science Center for Deep Ocean Multispheres and Earth System, Institute of Coastal Environmental Pollution Control, Key Laboratory of Marine Environment and Ecology, Ocean University of China, Qingdao 266100, China; Laboratory for Marine Ecology and Environmental Science, Qingdao Marine Science and Technology Center, Qingdao 266237, China.

Frontiers Science Center for Deep Ocean Multispheres and Earth System, Institute of Coastal Environmental Pollution Control, Key Laboratory of Marine Environment and Ecology, Ocean University of China, Qingdao 266100, China.

出版信息

Water Res. 2025 Aug 1;281:123528. doi: 10.1016/j.watres.2025.123528. Epub 2025 Mar 21.

Abstract

The impact of gear-derived microplastics (MPs) on microalgal community stability is unknown. In this work, three types of gear-derived MPs were obtained from floats, pallets, and tires. After exposure to individual microalgal species (Phaeodactylum tricornutum, Chaetoceros curvisetus, Chlorella vulgaris, Isochrysis galbana), small-sized MPs (22 μm) exhibited stronger toxicity than large-sized MPs (135 μm), and the toxicity was MPs concentration independent. The three MPs (1 mg/L) significantly inhibited the growth of P. trichodinium, C. curvisetus and I. galbana. P. tricornutum was the most sensitive species, and the MPs decreased its chl a content, increased ROS level and reduced membrane integrity. Strong heteroaggregation with MPs is a cause of the observed toxicity. Furthermore, algal community was constructed using these four algal species, and P. tricornutum became the dominant species after community stability. After 96-h exposure to small-sized MPs at all the tested concentrations, the proportion of P. tricornutum highly decreased, thus increasing community stability and diversity maintenance. Photo-aging (20 days) further decreased algal number in the community from 16.54 % (original MPs) to 25.12 % (photo-aged MPs), while the Shannon diversity index increased from 0.93 to 0.99. The introduction of harmful algae (Alexandrium tamarense) decreased total algal number in algal community by 45.10 %, and led to the replacement of dominant species to C. vulgaris. Interestingly, algal number after the exposure of MPs and aged MPs recovered by 7.59 % and 14.71 %, respectively. This work provides useful information on the risk of gear-derived MPs to microalgal community in marine environments (especially mariculture areas).

摘要

渔具来源的微塑料(MPs)对微藻群落稳定性的影响尚不清楚。在这项工作中,从浮标、托盘和轮胎中获取了三种类型的渔具来源微塑料。在暴露于单一微藻物种(三角褐指藻、弯曲角毛藻、普通小球藻、等鞭金藻)后,小尺寸微塑料(22μm)比大尺寸微塑料(135μm)表现出更强的毒性,且毒性与微塑料浓度无关。三种微塑料(1mg/L)显著抑制了三角褐指藻、弯曲角毛藻和等鞭金藻的生长。三角褐指藻是最敏感的物种,微塑料降低了其叶绿素a含量,提高了活性氧水平并降低了膜完整性。与微塑料的强烈异质聚集是观察到的毒性的一个原因。此外,使用这四种藻类构建了藻类群落,群落稳定后三角褐指藻成为优势物种。在所有测试浓度下暴露于小尺寸微塑料96小时后,三角褐指藻的比例大幅下降,从而提高了群落稳定性和多样性维持能力。光老化(20天)进一步使群落中的藻类数量从16.54%(原始微塑料)降至25.12%(光老化微塑料),而香农多样性指数从0.93增加到0.99。引入有害藻类(塔玛亚历山大藻)使藻类群落中的总藻类数量减少了45.10%,并导致优势物种被普通小球藻取代。有趣的是,暴露于微塑料和老化微塑料后的藻类数量分别恢复了7.59%和14.71%。这项工作提供了关于渔具来源微塑料对海洋环境(特别是海水养殖区)中微藻群落风险的有用信息。

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