Fungal removal of cyanotoxins in constructed wetlands: The forgotten degraders

肝毒素 蓝毒素 芦苇 微囊藻毒素 生物 中观 微囊藻毒素 微生物生态学 生态学 环境化学 湿地 蓝藻 细菌 化学 营养物 遗传学
作者
Ángela González Álvarez,Alba Martinezi Quer,Lea Ellegaard‐Jensen,Rumakanta Sapkota,Pedro N. Carvalho,Anders Johansen
出处
期刊:Science of The Total Environment [Elsevier BV]
卷期号:: 172590-172590 被引量:1
标识
DOI:10.1016/j.scitotenv.2024.172590
摘要

Harmful cyanobacterial blooms have increased globally, releasing hazardous cyanotoxins that threaten the safety of water resources. Constructed wetlands (CWs) are a nature-based and low-cost solution to purify and remove cyanotoxins from water. However, bio-mechanistic understanding of the biotransformation processes expected to drive cyanotoxin removal in such systems is poor, and primarily focused on bacteria. Thus, the present study aimed at exploring the fungal contribution to microcystin-LR and cylindrospermopsin biodegradation in CWs. Based on CW mesocosms, two experimental approaches were taken: a) amplicon sequencing studies were conducted to investigate the involvement of the fungal community; and b) CW fungal isolates were tested for their microcystin-LR and cylindrospermopsin degradation capabilities. The data uncovered effects of seasonality (spring or summer), cyanotoxin exposure, vegetation (unplanted, Juncus effusus or Phragmites australis) and substratum (sand or gravel) on the fungal community structure. Additionally, the arbuscular mycorrhizal fungus Rhizophagus and the endophyte Myrmecridium showed positive correlations with cyanotoxin removal. Fungal isolates revealed microcystin-LR-removal potentials of approximately 25 % in in vitro biodegradation experiments, while the extracellular chemical fingerprint of the cultures suggested a potential intracellular metabolization. The results from this study may help us understand the fungal contribution to cyanotoxin removal, as well as their ecology in CWs.

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