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抑制微囊藻水华的生物技术方法:见解与挑战

Biotechnological approaches for suppressing Microcystis blooms: insights and challenges.

作者信息

Kang Mingyeong, Jeong Seonah, Ko So-Ra, Kim Min-Seong, Ahn Chi-Yong

机构信息

Cell Factory Research Center, Korea Research Institute of Bioscience and Biotechnology (KRIBB), 125 Gwahak-Ro, Yuseong-Gu, Daejeon, 34141, Republic of Korea.

Department of Environmental Biotechnology, KRIBB School of Biotechnology, University of Science and Technology (UST), 217 Gajeong-Ro, Yuseong-Gu, Daejeon, 34113, Republic of Korea.

出版信息

Appl Microbiol Biotechnol. 2024 Sep 16;108(1):466. doi: 10.1007/s00253-024-13260-w.

Abstract

Cyanobacterial harmful algal blooms, particularly those dominated by Microcystis, pose significant ecological and health risks worldwide. This review provides an overview of the latest advances in biotechnological approaches for mitigating Microcystis blooms, focusing on cyanobactericidal bacteria, fungi, eukaryotic microalgae, zooplankton, aquatic plants, and cyanophages. Recently, promising results have been obtained using cyanobactericidal bacteria: not through the inoculation of cultured bacteria, but rather by nurturing those already present in the periphyton or biofilms of aquatic plants. Fungi and eukaryotic microalgae also exhibit algicidal properties; however, their practical applications still face challenges. Zooplankton grazing on Microcystis can improve water quality, but hurdles exist because of the colonial form and toxin production of Microcystis. Aquatic plants control blooms through allelopathy and nutrient absorption. Although cyanophages hold promise for Microcystis control, their strain-specificity hinders widespread use. Despite successful laboratory validation, field applications of biological methods are limited. Future research should leverage advanced molecular and bioinformatic techniques to understand microbial interactions during blooms and offer insights into innovative control strategies. Despite progress, the efficacy of biological methods under field conditions requires further verification, emphasizing the importance of integrating advanced multi-meta-omics techniques with practical applications to address the challenges posed by Microcystis blooms. KEY POINTS: • A diverse range of biotechnological methods is presented for suppressing Microcystis blooms. • Efficacy in laboratory experiments needs to be proved further in field applications. • Multi-meta-omics techniques offer novel insights into Microcystis dynamics and interactions.

摘要

蓝藻有害藻华,尤其是那些以微囊藻为主的藻华,在全球范围内构成了重大的生态和健康风险。本综述概述了减轻微囊藻藻华的生物技术方法的最新进展,重点关注杀藻细菌、真菌、真核微藻、浮游动物、水生植物和噬藻体。最近,使用杀藻细菌已取得了有前景的成果:不是通过接种培养的细菌,而是通过培育水生植物周丛生物或生物膜中已有的细菌。真菌和真核微藻也具有杀藻特性;然而,它们的实际应用仍面临挑战。以微囊藻为食的浮游动物可以改善水质,但由于微囊藻的群体形态和毒素产生而存在障碍。水生植物通过化感作用和养分吸收来控制藻华。尽管噬藻体有望用于控制微囊藻,但它们的菌株特异性阻碍了其广泛应用。尽管在实验室验证中取得了成功,但生物方法的现场应用仍然有限。未来的研究应利用先进的分子和生物信息学技术来了解藻华期间的微生物相互作用,并为创新的控制策略提供见解。尽管取得了进展,但生物方法在田间条件下的有效性仍需进一步验证,这强调了将先进的多组学技术与实际应用相结合以应对微囊藻藻华带来的挑战的重要性。要点:• 提出了多种抑制微囊藻藻华的生物技术方法。• 实验室实验中的有效性需要在现场应用中进一步证明。• 多组学技术为微囊藻动态和相互作用提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/34a1/11405451/2d9bbcfb9dc7/253_2024_13260_Fig1_HTML.jpg

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