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一株新鉴定的弗氏假单胞菌(Pseudomonas fragi YB2)的杀藻特性:杀藻化合物及作用。

A newly identified algicidal bacterium of Pseudomonas fragi YB2: Algicidal compounds and effects.

机构信息

School of Environment, Northeast Normal University, Changchun 130117, Jilin, PR China.

出版信息

J Hazard Mater. 2024 Oct 5;478:135490. doi: 10.1016/j.jhazmat.2024.135490. Epub 2024 Aug 12.

Abstract

Harmful algal bloom (HAB) is an unresolved existing problem worldwide. Here, we reported a novel algicidal bacterium, Pseudomonas fragi YB2, capable of lysing multiple algal species. To Chlorella vulgaris, YB2 exhibited a maximum algicidal rate of 95.02 % at 120 h. The uniqueness of YB2 lies in its ability to self-produce three algicidal compounds: 2-methyl-1, 3-cyclohexanedione (2-MECHD), N-phenyl-2-naphthylamine, and cyclo (Pro-Leu). The algicidal properties of 2-MECHD have not been previously reported. YB2 significantly affected the chloroplast and mitochondrion, thus decreasing in chlorophyll a by 4.74 times for 120 h and succinate dehydrogenase activity by 103 times for 36 h. These physiological damages disrupted reactive oxygen species and Ca homeostasis at the cellular level, increasing cytosolic superoxide dismutase (23 %), catalase (35 %), and Ca influx. Additionally, the disruption of Ca homeostasis rarely reported in algicidal bacteria-algae interaction was observed using the non-invasive micro-test technology. We proposed a putative algicidal mechanism based on the algicidal outcomes and physiological algicidal effects and explored the potential of YB2 through an algicidal simulation test. Overall, this study is the first to report the algicidal bacterium P. fragi and identify a novel algicidal compound, 2-MECHD, providing new insights and a potent microbial resource for the biocontrol of HAB.

摘要

有害藻华(HAB)是全球尚未解决的一个现存问题。在这里,我们报告了一种新型的杀藻细菌,恶臭假单胞菌 YB2,它能够裂解多种藻类。在 120 小时时,对小球藻,YB2 表现出 95.02%的最大杀藻率。YB2 的独特之处在于它能够自行产生三种杀藻化合物:2-甲基-1,3-环己二酮(2-MECHD)、N-苯基-2-萘胺和环(脯氨酸-亮氨酸)。2-MECHD 的杀藻特性以前尚未报道过。YB2 显著影响叶绿体和线粒体,从而使叶绿素 a 在 120 小时内减少 4.74 倍,琥珀酸脱氢酶活性在 36 小时内减少 103 倍。这些生理损伤破坏了细胞水平的活性氧和 Ca 稳态,使细胞质中超氧化物歧化酶(23%)、过氧化氢酶(35%)和 Ca 内流增加。此外,在杀藻细菌-藻类相互作用中很少观察到 Ca 稳态的破坏,这是使用非侵入性微测试技术观察到的。我们根据杀藻结果和生理杀藻作用提出了一种假定的杀藻机制,并通过杀藻模拟试验探索了 YB2 的潜力。总的来说,这项研究首次报道了杀藻细菌恶臭假单胞菌,并鉴定了一种新型杀藻化合物 2-MECHD,为 HAB 的生物防治提供了新的见解和有效的微生物资源。

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