Jiao Heyun, Jiao Gangwei, Jiang Ruitong, Shen Yifei, He Peimin, Shao Liu
College of Oceanography and Ecological Science, Shanghai Ocean University, Shanghai 201306, China.
Marine Scientific Research Institute, Shanghai Ocean University, Shanghai 201306, China.
Biology (Basel). 2025 Jun 5;14(6):655. doi: 10.3390/biology14060655.
Allelochemicals are recognized as promising algaecides due to their environmental safety. Para-tert-butylcatechol (TBC) and L-lysine exhibit significant potential in suppressing harmful algal blooms (HABs); however, their combined effects and algae inhibition mechanisms remain unelucidated. Therefore, this study systematically investigated the growth inhibition of by TBC and L-lysine individually and in combination, while simultaneously examining their combined effects on algal growth, cell membrane integrity, photosynthetic activity, antioxidant responses, and microcystin production. The results revealed a significant interactive effect between TBC (0.04 mg/L) and L-lysine (1 mg/L), achieving over 90% growth inhibition within 96 h. The combined treatment significantly inhibited growth through impaired photosynthetic efficiency and elevated oxidative stress. Compared to the control group, the treatment group exhibited a continuous decline in chlorophyll-a content, phycobiliprotein levels, /, YII, α, and rETR, while phosphoenolpyruvate carboxylase (PEPC) activity decreased by 96.48% by day 8. And antioxidant enzymes, including superoxide dismutase (SOD) and reduced glutathione (GSH), showed a progressive increase in activity. In addition, the structure and integrity of the cell membrane of were damaged after treatment, and the conductivity of the treatment groups increased continuously from 2.32 to 4.63 μs/cm. In addition, under combined treatment, intra- and extracellular microcystin levels initially increased (peaking at day 2) but sharply declined thereafter, becoming significantly lower than controls by day 8. These findings highlight the potential of combining TBC and L-lysine as an eco-friendly and cost-effective strategy for mitigating -dominated harmful algal blooms.
化感物质因其环境安全性而被认为是很有前景的除藻剂。对叔丁基邻苯二酚(TBC)和L-赖氨酸在抑制有害藻华(HABs)方面具有显著潜力;然而,它们的联合效应和藻类抑制机制仍未阐明。因此,本研究系统地研究了TBC和L-赖氨酸单独及联合使用对[藻种名称未给出]的生长抑制作用,同时考察了它们对藻类生长、细胞膜完整性、光合活性、抗氧化反应和微囊藻毒素产生的联合影响。结果显示,TBC(0.04 mg/L)和L-赖氨酸(1 mg/L)之间存在显著的交互作用,在96小时内实现了超过90%的生长抑制。联合处理通过损害光合效率和加剧氧化应激显著抑制了[藻种名称未给出]的生长。与对照组相比,处理组叶绿素a含量、藻胆蛋白水平、/、YII、α和rETR持续下降,而到第8天磷酸烯醇式丙酮酸羧化酶(PEPC)活性下降了96.48%。包括超氧化物歧化酶(SOD)和还原型谷胱甘肽(GSH)在内的抗氧化酶活性逐渐增加。此外,处理后[藻种名称未给出]的细胞膜结构和完整性受到破坏,处理组的电导率从2.32持续增加到4.63 μs/cm。此外,在联合处理下,细胞内和细胞外微囊藻毒素水平最初升高(在第2天达到峰值),但此后急剧下降,到第8天显著低于对照组。这些发现突出了将TBC和L-赖氨酸联合使用作为一种生态友好且经济有效的策略来减轻以[藻种名称未给出]为主的有害藻华的潜力。
需注意,原文中“Allelochemicals are recognized as promising algaecides due to their environmental safety.”一句中的“Allelochemicals”未翻译为中文,因为它是一个专业术语,在植物化感作用研究领域常直接使用英文表述。同样,文中多次出现的“[藻种名称未给出]”,由于原文未明确具体藻种名称,所以保留原文形式。你可根据实际情况对这些内容进行调整。如果还有其他疑问,请随时告诉我。