College of Chemistry and Materials Science, Jinan University, 510632, Guangzhou, PR China.
School of Environment, Jinan University, 511443, Guangzhou, PR China.
Environ Pollut. 2021 Sep 1;284:117004. doi: 10.1016/j.envpol.2021.117004. Epub 2021 Mar 23.
Heterosigma akashiwo is a commonly found harmful microalgae, however, there are only few studies on its control using algicidal components particularly those identified from algicidal bacteria. In our previous study, ortho-tyrosine and urocanic acid identified from Bacillus sp. B1 showed a significantly high algicidal effect on H. akashiwo. The growth inhibition rates of H. akashiwo after 96 h of treatment with 300 μg/mL o-tyrosine and 500 μg/mL urocanic acid were 91.06% and 88.07%, respectively. Through non-destructive testing by Pulse Amplitude Modulation fluorometry and flow cytometer, the effects of o-tyrosine and urocanic acid on H. akashiwo PS II and physiological parameters (cell volume, mitochondrial membrane potential, and membrane permeability) were estimated. This study shows that o-tyrosine affected the photosynthesis system of H. akashiwo, decreased the mitochondrial membrane potential, and increased the membrane permeability of the algal cells. Treatment with urocanic acid decreased the mitochondrial membrane potential, resulting in the inhibition of algal cell growth and reproduction, but had little effect on membrane permeability and photosynthetic system. Our results may imply that when uridine degrades, surviving H. akashiwo cells may be reactivated. Therefore, o-tyrosine and urocanic acid have the potential to become new biological algicides, which can effectively control the growth of H. akashiwo.
赤潮异弯藻是一种常见的有害微藻,然而,目前针对其使用杀藻成分(尤其是从杀藻细菌中鉴定出的杀藻成分)进行控制的研究较少。在我们之前的研究中,从芽孢杆菌 B1 中鉴定出的邻酪氨酸和尿刊酸对赤潮异弯藻表现出很高的杀藻效果。在 300μg/mL 邻酪氨酸和 500μg/mL 尿刊酸处理 96 小时后,赤潮异弯藻的生长抑制率分别为 91.06%和 88.07%。通过脉冲幅度调制荧光法和流式细胞仪进行无损检测,评估了邻酪氨酸和尿刊酸对赤潮异弯藻 PS II 和生理参数(细胞体积、线粒体膜电位和膜通透性)的影响。本研究表明,邻酪氨酸影响赤潮异弯藻的光合作用系统,降低线粒体膜电位,增加藻细胞的膜通透性。尿刊酸处理降低了线粒体膜电位,从而抑制藻类细胞的生长和繁殖,但对膜通透性和光合作用系统影响较小。我们的结果可能意味着,当尿苷降解时,存活的赤潮异弯藻细胞可能会被重新激活。因此,邻酪氨酸和尿刊酸有可能成为新的生物杀藻剂,有效控制赤潮异弯藻的生长。