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采用光合参数指示的敏感指标评价莠去津对淡水微藻小球藻的毒性。

To evaluate the toxicity of atrazine on the freshwater microalgae Chlorella sp. using sensitive indices indicated by photosynthetic parameters.

机构信息

College of Biological, Chemical Science and Engineering, Jiaxing University, Jiaxing, 314001, PR China.

School of Chemical and Material Engineering, Jiangnan University, Wuxi, 214122, PR China.

出版信息

Chemosphere. 2020 Apr;244:125514. doi: 10.1016/j.chemosphere.2019.125514. Epub 2019 Nov 29.

Abstract

Atrazine is a widely-applied herbicide used primarily to control weeds, which can persist in the ecosystem and exert potential toxicity to phytoplankton in the aquatic environment. In this study, acute toxicity of atrazine on microalgae Chlorella sp. was investigated with different initial cell densities (1 × 10 and 1 × 10 cells mL) and exposure periods (4 d and 8 d). Both growth rate and photosynthetic parameters of the microalgae in response of atrazine stress were determined to find out the sensitive indices and toxicological mechanisms. Because of the independence of initial cell density as well as the high sensitivity and reliability, the performance index PI was verified as the most convincing photosynthetic parameter for indicating IC of atrazine on Chlorella sp., being superior to the traditional parameters of growth rate and F/F. The IP amplitude (ΔF, fluorescence amplitude of the I-to-P-rise in the OJIP curve) was another sensitive biomarker to reflect atrazine stress. Results from chlorophyll fluorescence transient revealed that atrazine damaged the photosystem II (PS II) reaction center, suppressed the electron transport at the donor and receptor sides, and acted on the absorption, transfer, and utilization of light energy. Our results provide confirmatory references for understanding the toxicity and mechanisms of atrazine on freshwater microalgae.

摘要

莠去津是一种广泛应用的除草剂,主要用于控制杂草,可以在生态系统中持久存在,并对水生环境中的浮游植物产生潜在毒性。本研究采用不同初始细胞密度(1×10 和 1×10 个细胞 mL)和暴露时间(4 d 和 8 d),研究了莠去津对小球藻的急性毒性。测定了微藻对莠去津胁迫的生长速率和光合参数,以确定敏感指标和毒理学机制。由于初始细胞密度的独立性以及高灵敏度和可靠性,性能指数 PI 被验证为指示莠去津对小球藻 IC 的最有说服力的光合参数,优于传统的生长速率和 F/F 参数。IP 幅度(ΔF,OJIP 曲线中 I 到 P 上升的荧光幅度)是另一个敏感的生物标志物,用于反映莠去津胁迫。叶绿素荧光瞬变的结果表明,莠去津破坏了光系统 II(PS II)反应中心,抑制了供体和受体侧的电子传递,并作用于光能的吸收、传递和利用。我们的研究结果为了解莠去津对淡水微藻的毒性和机制提供了确证性参考。

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