Mechanistic insights into the effects of diuron exposure on Alexandrium pacificum

DCMU公司 生物 海水养殖 水华 蓝藻 光合作用 甲藻 麻痹性贝类中毒 光系统II 贝类 植物 生态学 水生动物 浮游植物 渔业 细菌 水产养殖 营养物 遗传学
作者
Dan Huang,Cai-Qin Cheng,Jiangbing Qiu,Yun Huang,Haoyun Zhang,Zhenhao Xu,Siwei Wu,Yi-Tong Huang,Jian Chen,Li‐Gong Zou,Wei‐Dong Yang,Xiaofei Zheng,Hongye Li,Da‐Wei Li
出处
期刊:Water Research [Elsevier]
卷期号:250: 120987-120987 被引量:10
标识
DOI:10.1016/j.watres.2023.120987
摘要

Diuron (N-(3,4-dichlorophenyl)-N,N‑dimethylurea, DCMU), a ureic herbicide, is extensively used in agriculture to boost crop productivity; however, its extensive application culminates in notable environmental pollution, especially in aquatic habitats. Therefore, the present study investigated the effect of diuron on the dinoflagellate Alexandrium pacificum, which is known to induce harmful algal blooms (HAB), and its potential to biodegrade DCMU. Following a four-day DCMU exposure, our results revealed that A. pacificum proficiently assimilated DCMU at concentrations of 0.05 mg/L and 0.1 mg/L in seawater, attaining a complete reduction (100 % efficiency) after 96 h for both concentrations. Moreover, evaluations of paralytic shellfish toxins content indicated that cells subjected to higher DCMU concentrations (0.1 mg/L) exhibited reductions of 73.4 %, 86.7 %, and 75 % in GTX1, GTX4, and NEO, respectively. Exposure to DCMU led to a notable decrease in A. pacificum's photosynthetic efficacy, accompanied by increased levels of reactive oxygen species (ROS) and suppressed cell growth, with a growth inhibition rate of 41.1 % at 72 h. Proteomic investigations pinpointed the diminished expression levels of specific proteins like SxtV and SxtW, linked to paralytic shellfish toxins (PSTs) synthesis, as well as key proteins associated with Photosystem II, namely PsbA, PsbD, PsbO, and PsbU. Conversely, proteins central to the cysteine biosynthesis pathways exhibited enhanced expression. In summary, our results preliminarily resolved the molecular mechanisms underlying the response of A. pacificum to DCMU and revealed that DCMU affected the synthesis of PSTs. Meanwhile, our data suggested that A. pacificum has great potential in scavenging DCMU.

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