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接触新烟碱类农药会导致生理紊乱,并影响金鱼的颜色表现和觅食行为。

Exposure to neonicotinoid pesticides induces physiological disorders and affects color performance and foraging behavior in goldfish.

机构信息

Faculty of Science and Engineering, Ishinomaki Senshu Univerisity, Ishinomaki, Miyagi, Japan.

Research Center for Creative Partnerships, Ishinomaki Senshu University, Ishinomaki, Miyagi, Japan.

出版信息

Physiol Rep. 2024 Aug;12(15):e16138. doi: 10.14814/phy2.16138.

Abstract

We investigated the effects of neonicotinoid pesticides (NEOs) on the spontaneous swimming and foraging behavior, as well as the morphological and physiological changes of goldfish. Most fish reared in thiamethoxam (THM)-sprayed rice fields showed the scales easily peeled off, and increased ascites. Some individuals showed decreased bio-defense activity and low plasma Ca. Similar changes were found in the exposure test to THM (1.0 and 20.0 μg/L) and dinotefuran (1.2 and 23.5 μg/L). Next, the effects of a low concentration of THM (1.0 μg/L) on the spontaneous swimming and foraging behavior of fish were examined. Fish exposed to THM for 1 week became restless and had increased the swimming performance, especially under natural light, white LED lighting and blue LED lighting. Goldfish exposed to THM had also increased intake of shiny white beads under green LED illumination. These results indicate that the exposure to NEO, even for a short period and at low levels, not only suppressed bio-defense activities and metabolic abnormalities, but also stress response, the swimming and foraging behavior of the fish are likely to be significantly suffered.

摘要

我们研究了新烟碱类杀虫剂(NEOs)对金鱼自发游泳和觅食行为的影响,以及金鱼的形态和生理变化。在噻虫嗪(THM)喷洒稻田中饲养的大多数鱼类表现出鳞片容易剥落和腹水增加。一些个体表现出生物防御活性降低和低血浆 Ca。在暴露于 THM(1.0 和 20.0 μg/L)和呋虫胺(1.2 和 23.5 μg/L)的暴露试验中也发现了类似的变化。接下来,研究了低浓度 THM(1.0 μg/L)对鱼类自发游泳和觅食行为的影响。暴露于 THM 1 周的鱼类变得焦躁不安,游泳性能提高,尤其是在自然光、白色 LED 照明和蓝色 LED 照明下。暴露于 THM 的金鱼在绿光照射下也增加了对闪亮白色珠子的摄入。这些结果表明,即使是短期和低浓度的 NEO 暴露,不仅会抑制生物防御活性和代谢异常,还会对鱼类的应激反应、游泳和觅食行为产生显著影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b9e3/11288791/95f12ee97b55/PHY2-12-e16138-g002.jpg

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