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水稻种植用杀菌剂(戊唑醇和唑嘧菌胺)改变了巴拿马蟾蜍蝌蚪(Boanafaber)的生化和组织学指标。

Fungicides from rice cultivation (tebuconazole and azoxystrobin) alters biochemical and histological markers of hammertoad tadpoles (Boanafaber).

机构信息

Environmental Engineering Post-Graduation Program, University of Blumenau, Blumenau, SC, Brazil.

Biodiversity Post-Graduation Program, University of Blumenau, Blumenau, SC, Brazil.

出版信息

Environ Pollut. 2024 Jan 15;341:122900. doi: 10.1016/j.envpol.2023.122900. Epub 2023 Nov 10.

Abstract

Tebuconazole (TBZ) and azoxystrobin (AZX) are fungicides frequently used in rice cultivation. Despite protecting crops against fungal diseases, these compounds can contaminate the natural environments close to the crops, exerting negative effects on non-target organisms, the present study aimed to characterize the contamination by fungicides of a river that flows in an area dominated by rice cultivation in the north of the state of Santa Catarina, SC, Brazil. Concentrations of TBZ and AZX found in the field were used to evaluate their negative effects on development, biochemical biomarkers and histopatology of the liver of a native tadpole species, the hammerfrog (Boana faber). Tadpoles were exposed for 16 days to the lowest (1.20 μg/L) and highest (2.60 μg/L) concentration of TBZ, lowest (0.70 μg/L) and highest (1.60 μg/L) concentration of AZX, and the mix of both fungicides at lowest and highest concentration of each found in field analyses. Exposure to the lower TBZ concentration and both concentrations of the Mix accelerated the development of tadpoles. AZX caused an increase in the activities of glutathione S-transferase (GST), carboxylesterase (CbE) and glucose-6-phosphate dehydrogenase (G6PDH) in the liver, an increase in the levels of protein carbonyls (PC) in the liver and an increase in the activity of acetylcholinesterase (AChE) in muscle of tadpoles. TBZ, on the other hand, generated an increase in GST, G6PDH, PC and histopathological severity scores in liver and in muscle AChE activity. The effects were more intense in the groups exposed to the Mix of contaminants. No treatment altered brain AChE. The data showed that the fungicides from in rice cultivation found in natural aquatic environments around the crops pose risks to the health of the animals, compromising their metabolism and development.

摘要

戊唑醇(TBZ)和唑菌胺酯(AZX)是水稻种植中常用的两种杀菌剂。尽管这些化合物可以保护作物免受真菌病的侵害,但它们也会污染靠近作物的自然环境,对非目标生物产生负面影响。本研究旨在描述巴西圣卡塔琳娜州北部一个以水稻种植为主的地区的一条河流受到杀菌剂污染的情况。在田间发现的 TBZ 和 AZX 浓度用于评估它们对一种本地青蛙(Boana faber)幼虫发育、生化生物标志物和肝组织病理学的负面影响。将青蛙暴露于 TBZ 的最低(1.20μg/L)和最高(2.60μg/L)浓度、AZX 的最低(0.70μg/L)和最高(1.60μg/L)浓度以及田间分析中发现的每种化合物最低和最高浓度的混合物中 16 天。暴露于较低 TBZ 浓度和两种混合物浓度均加速了幼虫的发育。AXZ 导致肝脏中谷胱甘肽 S-转移酶(GST)、羧酸酯酶(CbE)和葡萄糖-6-磷酸脱氢酶(G6PDH)的活性增加,肝脏中蛋白质羰基(PC)的水平增加,以及肌肉中乙酰胆碱酯酶(AChE)的活性增加。另一方面,TBZ 导致肝脏和肌肉中 GST、G6PDH、PC 和组织病理学严重程度评分增加以及 AChE 活性增加。在暴露于混合污染物的组中,这些影响更为强烈。没有一种处理方法改变了大脑中的 AChE。数据表明,在作物周围自然水生环境中发现的来自水稻种植的杀菌剂对动物健康构成威胁,损害了它们的新陈代谢和发育。

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