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氟虫腈对植物幼苗的植物毒性效应:评估发芽属性、根尖形态、氧化应激和细胞呼吸指数。

Phyto-toxicological effect of fipronil to plant seedlings: Assessing germination attributes, root-tip morphology, oxidative stress, and cellular respiration indices.

机构信息

ICAR-National Bureau of Agriculturally Important Microorganisms (NBAIM), Kushmaur, Mua Nath Bhanjan 275103, Uttar Pradesh, India.

ICAR-National Bureau of Agriculturally Important Microorganisms (NBAIM), Kushmaur, Mua Nath Bhanjan 275103, Uttar Pradesh, India.

出版信息

Pestic Biochem Physiol. 2024 Nov;205:106135. doi: 10.1016/j.pestbp.2024.106135. Epub 2024 Sep 23.

Abstract

Pesticides including insecticides are applied in agricultural practices to control insect pests. However, their excessive usage often poses a severe threat to the growth, physiology, and biochemistry of plants. Here, responses of chickpea and greengram seedlings exposed to three fipronil (FIP) concentrations i. e. 100 (1×), 200 (2×) and 300 (3×) μg mL was evaluated under in vitro. Among doses, 3× had a greater negative impact on germination attributes, root-shoot elongation, vigor indices, length ratios, and survival of seedlings. Besides, the morphological distortion in root tips, oxidative stress generation, and cellular death in fipronil-supplemented root seedlings were observed under scanning electron (SEM) and confocal laser scanning (CLSM), respectively. A significant (p ≤ 0.05) and pronounced upsurge in plant stressor metabolites such as proline, malondialdehyde (MDA), electrolyte leakage (EL), hydrogen peroxide (HO) content, and antioxidants enzymes in plant seedlings further confirmed the fipronil toxicity. In addition, a concentration-dependent decrease in respiration efficiency (RE) and ATP content in FIP-treated seedlings was observed. Reduced mitotic index (MI) and numerous chromosomal anomalies (CAs) in root meristematic cells of seedlings are a clear indication of insecticide-induced cytotoxicity. Furthermore, a dose-dependent increase in DNA damage in root meristematic cells of greengram revealed the genotoxic potential of fipronil. Conclusively, fipronil suggested phyto and cyto-genotoxic effects that emphasize their careful monitoring in soils before application and their optimum addition in soil-plant systems. It is high time to prepare both target-specific and slow-released agrochemical formulations for crop protection with concurrent safeguarding of the soil.

摘要

杀虫剂包括杀虫剂,被应用于农业实践中以控制虫害。然而,它们的过度使用常常对植物的生长、生理和生物化学构成严重威胁。在这里,评估了三氟虫腙(FIP)浓度即 100(1×)、200(2×)和 300(3×)μg/mL 在体外暴露下对鹰嘴豆和绿豆幼苗的影响。在剂量中,3×对发芽属性、根-苗伸长、活力指数、长度比和幼苗存活率的负面影响更大。此外,在扫描电子显微镜(SEM)和共聚焦激光扫描显微镜(CLSM)下观察到补充有三氟虫腙的根苗中根尖形态扭曲、氧化应激产生和细胞死亡。此外,植物胁迫代谢物如脯氨酸、丙二醛(MDA)、电解质泄漏(EL)、过氧化氢(HO)含量和植物幼苗中的抗氧化酶显著(p≤0.05)和明显增加,进一步证实了三氟虫腙的毒性。此外,在 FIP 处理的幼苗中观察到呼吸效率(RE)和 ATP 含量的浓度依赖性降低。幼苗根尖分生细胞中的有丝分裂指数(MI)降低和许多染色体异常(CAs)是杀虫剂诱导细胞毒性的明显迹象。此外,绿豆根尖分生细胞中 DNA 损伤随剂量的增加表明三氟虫腙具有遗传毒性。总之,三氟虫腙提示具有植物和细胞遗传毒性作用,这强调了在应用前在土壤中对其进行仔细监测,并在土壤-植物系统中对其进行最佳添加。现在是时候为作物保护准备针对目标的和缓释放的农用化学品制剂了,同时要保护土壤。

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