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遮光和气候条件对吡蚜酮在红辣椒中代谢行为的影响

Effects of light shading and climatic conditions on the metabolic behavior of flonicamid in red bell pepper.

作者信息

Jung Da-I, Farha Waziha, Abd El-Aty A M, Kim Sung-Woo, Rahman Md Musfiqur, Choi Jeong-Heui, Kabir Md Humayun, Im So Jeong, Lee Young-Jun, Truong Lieu T B, Shin Ho-Chul, Im Geon-Jae, Shim Jae-Han

机构信息

Biotechnology Research Institute, College of Agriculture and Life Sciences, Chonnam National University, 77 Yongbong-ro, Buk-gu, Gwangju, 500-757, Republic of Korea.

Department of Veterinary Pharmacology and Toxicology, College of Veterinary Medicine, Konkuk University, Seoul, 143-701, Republic of Korea.

出版信息

Environ Monit Assess. 2016 Mar;188(3):144. doi: 10.1007/s10661-016-5142-5. Epub 2016 Feb 4.

Abstract

The degradation behavior of flonicamid and its metabolites (4-trifluoromethylnicotinic acid (TFNA) and N-(4-trifluoromethylnicotinoyl) glycine (TFNG)) was evaluated in red bell pepper over a period of 90 days under glass house conditions, including high temperature, low and high humidity, and in a vinyl house covered with high density polyethylene light shade covering film (35 and 75%). Flonicamid (10% active ingredient) was applied (via foliar application) to all fruits, including those groups grown under normal conditions (glass house) or under no shade cover (vinyl house). Samples were extracted using a Quick, Easy, Cheap, Effective, Rugged, and Safe "QuEChERS" method and analyzed using liquid chromatography-tandem mass spectrometry (LC/MS/MS). The method performance, including linearity, recovery, limits of detection (LOD), and quantitation (LOQ), was satisfactory. Throughout the experimental period, the residual levels of flonicamid and TFNG were not uniform, whereas that of TFNA remained constant. The total sum of the residues (flonicamid and its metabolites) was higher in the vinyl house with shade cover than in the glass house, under various conditions. The total residues were significantly higher when the treatment was applied under high light shade (75%). The flonicamid half-life decreased from 47.2 days (under normal conditions) to 28.4 days (at high temperatures) in the glass house, while it increased from 47.9 days (no shade cover) to 66 days (75% light shading) in the vinyl house. High humidity leads to decreases in the total sum of flonicamid residues in red bell pepper grown in a glass house, because it leads to an increase in the rate of water loss, which in turn accelerates the volatilization of the pesticide. For safety reasons, it is advisable to grow red bell pepper under glass house conditions because of the effects of solar radiation, which increases the rate of flonicamid degradation into its metabolites.

摘要

在温室条件下,包括高温、低湿度和高湿度环境中,以及在覆盖有高密度聚乙烯遮光膜(35%和75%)的塑料大棚中,对90天内甜椒中氟啶虫酰胺及其代谢物(4 - 三氟甲基烟酸(TFNA)和N -(4 - 三氟甲基烟酰基)甘氨酸(TFNG))的降解行为进行了评估。将含10%活性成分的氟啶虫酰胺通过叶面喷施施用于所有果实上,包括在正常条件下(温室)或无遮光覆盖(塑料大棚)种植的果实组。样品采用快速、简便、廉价、高效、耐用且安全的“QuEChERS”方法进行提取,并使用液相色谱 - 串联质谱法(LC/MS/MS)进行分析。该方法的性能,包括线性、回收率、检测限(LOD)和定量限(LOQ),均令人满意。在整个实验期间,氟啶虫酰胺和TFNG的残留水平并不均匀,而TFNA的残留水平保持恒定。在各种条件下,有遮光覆盖的塑料大棚中残留物(氟啶虫酰胺及其代谢物)的总量高于温室。当在强光遮光(75%)条件下进行处理时,总残留量显著更高。在温室中,氟啶虫酰胺的半衰期从正常条件下的47.2天降至高温下的28.4天,而在塑料大棚中,其半衰期从无遮光覆盖时的47.9天增加至75%遮光时的66天。高湿度会导致温室中种植的甜椒中氟啶虫酰胺残留总量降低,因为高湿度会导致水分流失速率增加,进而加速农药的挥发。出于安全考虑,由于太阳辐射的影响会增加氟啶虫酰胺降解为其代谢物的速率,因此建议在温室条件下种植甜椒。

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