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三唑类药物对处理过的作物的副作用。

Side effects of triazoles on treated crops.

机构信息

Czech University of Life Sciences Prague, Faculty of Agrobiology, Food and Natural Resources, Department of Agro-Environmental Chemistry and Plant Nutrition, Prague - Suchdol, Czech Republic.

Centre of the Region Haná for Biotechnological and Agricultural Research, Department of Genetic Resources for Vegetables, Medicinal and Special Plants, Crop Research Institute, Olomouc, Czech Republic; Centre of Region Haná for Biotechnological and Agricultural Research, Palacký University, Department of Phytochemistry, Olomouc, Czech Republic.

出版信息

Chemosphere. 2021 Aug;277:130242. doi: 10.1016/j.chemosphere.2021.130242. Epub 2021 Mar 15.

Abstract

Triazolic fungicides are widely applied in crop production to protect plants against fungal pathogens. However, they may influence the biochemical processes in plants and other non-target species. This paper is aimed at the effect of triazoles (namely tebuconazole, cyproconazole, and penconazole) single/mixed applications on the phenolics production in tomato (Solanum lycopersicum L.) fruit peel, amount of chlorophyll a and b in tomato leaves as well as on basic plant growth parameters. For this purpose, cherry tomatoes were planted in the pot experiment and foliarly-treated weekly, with the same total triazoles dose of 3.52 μmol per plant (in mixtures of 1.71 or 1.17 μmol of each in two or three components, respectively). The treatments increased the weight of fruits in the 1st harvest about 43%, however, this effect was not observed in the next harvest. Increased oxidative stress in the triazoles presence was observed, based on the elevated production of antioxidant phenolics in the 1st harvest. Most alarming is the decrease of the weight of thin stems and foliage and the concentration of chlorophyll a (b) in leaves in all triazoles-treated variants. The non-target impacts on plant biochemical processes (related to the phenolics or chlorophylls production and functionality) were confirmed.

摘要

三唑类杀菌剂广泛应用于作物生产中,以保护植物免受真菌病原体的侵害。然而,它们可能会影响植物和其他非靶标物种的生化过程。本文旨在研究三唑类(即戊唑醇、环丙唑醇和丙环唑)单一/混合应用对番茄(Solanum lycopersicum L.)果皮中酚类物质产生、番茄叶片中叶绿素 a 和 b 的含量以及基本植物生长参数的影响。为此,在盆栽试验中种植了樱桃番茄,并每周进行叶面处理,每个植物的总三唑剂量相同,为 3.52 μmol(混合物中分别为 1.71 或 1.17 μmol,分为两部分或三部分)。处理使第一茬果实的重量增加了约 43%,但在下一茬中没有观察到这种效果。在三唑类存在的情况下,观察到氧化应激增加,这是基于第一茬中抗氧化酚类物质的产量增加。最令人担忧的是,在所有三唑类处理的变种中,细茎和叶片的重量以及叶片中叶绿素 a(b)的浓度都减少了。证实了对植物生化过程的非靶标影响(与酚类物质或叶绿素的产生和功能有关)。

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