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土壤改良剂的应用减轻了毒死蜱和乐果农药对茄子和番茄幼苗的植物毒性作用。

Application of soil amendments mitigates phytotoxic effects on Solanum melongena L. and Lycopersicon esculentum L. seedlings exposed to chlorpyrifos and dimethoate pesticides.

作者信息

Singh Pratibha, Singh Madhulika, Singh Sunita Kumari, Prasad Sheo Mohan

机构信息

Ranjan Plant Physiology and Biochemistry Laboratory, Department of Botany, University of Allahabad, Prayagraj, 211001, India.

Department of Botany, Banaras Hindu University, Varanasi, 221005, India.

出版信息

Environ Sci Pollut Res Int. 2023 May;30(21):59891-59908. doi: 10.1007/s11356-023-26696-w. Epub 2023 Apr 5.

Abstract

This field study was done to study the effects of pesticides chlorpyrifos and dimethoate singly and in combination with soil amendments like chemical fertilizer (CF), farmyard manure (FM), and 50% CF + 50% FM (CM) on various indices of growth, physio-biochemical parameters of brinjal, and their residual effect in tomato seedlings. As compared to the control, the decrease of 9.5 and 5.5%, 8.9 and 5.0% in fresh weight, dry weight respectively was recorded in the pesticide-only treatment in the brinjal crop. Pesticides when applied in combination with soil amendments depicted the highest growth of 105.4 and 118.2%, 104.1 and 115.1% in pesticides + CF treatment, 72.7 and 85.1%, 68.1 and 78.1% in pesticides + CM treatment, and 64.4 and 74.0%, 62.7 and 65.7% in pesticides + FM treatment compared to control. In tomato seedlings, the pesticides + CF treatment exhibited the lowest growth indices (25.5 and 31.9%, 26.4 and 28.8%) across the combined treatments while pesticide-only treatment depicted minimum growth compared to the control. In the case of photosynthesis rate and antioxidant activity, the combined treatments showed the trend as pesticides + CF > pesticides + CM > pesticides + FM in the brinjal crop; however, the trend became somewhat reversed in the tomato crop. The results indicated that soil-amended practices modulated pesticide-induced damage by upregulating photosynthetic performance, chlorophyll a fluorescence, and antioxidant balancing which might be associated with the mitigation of ROS-induced pesticide toxicity, and the effect was more pronounced with CM. Furthermore, our study was supported by non-metric-multidimensional scaling (NMDS)-constructed ordination plots by showing spatial patterns in different variables. The study might help in taking management decision to design mitigation actions for government and non-government agency at the farmers' level.

摘要

本田间研究旨在探究杀虫剂毒死蜱和乐果单独使用以及与化肥(CF)、农家肥(FM)和50%CF + 50%FM(CM)等土壤改良剂联合使用时,对茄子生长的各项指标、生理生化参数的影响,以及它们对番茄幼苗的残留效应。与对照相比,茄子作物仅施用农药的处理中,鲜重和干重分别下降了9.5%和5.5%、8.9%和5.0%。与对照相比,农药与土壤改良剂联合施用时,在农药 + CF处理中,生长量最高,分别为105.4%和118.2%、104.1%和115.1%;在农药 + CM处理中,分别为72.7%和85.1%、68.1%和78.1%;在农药 + FM处理中,分别为64.4%和74.0%、62.7%和65.7%。在番茄幼苗中,农药 + CF处理在所有联合处理中表现出最低的生长指标(25.5%和31.9%、26.4%和28.8%),而仅施用农药的处理与对照相比生长量最小。在光合作用速率和抗氧化活性方面,联合处理在茄子作物中呈现出农药 + CF>农药 + CM>农药 + FM的趋势;然而,在番茄作物中,这种趋势有所逆转。结果表明,土壤改良措施通过上调光合性能、叶绿素a荧光和抗氧化平衡来调节农药诱导的损害,这可能与减轻活性氧诱导的农药毒性有关,且CM的效果更显著。此外,我们的研究得到了非度量多维尺度分析(NMDS)构建的排序图的支持,该图展示了不同变量的空间模式。该研究可能有助于政府和非政府机构在农民层面做出管理决策,以设计缓解措施。

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