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比较评估合成和天然杀菌剂对土壤呼吸的影响。

Comparative assessment of the effect of synthetic and natural fungicides on soil respiration.

机构信息

Instituto Biológico, São Paulo, SP, Brazil.

出版信息

Sensors (Basel). 2012;12(3):3243-52. doi: 10.3390/s120303243. Epub 2012 Mar 7.

Abstract

As toxic pesticide residues may persist in agricultural soils and cause environmental pollution, research on natural fungicides to replace the synthetic compounds is currently increasing. The effect of the synthetic fungicide chlorothalonil and a natural potential fungicide on the soil microbial activity was evaluated here by the substrate-induced respiration by addition of glucose (SIR), as bioindicator in two soils (Eutrophic Humic Gley-GHE and Typic Eutroferric Chernosol-AVEC). The induced soil respiration parameter was followed during 28 days after soil treatment either with chlorathalonil (11 μg·g(-1)), or the methanolic fraction from Polymnia sonchifolia extraction (300 μg·g(-1)), and (14)C-glucose (4.0 mg and 5.18 Bq of (14)C-glucose g(-1)). The (14)C-CO(2) produced by the microbial respiration was trapped in NaOH (0.1 M) which was changed each two hours during the first 10 h, and 1, 3, 5, 7, 14 and 28 days after the treatments. The methanolic fraction of the plant extract inhibited (2.2%) and stimulated (1.8%) the respiration of GHE and AVEC, respectively, but the synthetic chlorothalonil caused 16.4% and 2.6% inhibition of the respiration, respectively of the GHE and AVEC soils. As the effects of the natural product were statistically small, this bioindicator indicates that the methanolic fraction of the Polymnia sonchifolia extract, which has fungicide properties, has no environmental effects.

摘要

由于有毒农药残留可能会残留在农业土壤中,造成环境污染,因此目前正在研究天然杀菌剂来替代合成化合物。本研究采用添加葡萄糖的基质诱导呼吸(SIR)作为生物指标,评估了合成杀菌剂百菌清和一种天然潜在杀菌剂对两种土壤(富营养腐殖质淋溶土-GHE 和典型富铁淋溶土-AVEC)中土壤微生物活性的影响。在土壤处理后 28 天内,通过添加葡萄糖(SIR)来监测土壤呼吸参数。土壤处理方式为:用百菌清(11 μg·g(-1))、辣木叶甲醇提取物(300 μg·g(-1))和 14C-葡萄糖(4.0 mg 和 5.18 Bq 14C-葡萄糖 g(-1))。微生物呼吸产生的 14C-CO2 被 NaOH(0.1 M)捕获,在最初的 10 小时内每两小时更换一次,处理后 1、3、5、7、14 和 28 天分别更换一次。辣木叶甲醇提取物分别抑制(2.2%)和刺激(1.8%)了 GHE 和 AVEC 的呼吸,但合成的百菌清分别抑制了 GHE 和 AVEC 土壤的呼吸 16.4%和 2.6%。由于天然产物的影响在统计学上较小,因此该生物指示剂表明,具有杀菌性能的辣木叶甲醇提取物对环境没有影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e9ef/3376576/b107ce39c719/sensors-12-03243f1.jpg

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