首页> 外文期刊>Pedosphere: A Quarterly Journal of Soil Science >Short-Term Influence of Herbicide Quinclorac on Enzyme Activities in Flooded Paddy Soils
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Short-Term Influence of Herbicide Quinclorac on Enzyme Activities in Flooded Paddy Soils

机译:除草剂喹克洛拉克对淹水稻田土壤酶活性的短期影响

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摘要

The influence of quinclorac (3,7-dichloroquinoline-8-carboxylic acid) on enzyme activities in flooded paddy soils was assessed under laboratory conditions. The enzymes differed markedly in their response to quinclorac. Quinclorac inhibited proteinase, hydrogen peroxidase, phosphorylase, and urease activities. The higher the concentration of quinclorac applied, the more significant the inhibition to these observed activities with a longer time required to recover to the level of the control. However, soils supplemented with quinclorac were nonpersistent for proteinase, phosphorylase and urease as opposed to soils without quinclorac. Dehydrogenase activity was also sensitive to quinclorac. Three soil samples with concentrations of quinclorac higher than 1 μg g~(-1) soil declined to less than 20% of that in the control. However, the highest dehydrogenase activity (up to 3.28-fold) was detected in soils with 2 μg g~(-1) soil quinclorac on the 25th day after treatment. Quinclorac had a relatively mild effect on saccharase activity at the concentrations used in this experiment and a stimulatory one on soil respiration when added to soil at normal field concentrations. Nonetheless it was inhibited at higher concentrations in paddy soils. Quinclorac is still relatively safe to the soil ecosystem when applied at a normal concentration (0.67 μg g~(-1) dried soil) but may have some effects on soil enzymes at higher concentrations.
机译:在实验室条件下,评估了喹氯拉克(3,7-二氯喹啉-8-羧酸)对淹水稻田土壤酶活性的影响。这些酶对喹诺拉克的反应明显不同。 Quinclorac抑制蛋白酶,过氧化氢酶,磷酸化酶和脲酶活性。所施加的喹克拉拉克浓度越高,对这些观察到的活性的抑制作用越显着,恢复至对照水平所需的时间越长。然而,与没有喹氯拉喹的土壤相反,补充有喹克拉拉克的土壤对蛋白酶,磷酸化酶和脲酶没有持久性。脱氢酶活性也对喹氯拉克敏感。三种喹喹啉酸浓度高于1μgg〜(-1)的土壤样品下降至对照样品的20%以下。然而,在处理后第25天,在含2μgg〜(-1)土壤喹克罗克的土壤中检测到最高的脱氢酶活性(高达3.28倍)。在本实验中使用的浓度下,奎尼克拉克对蔗糖酶活性的影响相对温和,而在正常田间浓度下添加到土壤中时,对土壤呼吸的刺激作用较弱。然而,在稻田土壤中以较高的浓度抑制了它。当以正常浓度(0.67μgg〜(-1)干燥土壤)施用时,奎尼克拉克对土壤生态系统仍然相对安全,但在较高浓度下可能会对土壤酶产生某些影响。

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