The Comparison of Cellulolytic Activity of the Modified Soil Treated with Roundup

IF 0.7 Q3 MULTIDISCIPLINARY SCIENCES Chemistry-Didactics-Ecology-Metrology Pub Date : 2016-12-01 DOI:10.1515/cdem-2016-0012
T. Krzyśko-Łupicka, Ł. Kręcidło, M. Kręcidło
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引用次数: 4

Abstract

Abstract The activity of soil microorganisms affects soil fertility and structure, what leads to satisfactory crop yields, thanks to changes in the decay of organic matter. Their activity may be impaired as a result of application by farmers both fertilizers and pesticides. The degradation of cellulosic biomass represents an important part of the carbon cycle within the biosphere. Cellulolitic microorganisms are responsible for this decomposition, as they produced the enzymes of the cellulase complex. The aim of the study was to compare the cellulolytic activity of soil with Roundup and modified using urea phosphate and / or manure. The pot experiment was conducted under laboratory conditions. The studied material was brown soil (pH of 5.5) fertilized with manure and/or urea phosphate. To each earthenware vase were fed 0.5 kg of the tested soil supplemented with 1% carboxymethyl cellulose. The cellulolytic activities of soil in different experimental variants were expressed in % of C using a colorimetric Petkov method. Modification of soil cellulolytic activity varied considerably depending on the additive manure and/or urea phosphate and Roundup. The lowest soil cellulolytic activity was observed in the presence of manure and urea phosphate, and the highest in the soil with manure and Roundup. The objects of Roundup independently of the other additives urea phosphate stimulate the activity of the cellulolytic microflora compared to objects containing only urea phosphate. The presence of manure in soil treated with Roundup clearly accelerated degradation of cellulose, what can be used in agriculture in the degradation of crop residues. The study shows that pesticides and fertilizers have a big impact on cellulolytic activity in soil. Changes in cellulolytic activity can be used as an ecological indicator of soil pollution level.
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草甘膦处理改良土壤纤维素水解活性的比较
土壤微生物的活动影响土壤的肥力和结构,而土壤的肥力和结构又通过有机质衰变的变化而产生令人满意的作物产量。由于农民施用化肥和杀虫剂,它们的活动可能受到损害。纤维素生物质的降解是生物圈内碳循环的重要组成部分。纤维素微生物负责这种分解,因为它们产生纤维素酶复合物的酶。本研究的目的是比较农达与磷酸脲和/或粪肥改良土壤的纤维素分解活性。盆栽试验在实验室条件下进行。研究材料为棕壤(pH为5.5),施用有机肥和/或磷酸脲。每个陶瓶喂入0.5 kg加1%羧甲基纤维素的试验土。采用比色Petkov法,用C %表示不同试验变异土壤的纤维素水解活性。土壤纤维素水解活性的变化取决于肥料和/或磷酸脲和草甘膦的添加。施用有机肥和磷酸脲的土壤纤维素分解活性最低,施用有机肥和农达的土壤纤维素分解活性最高。与只含有磷酸脲的物质相比,农达的客体独立于其他添加剂磷酸脲刺激了纤维素分解微生物群的活性。在经过农达处理的土壤中,粪便的存在明显加速了纤维素的降解,而纤维素可用于农业中作物残留物的降解。研究表明,农药和化肥对土壤的纤维素分解活性有很大的影响。纤维素水解活性的变化可以作为土壤污染程度的生态指标。
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来源期刊
Chemistry-Didactics-Ecology-Metrology
Chemistry-Didactics-Ecology-Metrology MULTIDISCIPLINARY SCIENCES-
CiteScore
1.50
自引率
50.00%
发文量
2
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