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Changes in soil microbial functional diversity and biochemical characteristics of tree peony with amendment of sewage sludge compost

机译:污泥堆肥改良对牡丹土壤微生物功能多样性和生化特性的影响

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摘要

A greenhouse experiment was conducted to investigate the impact of sewage sludge compost application on functional diversity of soil microbial communities, based on carbon source utilization, and biochemical characteristics of tree peony (Paeonia suffruticosa). Functional diversity was estimated with incubations in Biolog EcoPlates and well color development was used as the functional trait for carbon source utilization. The average well color development and Shannon index based on the carbon source utilization pattern in Biolog EcoPlates significantly increased with the increasing sludge compost application in the range of 0-45 %, with a decreasing trend above 45 %. Principal component analysis of carbon source utilization pattern showed that sludge compost application stimulated the utilization rate of D-cellobiose and alpha-d-lactose, while the utilization rate of beta-methyl-D-glucoside, L-asparagine, L-serine, alpha-cyclodextrin, gamma-hydroxybutyric acid, and itaconic acid gradually increased up to a sludge compost amendment dosage of 45 % and then decreased above 45 %. The chlorophyll content, antioxidase (superoxide dismutase, catalase, and peroxidase) activities, plant height, flower diameter, and flower numbers per plant of tree peony increased significantly with sludge compost dosage, reaching a peak value at 45 %, and then decreased with the exception that activity of superoxide dismutase and catalase did not vary significantly.
机译:基于碳源利用和牡丹(Paeonia suffruticosa)的生化特性,进行了温室实验,研究了污泥堆肥处理对土壤微生物群落功能多样性的影响。通过在Biolog EcoPlates中进行孵化来评估功能多样性,并将良好的显色性用作碳源利用的功能性状。随着污泥堆肥施用量的增加(在0-45%的范围内),基于Biolog EcoPlates中碳源利用模式的平均井色发展和Shannon指数显着增加,而在45%以上则呈下降趋势。碳源利用模式的主成分分析表明,污泥堆肥的施用刺激了D-纤维二糖和α-d-乳糖的利用率,而β-甲基-D-葡萄糖苷,L-天冬酰胺,L-丝氨酸,α的利用率-环糊精,γ-羟基丁酸和衣康酸逐渐增加至污泥堆肥改良剂的45%,然后降至45%以上。牡丹渣的叶绿素含量,抗氧化酶(超氧化物歧化酶,过氧化氢酶和过氧化物酶)活性,株高,花径和单株花数随污泥堆肥剂量的增加而显着增加,达到45%的峰值,然后随着污泥堆肥剂量的增加而降低。超氧化物歧化酶和过氧化氢酶的活性没有显着差异。

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