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Regulation of bacterial and fungal MCPA degradation at the soil-litter interface

机译:调节土壤-凋落物界面上细菌和真菌MCPA的降解

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Much is known about mechanisms and regulation of phenoxy acid herbicide degradation at the organism level, whereas the effects of environmental factors on the performance of the phenoxy acid degrading communities in soils are much less clear. In a microcosm experiment we investigated the small-scale effect of litter addition on the functioning of the MCPA degrading communities. super(14)C labelled MCPA was applied and the functional genes tfdA and tfdA alpha were quantified to characterise bacterial MCPA degradation. We identify the transport of litter compounds as an important process that probably regulates the activity of the MCPA degrading community at the soil-litter interface. Two possible mechanisms can explain the increased tfdA abundance and MCPA degradation below the litter layer: 1) transport of alpha -ketoglutarate or its metabolic precursors reduces the costs for regenerating this co-substrate and thereby improves growth conditions for the MCPA degrading community; 2) external supply of energy and nutrients changes the internal resource allocation towards enzyme production and/or improves the activity of bacterial consortia involved in MCPA degradation. In addition, the presence of litter compounds might have induced fungal production of litter-decaying enzymes that are able to degrade MCPA as well.
机译:关于苯氧酸除草剂在生物体水平上的降解的机理和调控方面的许多已知信息,而环境因素对土壤中苯氧酸降解群落性能的影响还不清楚。在一个微观实验中,我们研究了凋落物添加对MCPA降解群落功能的小规模影响。应用super(14)C标记的MCPA,并对功能基因tfdA和tfdA alpha进行定量,以表征细菌MCPA降解。我们确定了凋落物化合物的运输是一个重要的过程,它可能在土壤-凋落物界面处调节MCPA降解群落的活性。有两种可能的机制可以解释tfdA丰度增加和垫料层以下MCPA降解的原因:1)α-酮戊二酸或其代谢前体的转运降低了再生该共底物的成本,从而改善了MCPA降解群落的生长条件; 2)外部能量和营养供应改变了内部资源向酶生产的分配和/​​或改善了参与MCPA降解的细菌财团的活动。此外,垃圾化合物的存在可能会诱导真菌降解降解垃圾的酶,这些酶也能够降解MCPA。

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