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本文引用的文献

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Oxidative enzymatic response of white-rot fungi to single-walled carbon nanotubes.白腐真菌对单壁碳纳米管的氧化酶反应。
Environ Pollut. 2014 Oct;193:197-204. doi: 10.1016/j.envpol.2014.06.013. Epub 2014 Jul 21.
2
Biochar and microbial signaling: production conditions determine effects on microbial communication.生物炭和微生物信号传递:生产条件决定对微生物通讯的影响。
Environ Sci Technol. 2013 Oct 15;47(20):11496-503. doi: 10.1021/es401458s. Epub 2013 Sep 25.
3
Simulated degradation of biochar and its potential environmental implications.生物炭的模拟降解及其潜在的环境影响。
Environ Pollut. 2013 Aug;179:146-52. doi: 10.1016/j.envpol.2013.04.030. Epub 2013 May 13.
4
Microbial utilisation of biochar-derived carbon.微生物对生物炭衍生碳的利用。
Sci Total Environ. 2013 Nov 1;465:288-97. doi: 10.1016/j.scitotenv.2013.03.090. Epub 2013 Apr 24.
5
Biochar carbon stability in a clayey soil as a function of feedstock and pyrolysis temperature.生物炭在粘土壤中的碳稳定性取决于原料和热解温度。
Environ Sci Technol. 2012 Nov 6;46(21):11770-8. doi: 10.1021/es302545b. Epub 2012 Oct 10.
6
Generalized two-dimensional perturbation correlation infrared spectroscopy reveals mechanisms for the development of surface charge and recalcitrance in plant-derived biochars.广义二维相关红外光谱揭示了植物衍生生物炭表面电荷和抗降解性发展的机制。
Environ Sci Technol. 2012 Oct 2;46(19):10641-50. doi: 10.1021/es302971d. Epub 2012 Sep 18.
7
Abundant and stable char residues in soils: implications for soil fertility and carbon sequestration.土壤中丰富且稳定的炭残留:对土壤肥力和碳固存的影响。
Environ Sci Technol. 2012 Sep 4;46(17):9571-6. doi: 10.1021/es301107c. Epub 2012 Aug 20.
8
Interactive priming of biochar and labile organic matter mineralization in a smectite-rich soil.富蒙脱石土壤中生物炭与易分解有机物质矿化的交互激发作用。
Environ Sci Technol. 2011 Nov 15;45(22):9611-8. doi: 10.1021/es202186j. Epub 2011 Oct 20.
9
Comparative studies on lignin and polycyclic aromatic hydrocarbons degradation by basidiomycetes fungi.担子菌真菌对木质素和多环芳烃降解的比较研究。
Bioresour Technol. 2011 Sep;102(17):8063-70. doi: 10.1016/j.biortech.2011.05.077. Epub 2011 May 30.
10
Charcoal addition to soils in NE England: a carbon sink with environmental co-benefits?英格兰东北部土壤中添加木炭:具有环境协同效益的碳汇?
Sci Total Environ. 2011 Apr 1;409(9):1704-14. doi: 10.1016/j.scitotenv.2011.01.031. Epub 2011 Feb 18.

在单培养接种实验中,热解有机物质的风化诱导真菌氧化酶反应。

Weathering of pyrogenic organic matter induces fungal oxidative enzyme response in single culture inoculation experiments.

作者信息

Gibson Christy, Berry Timothy D, Wang Ruzhen, Spencer Julie A, Johnston Cliff T, Jiang Yong, Bird Jeffrey A, Filley Timothy R

机构信息

Department of Earth, Atmospheric, and Planetary Sciences and the Purdue Climate Change Research Center, Purdue University, West Lafayette, IN 47907, USA.

State Key Laboratory of Forest and Soil Ecology, Institute of Applied Ecology, Chinese Academy of Sciences, Shenyang 110016, China.

出版信息

Org Geochem. 2016 Feb;92:32-41. doi: 10.1016/j.orggeochem.2015.12.003. Epub 2015 Dec 12.

DOI:10.1016/j.orggeochem.2015.12.003
PMID:29657346
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5897110/
Abstract

The addition of pyrogenic organic matter (PyOM), the aromatic carbon-rich product of the incomplete combustion of plant biomass or fossil fuels, to soil can influence the rate of microbial metabolism of native soil carbon. The interaction of soil heterotrophs with PyOM may be governed by the surficial chemical and physical properties of PyOM that evolve with environmental exposure. We present results of a 36-day laboratory incubation investigating the interaction of a common white-rot fungus, with three forms of C-enriched (2.08 atom% C) PyOM derived from (450 °C): one freshly produced, and two artificially weathered (254 nm, UV light-water treatment and water-leaching alone). Analysis (FTIR, XPS) of the UV-weathered PyOM showed increased aliphatic C-H content and oxidation of aromatic carbon relative to both the original and water-leached PyOM. The addition of both weathered forms of PyOM stimulated (positively primed) fungal respiration of the growth media, while the unaltered PyOM mildly inhibited (negatively primed) respiration. Artificial weathering resulted in higher oxidative (laccase and peroxidase) enzyme activity than unaltered PyOM, possibly the result of a diminished capacity to bind reactive substrates and extracellular enzymes after weathering. However, and contrary to expectations, simple water-leached weathering resulted in a relatively higher enzyme activity and respiration than that of UV-weathering. The C content of respired CO indicated negligible fungal oxidation of PyOM for all treatments, demonstrating the overall low microbial reactivity of this high temperature PyOM. The increased enzymatic and positive priming response of to weathered PyOM highlights the importance of weathering-induced chemistry in controlling PyOM-microbe-soil carbon interactions.

摘要

向土壤中添加热解有机物质(PyOM),即植物生物质或化石燃料不完全燃烧产生的富含芳香碳的产物,会影响原生土壤碳的微生物代谢速率。土壤异养生物与PyOM的相互作用可能受PyOM的表面化学和物理性质支配,这些性质会随环境暴露而演变。我们展示了一项为期36天的实验室培养结果,该实验研究了一种常见的白腐真菌与三种源自柳枝稷(450°C)的富碳(2.08原子%碳)PyOM形式的相互作用:一种是新产生的,另外两种是人工风化的(254纳米紫外光-水处理和仅水浸)。对紫外风化PyOM的分析(傅里叶变换红外光谱、X射线光电子能谱)表明,相对于原始PyOM和水浸PyOM,其脂肪族C-H含量增加,芳香碳发生氧化。两种风化形式的PyOM添加均刺激了(正向激发)生长培养基中的真菌呼吸,而未改变的PyOM则轻微抑制(负向激发)呼吸。人工风化导致氧化(漆酶和过氧化物酶)酶活性高于未改变的PyOM,这可能是风化后结合反应性底物和细胞外酶的能力降低的结果。然而,与预期相反,简单的水浸风化导致的酶活性和呼吸比紫外风化相对更高。呼出CO₂的碳含量表明,所有处理中PyOM的真菌氧化可忽略不计,这表明这种高温PyOM的整体微生物反应性较低。白腐真菌对风化PyOM的酶活性增加和正向激发反应突出了风化诱导化学在控制PyOM-微生物-土壤碳相互作用中的重要性。