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首页> 外文期刊>International Biodeterioration & Biodegradation >Elevated tropospheric CO2 and O-3 may not alter initial wood decomposition rate or wood-decaying fungal community composition of Northern Hardwoods
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Elevated tropospheric CO2 and O-3 may not alter initial wood decomposition rate or wood-decaying fungal community composition of Northern Hardwoods

机译:升高的对流层CO2和O-3可能不会改变初始木质分解率或木材腐烂的北极木材的真菌群落组成

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We examined the effects of elevated CO2 and/or O-3 on the wood-decaying basidiomycete fungal community and wood decomposition rates at the Aspen Free-Air CO2 and O-3 Enrichment (Aspen FACE) project. Mass loss rates were determined after one year of log decomposition on the soil surface, and wood-decaying basidiomycetes were isolated from decaying wood and identified via DNA sequencing. Aspen (Populus tremuloides Michx.) and birch (Betula papyrifera Marshall) wood differed significantly in wood-decaying basidiomycete fungal communities and decomposition rate. Twelve years of site exposure to elevated CO2 and/or O-3 did not have significant effects on wood-decaying fungal communities. Growth under elevated CO2 and/or O-3 did not produce wood that differed in decay rate from that grown under ambient atmospheric conditions. Similarly, wood decay rate was not altered significantly when decomposition occurred in elevated CO2 and/or O-3 environments. Our results suggest that wood decaying fungal community composition and decomposition rates of northern hardwoods may not be directly affected by elevated tropospheric CO2 and O-3. (C) 2016 Elsevier Ltd. All rights reserved.
机译:我们检查了CO2和/或O-3对木材腐烂的底漆真菌群落和木质腐烂(Aspen Free-Air Co2和O-3富集(Aspen Face)项目的木材分解率的影响。在土壤表面上一年的数量分解后确定大规模损失率,从腐烂的木材中分离木腐烂的碱化基础,并通过DNA测序鉴定。白杨树(Populus Trowuloides Michx。)和桦树(Betula papyrifera Marshall)木材在木腐烂的底漆真菌社区和分解率上有显着差异。十二年的遗址暴露于升高的CO 2和/或O-3对木材腐烂的真菌社区没有显着影响。升高的CO 2和/或O-3下的生长没有产生以在环境大气条件下生长的衰减率不同的木材。同样,当分解在升高的CO 2和/或O-3环境中发生分解时,木衰减率不会显着改变。我们的研究结果表明,木材腐烂的真菌群落组成和北极木材的分解率可能不会受到对流层CO2和O-3升高的影响。 (c)2016 Elsevier Ltd.保留所有权利。

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