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首页> 外文期刊>FEMS Microbiology Ecology >Linking fungal communities to wood density loss after 12 years of log decay
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Linking fungal communities to wood density loss after 12 years of log decay

机译:将真菌社区连接到木材衰减后的木质密度损失

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摘要

Changes in biodiversity might alter decomposition processes and, consequently, carbon and nutrient cycling. We examined fungal diversity and density loss in experimental Norway spruce logs after 12 years of decay in a hemiboreal forest. Between 28 and 50% of the original wood biomass remained, depending on the fungal community composition in the log, operational taxonomic unit (OTU) richness had only a minor effect on the log biomass. Although the communities were OTU rich (190-340 OTUs per log), the majority of OTUs were infrequent or rare; wood degradation therefore depended mostly on the most abundant OTUs and their decomposing abilities. The least decayed logs were characterized by continuous dominance of an earlier colonizer and by high within-log community diversity, which was significantly related to sample variables (position in log, density and moisture). In the most decayed logs, the earlier colonizers were generally replaced by white-rot species able to exploit the highly decomposed wood. The communities were relatively spatially uniform within whole logs, independent of the sample variables, whereas among-log diversity was high. Importance of fungal community composition in decomposition processes should be taken into account when studying and modeling carbon dynamics in forest ecosystems.
机译:生物多样性的变化可能改变分解过程,从而改变碳和营养循环。在血液森林中12年衰减后,我们检查了实验挪威云杉原木的真菌多样性和密度损失。在原始木材生物量的28%至50%之间,根据日志中的真菌群落组成,运营分类单位(OTU)丰富性仅对日志生物质进行了次要影响。虽然社区是Otu富人(每日190-340 oTus),但大多数Otus都罕见或罕见;因此,木材退化主要取决于最丰富的OTUS及其分解能力。最小衰减的日志的特征是,通过早期的殖民大及的连续优势以及高于对日志内的群落多样性,与样本变量有显着相关(日志,密度和水分的位置)。在最腐烂的日志中,早期的殖民队通常被能够利用高度分解的木材的白腐型物种所取代。整个日志中的社区在整个日志中相对均匀,与样本变量无关,而在日志中程度高。在森林生态系统中的碳动力学时,应考虑真菌群落组成在分解过程中的重要性。

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