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首页> 外文期刊>Microbial Ecology: An International Journal >Initial Phylogenetic Relatedness of Saprotrophic Fungal Communities Affects Subsequent Litter Decomposition Rates
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Initial Phylogenetic Relatedness of Saprotrophic Fungal Communities Affects Subsequent Litter Decomposition Rates

机译:腐养真菌群落的初步系统发育相关性影响随后的凋落物分解率

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摘要

Ecosystem-level consequences of biodiversity loss of macroorganisms are well understood, while the repercussions of species extirpation in microbial systems are not. We manipulated species richness and phylogenetic relatedness of saprotrophic fungi in situ in a boreal forest to address this issue. Litter decomposition rates (as total mass loss) after 2 months were significantly higher in the least phylogenetically related fungal assemblages. Likewise, cellulose loss was also highest in the most distantly related treatments after 1 year. There were marginal effects of species richness on mass loss that only affected decomposition after 2 months. At the end of 1 year of decomposition, most fungal communities had collapsed from their original diversity to two species, mainly in the Penicillium or Hypocrea clades. Two concurrent processes may explain these results: competition between closely related fungal taxa and phylogenetic conservation in cellulose decomposition. Our results suggest that phylogenetic relatedness of fungal communities may be a more appropriate metric than species richness or community composition to predict functional responses of fungal communities to global change.
机译:众所周知,大型生物的生物多样性丧失对生态系统造成的后果,而微生物系统中物种灭绝的影响尚不明确。我们在北方森林中原地处理了腐生真菌的物种丰富性和系统发育相关性,以解决此问题。在最少的系统发育相关真菌组合中,两个月后的凋落物分解率(以总质量损失计)明显更高。同样,一年后最远相关的治疗中纤维素损失也最高。物种丰富度对质量损失有边际影响,仅在2个月后影响分解。在分解的1年结束时,大多数真菌群落已从其原始的多样性崩溃为两个物种,主要分布在青霉或hypocrea进化枝中。两个并发过程可以解释这些结果:密切相关的真菌类群之间的竞争与纤维素分解中的系统发育保守性。我们的结果表明,与物种丰富度或群落组成相比,真菌群落的系统发育相关性可能是更合适的指标,可以预测真菌群落对全球变化的功能响应。

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