GSTDTAP  > 资源环境科学
DOI10.1111/ele.13632
Soil fungal mycelia have unexpectedly flexible stoichiometric C:N and C:P ratios
Tessa Camenzind; Kay Philipp Grenz; Johannes Lehmann; Matthias C. Rillig
2020-11-09
发表期刊Ecology Letters
出版年2020
英文摘要

Soil ecological stoichiometry provides powerful theories to integrate the complex interplay of element cycling and microbial communities into biogeochemical models. One essential assumption is that microbes maintain stable C:N:P (carbon:nitrogen:phosphorus) ratios independent of resource supply, although such homeostatic regulations have rarely been assessed in individual microorganisms. Here, we report an unexpected high flexibility in C:N and C:P values of saprobic fungi along nutrient supply gradients, overall ranging between 7‐126 and 20‐1488, respectively, questioning microbial homeostasis. Fungal N:P varied comparatively less due to simultaneous reductions in mycelial N and P contents. As a mechanism, internal recycling processes during mycelial growth and an overall reduced N and P uptake appear more relevant than element storage. The relationships among fungal stoichiometry and growth disappeared in more complex media. These findings affect our interpretation of stoichiometric imbalances among microbes and soils and are highly relevant for developing microbial soil organic carbon and nitrogen models.

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文献类型期刊论文
条目标识符http://119.78.100.173/C666/handle/2XK7JSWQ/304019
专题资源环境科学
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Tessa Camenzind,Kay Philipp Grenz,Johannes Lehmann,et al. Soil fungal mycelia have unexpectedly flexible stoichiometric C:N and C:P ratios[J]. Ecology Letters,2020.
APA Tessa Camenzind,Kay Philipp Grenz,Johannes Lehmann,&Matthias C. Rillig.(2020).Soil fungal mycelia have unexpectedly flexible stoichiometric C:N and C:P ratios.Ecology Letters.
MLA Tessa Camenzind,et al."Soil fungal mycelia have unexpectedly flexible stoichiometric C:N and C:P ratios".Ecology Letters (2020).
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