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A genomic perspective on stoichiometric regulation of soil carbon cycling

机译:从基因组角度看土壤碳循环的化学计量调控

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摘要

Similar to plant growth, soil carbon (C) cycling is constrained by the availability of nitrogen (N) and phosphorus (P). We hypothesized that stoichiometric control over soil microbial C cycling may be shaped by functional guilds with distinct nutrient substrate preferences. Across a series of rice fields spanning 5–25% soil C (N:P from 1:12 to 1:70), C turnover was best correlated with P availability and increased with experimental N addition only in lower C (mineral) soils with N:P⩽16. Microbial community membership also varied with soil stoichiometry but not with N addition. Shotgun metagenome data revealed changes in community functions with increasing C turnover, including a shift from aromatic C to carbohydrate utilization accompanied by lower N uptake and P scavenging. Similar patterns of C, N and P acquisition, along with higher ribosomal RNA operon copy numbers, distinguished that microbial taxa positively correlated with C turnover. Considering such tradeoffs in genomic resource allocation patterns among taxa strengthened correlations between microbial community composition and C cycling, suggesting simplified guilds amenable to ecosystem modeling. Our results suggest that patterns of soil C turnover may reflect community-dependent metabolic shifts driven by resource allocation strategies, analogous to growth rate–stoichiometry coupling in animal and plant communities.
机译:与植物生长相似,土壤碳(C)循环受氮(N)和磷(P)的可用性限制。我们假设对土壤微生物C循环的化学计量控制可能是由具有不同营养底物偏好的功能性行业协会决定的。在一系列跨越5%到25%的土壤C(N:P从1:12到1:70)的稻田中,C周转与P的有效性最佳相关,并且仅在较低C(矿质)土壤中随着试验N的添加而增加。 N:P⩽16。微生物群落成员也随土壤化学计量而变化,但不随氮的添加而变化。 gun弹枪的基因组数据揭示了社区功能随着C营业额的增加而变化,包括从芳香族C转变为碳水化合物的利用,同时氮吸收和磷清除率降低。 C,N和P采集的相似模式,以及更高的核糖体RNA操纵子拷贝数,区分出微生物类群与C周转率呈正相关。考虑到类群之间的基因组资源分配模式之间的这种权衡,加强了微生物群落组成与碳循环之间的相关性,表明适用于生态系统建模的简化行会。我们的结果表明,土壤碳周转模式可能反映了资源分配策略驱动的社区依赖性代谢变化,类似于动植物群落中的增长率-化学计量耦合。

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