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Quality of fresh organic matter affects priming of soil organic matter and substrate utilization patterns of microbes

机译:新鲜有机质的质量影响土壤有机质的启动和微生物的基质利用方式

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Changes in biogeochemical cycles and the climate system due to human activities are expected to change the quantity and quality of plant litter inputs to soils. How changing quality of fresh organic matter (FOM) might influence the priming effect (PE) on soil organic matter (SOM) mineralization is still under debate. Here we determined the PE induced by two 13C-labeled FOMs with contrasting nutritional quality (leaf vs. stalk of Zea mays L.). Soils from two different forest types yielded consistent results: soils amended with leaf tissue switched faster from negative PE to positive PE due to greater microbial growth compared to soils amended with stalks. However, after 16 d of incubation, soils amended with stalks had a higher PE than those amended with leaf. Phospholipid fatty acid (PLFA) results suggested that microbial demand for carbon and other nutrients was one of the major determinants of the PE observed. Therefore, consideration of both microbial demands for nutrients and FOM supply simultaneously is essential to understand the underlying mechanisms of PE. Our study provided evidence that changes in FOM quality could affect microbial utilization of substrate and PE on SOM mineralization, which may exacerbate global warming problems under future climate change.
机译:由于人类活动造成的生物地球化学循环和气候系统的变化有望改变植物凋落物输入土壤的数量和质量。新鲜有机质(FOM)的质量变化如何影响土壤有机质(SOM)矿化作用的引发效应(PE)仍在争论中。在这里,我们确定了由两个 13 C标记的FOM诱导的PE,其营养品质不同(玉米与玉米的茎对叶)。来自两种不同森林类型的土壤产生了一致的结果:与用秸秆改良的土壤相比,由于微生物生长更快,用叶片组织改良的土壤从负PE转换为正PE的速度更快。然而,在孵化16天后,用秸秆改良的土壤的PE高于用叶片改良的土壤。磷脂脂肪酸(PLFA)结果表明,微生物对碳和其他营养物质的需求是观察到的PE的主要决定因素之一。因此,同时考虑微生物对营养物的需求和FOM的供应对于理解PE的潜在机制至关重要。我们的研究提供了证据,表明FOM质量的变化会影响SOM矿化过程中基质和PE的微生物利用,这可能加剧未来气候变化下的全球变暖问题。

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