土壤水分、气温和垃圾养分多样性对土壤微生物群落和念珠菌数量的交互影响

IF 3.1 2区 环境科学与生态学 Q2 ECOLOGY Oikos Pub Date : 2024-04-08 DOI:10.1111/oik.10345
Charlotte Biryol, Adriane Aupic‐Samain, Caroline Lecareux, Thierry Gauquelin, Virginie Baldy, Mathieu Santonja
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引用次数: 0

摘要

土壤生物在森林生态系统的碳和养分循环中发挥着关键作用。虽然土壤生物受枯落物化学的影响很大,而且对非生物条件非常敏感,但人们对这两个因素的交互影响知之甚少。为了填补这一知识空白,我们进行了为期 10 周的微观世界实验,模拟气候变化对土壤生态的影响。更具体地说,我们研究了枯落物养分浓度、微生物生物量、鞘翅目昆虫种群参数和枯落物分解之间的关系,探索了气温升高和土壤湿度降低的潜在影响。为了形成养分浓度梯度,我们用从柞树及其伴生树种收集的材料制作了六种树木枯落物混合物。与微生物不同的是,我们观察到鞘翅目昆虫的丰度和枯落物的分解受到土壤湿度和气温的交互影响:气温升高对鞘翅目昆虫丰度的负面影响因土壤湿度降低而放大,而气温升高对枯落物分解的正面影响在土壤湿度降低的条件下消失。与真菌相反,细菌生物量和褶菌数量对垃圾养分浓度的反应取决于非生物条件。更具体地说,在更干燥或更温暖的条件下,养分(尤其是钙和镁)与细菌生物量和褶菌数量之间的关系就不那么稳固或消失了。总之,我们的研究结果表明,持续的气候变化可能会直接或间接地影响土壤中的生物,改变它们对枯落物养分浓度的反应。此外,我们还发现,营养丰富的栖息地可能比营养贫瘠的栖息地更容易受到气候条件变化的影响。
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Interactive effects of soil moisture, air temperature and litter nutrient diversity on soil microbial communities and Folsomia candida population
Soil organisms play a key role in carbon and nutrient cycling in forest ecosystems. While soil organisms are strongly influenced by litter chemistry and are highly sensitive to abiotic conditions, little is known about the interactive effects of these two factors. To address this gap in knowledge, we conducted a 10 week microcosm experiment in which we simulated the effects of climate change on soil ecology. More specifically, we studied relationships among litter nutrient concentration, microbial biomass, Collembola demographic parameters, and litter decomposition, exploring the potential impacts of increasing air temperature and decreasing soil moisture. To develop a gradient of nutrient concentrations, we created six tree litter mixtures with materials gathered from Quercus pubescens and its companion species. In contrast to microbes, we observed that Collembola abundance and litter decomposition were interactively affected by soil moisture and air temperature: the negative effect of increasing air temperature on Collembola abundance was amplified by reduced soil moisture, whereas the positive effect of increasing air temperature on litter decomposition disappeared under reduced soil moisture conditions. In contrast to fungi, the response of bacterial biomass and Collembola abundance to litter nutrient concentration was dependent on abiotic conditions. More specifically, the relationships between nutrients, especially calcium and magnesium, and bacterial biomass and Collembola abundance were less robust or disappeared under drier or warmer conditions. In conclusion, our findings underscore that ongoing climate change could affect soil organisms directly as well as indirectly, by altering their responses to litter nutrient concentrations. In addition, we found that nutrient‐rich habitats might be more affected than nutrient‐poor habitats by altered climatic conditions.
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来源期刊
Oikos
Oikos 环境科学-生态学
CiteScore
6.20
自引率
5.90%
发文量
152
审稿时长
6-12 weeks
期刊介绍: Oikos publishes original and innovative research on all aspects of ecology, defined as organism-environment interactions at various spatiotemporal scales, so including macroecology and evolutionary ecology. Emphasis is on theoretical and empirical work aimed at generalization and synthesis across taxa, systems and ecological disciplines. Papers can contribute to new developments in ecology by reporting novel theory or critical empirical results, and "synthesis" can include developing new theory, tests of general hypotheses, or bringing together established or emerging areas of ecology. Confirming or extending the established literature, by for example showing results that are novel for a new taxon, or purely applied research, is given low priority.
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