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Transient biochar effects on decomposer microbial growth rates: evidence from two agricultural case-studies

机译:瞬时生物炭对分解微生物生长速率的影响:来自两个农业案例研究的证据

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We investigated the impact of biochar application on fungal (acetate incorporation into ergosterol) and bacterial (leucine incorporation) growth rates in two case studies: a temperate UK pasture soil and a Mediterranean Australian agricultural soil. We added biochar at similar rates per unit of soil organic carbon (SOC) and monitored both the immediate (after 1week equilibration) and longer-term (1-3years) effects. The immediate effect of the biochar applied to the UK soil was a decreased fungal-to-bacterial growth ratio, driven by greater bacterial growth. The immediate effect of biochar application to the Australian soils was subtle, only slightly increasing the fungal-to-bacterial growth ratio. In both case studies, the biochar effects were transient, and no long-term effects (1-3years) on microbial growth rates could be detected in either soil. The bacterial growth increase in the UK soil was probably related to a release of large amounts of labile C from the biochar, or as C released from the resident SOM caused by the biochar-induced pH increase. The increase in fungal-to-bacterial growth ratio could be related to a release of poor quality C in the Australian soils. There were immediate effects of biochar application on microbial growth in agricultural soils, but they were disparate between cases, making any generalization of mechanisms difficult. However, the microbial responses were consistently transient. Taken together, biochar application to agricultural soil appears to have an impact upon the decomposer community, suggesting limited resistance. However, the microbial functioning appeared resilient to these effects, stabilizing microbial communities to their initial state within 1-3years of application.
机译:在两个案例研究中,我们研究了生物炭施用对真菌(乙酸酯掺入麦角固醇)和细菌(亮氨酸掺入)生长速率的影响:英国的温带牧场土壤和澳大利亚的地中海农业土壤。我们以每单位土壤有机碳(SOC)的相似速率添加生物碳,并监测了即时(1周平衡后)和长期(1-3年)的影响。将生物炭应用于英国土壤的即时效果是,由于细菌生长的增加,真菌与细菌的生长比降低了。将生物炭应用于澳大利亚土壤的即时效果是微妙的,仅稍微增加了真菌与细菌的生长率。在这两个案例研究中,生物炭的影响都是短暂的,在两种土壤中均未检测到对微生物生长速率的长期影响(1-3年)。英国土壤中细菌的生长增加可能与生物炭中大量不稳定碳的释放有关,或者与生物炭引起的pH升高导致的居民SOM中的碳释放有关。真菌与细菌生长比率的增加可能与澳大利亚土壤中劣质碳的释放有关。生物炭施用对农业土壤中微生物的生长有直接的影响,但是在不同情况下它们是截然不同的,因此很难对任何机理进行概括。但是,微生物反应始终是短暂的。综上所述,将生物炭施用到农业土壤上似乎对分解者群体产生了影响,表明抵抗力有限。但是,微生物功能似乎对这些作用具有弹性,可在施用后1-3年内将微生物群落稳定在其初始状态。

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