Department of Plant and Microbial Biology, University of California, Berkeley, Berkeley, California, USA.
Environ Microbiol. 2023 Nov;25(11):2498-2515. doi: 10.1111/1462-2920.16475. Epub 2023 Aug 8.
Prescribed fire is a critical strategy for mitigating the effects of catastrophic wildfires. While the above-ground response to fire has been well-documented, fewer studies have addressed the effect of prescribed fire on soil microorganisms. To understand how soil microbial communities respond to prescribed fire, we sampled four plots at a high temporal resolution (two burned, two controls), for 17 months, in a mixed conifer forest in northern California, USA. Using amplicon sequencing, we found that prescribed fire significantly altered both fungal and bacterial community structure. We found that most differentially abundant fungal taxa had a positive fold-change, while differentially abundant bacterial taxa generally had a negative fold-change. We tested the null hypothesis that these communities assembled due to neutral processes (i.e., drift and/or dispersal), finding that >90% of taxa fit this neutral prediction. However, a dynamic sub-community composed of burn-associated indicator taxa that were positively differentially abundant was enriched for non-neutral amplicon sequence variants, suggesting assembly via deterministic processes. In synthesizing these results, we identified 15 pyrophilous taxa with a significant and positive response to prescribed burns. Together, these results lay the foundation for building a process-driven understanding of microbial community assembly in the context of the classical disturbance regime of fire.
计划火烧是减轻灾难性野火影响的关键策略。虽然已经对火灾的地上响应进行了充分的研究,但对计划火烧对土壤微生物的影响的研究较少。为了了解土壤微生物群落对计划火烧的响应,我们在美国加利福尼亚州北部的一片混合针叶林中,以高时间分辨率(两个火烧,两个对照)对四个样地进行了 17 个月的采样。使用扩增子测序,我们发现计划火烧显著改变了真菌和细菌群落结构。我们发现,大多数差异丰度的真菌类群具有正的折叠变化,而差异丰度的细菌类群通常具有负的折叠变化。我们检验了这些群落是由于中性过程(即漂移和/或扩散)组装的零假设,发现 >90%的分类群符合中性预测。然而,一个由与火烧相关的正差异丰度的指示分类群组成的动态亚群落富含非中性扩增子序列变体,表明通过确定性过程进行组装。在综合这些结果时,我们确定了 15 个对计划火烧有显著和正响应的嗜热菌。总的来说,这些结果为在火的经典干扰模式背景下建立对微生物群落组装的过程驱动理解奠定了基础。