R Carrino-Kyker Sarah, P Coyle Kaitlin, A Kluber Laurel, J Burke David
The Holden Arboretum, Kirtland, OH 44094, USA.
Department of Biology, Case Western Reserve University, Cleveland, OH 44106, USA.
Microorganisms. 2019 Dec 18;8(1):1. doi: 10.3390/microorganisms8010001.
Chronic acid deposition affects many temperate hardwood forests of the northeastern United States, reduces soil pH and phosphorus (P) availability, and can alter the structure and function of soil microbial communities. The strategies that microorganisms possess for survival in acidic, low P soil come at a carbon (C) cost. Thus, how microbial communities respond to soil acidification in forests may be influenced by plant phenological stage as C allocation belowground varies; however, this remains largely unexplored. In this study, we examined microbial communities in an ecosystem level manipulative experiment where pH and/or P availability were elevated in three separate forests in Northeastern Ohio. Tag-encoded pyrosequencing was used to examine bacterial and fungal community structure at five time points across one year corresponding to plant phenological stages. We found significant effects of pH treatment and time on fungal and bacterial communities in soil. However, we found no interaction between pH treatment and time of sampling for fungal communities and only a weak interaction between pH elevation and time for bacterial communities, suggesting that microbial community responses to soil pH are largely independent of plant phenological stage. In addition, fungal communities were structured largely by site, suggesting that fungi were responding to differences between the forests, such as plant community differences.
长期的酸沉降影响美国东北部许多温带阔叶林,降低土壤pH值和磷(P)有效性,并能改变土壤微生物群落的结构和功能。微生物在酸性、低磷土壤中生存所采用的策略是以碳(C)为代价的。因此,森林中微生物群落对土壤酸化的反应可能受植物物候期的影响,因为地下碳分配会发生变化;然而,这在很大程度上仍未得到探索。在本研究中,我们在俄亥俄州东北部的三个不同森林中进行了一项生态系统水平的操纵实验,在该实验中提高了pH值和/或磷有效性,以此来研究微生物群落。利用标签编码焦磷酸测序技术,在对应植物物候期的一年中的五个时间点检测细菌和真菌群落结构。我们发现pH处理和时间对土壤中的真菌和细菌群落有显著影响。然而,我们发现真菌群落的pH处理和采样时间之间没有相互作用,而细菌群落的pH升高和时间之间只有微弱的相互作用,这表明微生物群落对土壤pH的反应在很大程度上独立于植物物候期。此外,真菌群落主要由地点构成,这表明真菌对森林之间的差异(如植物群落差异)做出了反应。