College of Life Sciences, Shihezi University, Shihezi, 832000, China.
Environ Microbiol Rep. 2022 Aug;14(4):479-493. doi: 10.1111/1758-2229.13065. Epub 2022 Apr 3.
Fairy rings (FRs) are common ecological grassland landscapes that have been studied for a long time. However, little is known about their interactions with soil physicochemical properties and bacterial communities. This study performed high-throughput sequencing of the 16S rRNA V3-V4 variable regions of soil bacteria in the three concentric zones of chosen FR, namely, the ON zone, on the ring; IN zone, inside the ring; and OUT zone, outside the ring. Also, the change in physicochemical properties and enzyme activities of the soil were determined. This study found that the nutrients and enzyme activities on the ring were higher than inside and outside of the ring. The activities of microorganisms were frequent and the plant grew splendidly. The bacterial species diversity was the lowest on the ring with the main genera Pseudonocardia, Streptosporangium, Kribbella and Promicromonospora. The imbalance of the microbial community structure at different ring zones may be the driving factor for the continuous outward expansion of FRs. Soil available phosphorus, electrical conductivity, total nitrogen and organic matter positively correlated with the distribution of FR soil bacteria.
仙女环(FRs)是一种常见的草原生态景观,长期以来一直受到研究。然而,对于它们与土壤理化性质和细菌群落的相互作用,人们知之甚少。本研究对所选 FR 的三个同心区域(ON 区,环上;IN 区,环内;和 OUT 区,环外)的土壤细菌 16S rRNA V3-V4 可变区进行了高通量测序,同时还测定了土壤理化性质和酶活性的变化。本研究发现,环上的养分和酶活性高于环内和环外。微生物活动频繁,植物生长茂盛。环上的细菌物种多样性最低,主要属为拟诺卡氏菌、链霉菌属、克里贝拉菌和原单胞菌属。不同环区微生物群落结构的失衡可能是 FR 不断向外扩张的驱动因素。土壤有效磷、电导率、全氮和有机质与 FR 土壤细菌的分布呈正相关。