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[冻融对温带土壤中溶解态氮库、氮转化过程及细菌群落多样性的影响]

[Effects of freeze-thaw on dissolved nitrogen pool, nitrogen transformation processes and diversity of bacterial community in temperate soils].

作者信息

Pu Jia-Hui, Jiang Nan, Juan Ying-Hua, Chen Li-Jun

机构信息

Institute of Applied Ecology, Chinese Academy of Sciences, Shenyang 110016, China.

University of Chinese Academy of Sciences, Beijing 100049, China.

出版信息

Ying Yong Sheng Tai Xue Bao. 2020 Sep 15;31(9):2893-2902. doi: 10.13287/j.1001-9332.202009.033.

Abstract

Soil freeze-thaw could affect nitrogen (N) availability. The N transformation is closely related with soil microbes. The effect of soil freeze-thaw on the soil bacterial communities in the temperate zone is still not clear. We hypothesized that freeze-thaw events could affect the diversity and composition of bacterial communities, thereby changing the contents of soil dissolved nitrogen pools as well as the N transformation process. In this study, microcosms with different freeze-thaw cycles (six and fifteen cycles) were designed, with the constant temperature at 2 ℃ as the control. The results showed that the contents of dissolved total nitrogen, dissolved inorganic nitrogen, microbial biomass nitrogen and net nitrogen mineralization rate were decreased significantly in response to increasing cycles of freeze-thaw. The number of freeze-thaw cycles did not affect bacterial α diversity. In contrast, the duration of incubation was positively correlated with bacterial α diversity including Chao1 and Shannon indices. Freeze-thaw treatment significantly affected the function and composition of bacterial communities, but the number of freeze-thaw cycles had little effect on the bacterial community structure. The partial redundant analysis showed that under freeze-thaw treatments, both the composition and function of bacterial community were significantly related to soil dissolved N pools and N transformation processes.

摘要

土壤冻融作用会影响氮素有效性。氮素转化与土壤微生物密切相关。温带地区土壤冻融对土壤细菌群落的影响尚不清楚。我们推测,冻融事件会影响细菌群落的多样性和组成,从而改变土壤溶解态氮库的含量以及氮素转化过程。在本研究中,设计了不同冻融循环次数(6次和15次)的微宇宙实验,以2℃恒温处理作为对照。结果表明,随着冻融循环次数增加,溶解态总氮、溶解态无机氮、微生物生物量氮和净氮矿化率均显著降低。冻融循环次数对细菌α多样性没有影响。相反,培养时间与包括Chao1和香农指数在内的细菌α多样性呈正相关。冻融处理显著影响细菌群落的功能和组成,但冻融循环次数对细菌群落结构影响较小。偏冗余分析表明,在冻融处理下,细菌群落的组成和功能均与土壤溶解态氮库及氮素转化过程显著相关。

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