Essential Site Maintenance: Authorea-powered sites will be updated circa 15:00-17:00 Eastern on Tuesday 5 November.
There should be no interruption to normal services, but please contact us at [email protected] in case you face any issues.

loading page

Variations in soil microbial community diversity and structure under different types of degradation wetland in Sanjing Plain, northeastern China
  • +3
  • Yining Wu,
  • Nan Xu,
  • He Wang,
  • Jinbo Li,
  • Haixiu Zhong,
  • Cheng Zong
Yining Wu
Northeast Forestry University

Corresponding Author:[email protected]

Author Profile
Nan Xu
Haerbin University
Author Profile
He Wang
Northeast Forestry University
Author Profile
Jinbo Li
Heilongjiang Academy of Sciences Institute of Natural Resources and Ecology
Author Profile
Haixiu Zhong
Heilongjiang Academy of Sciences Institute of Natural Resources and Ecology
Author Profile
Cheng Zong
Northeast Forestry University
Author Profile

Abstract

Sanjiang Plain is the largest area of freshwater wetland in China. Due to agricultural development, a large volume of groundwater in this area has been extracted over the last few decades, resulting in degradation of the wetland. In order to provide information for the development and protection of wetland ecosystems, investigations examining processes of wetland degradation are important. The aim of this work was to assess the effects of wetland degradation on soil microbial communities and soil characteristics under four different types of degradation wetland including swamp meadow (SW), meadow wetland (MW), paddy farmland (PF) and cropland (CL) in Sanjiang Plain. Using both 16S and ITS rRNA gene amplicon sequencing to analyze soil bacterial and fungal diversity and composition. The predominant bacterial and fungal phyla were Proteobacteria and Ascomycota in this study, respectively. Additionally, wetland degradation significantly increased the relative abundances of Chloroflexi and Gemmatimonadetes, but the relative abundances of Proteobacteria and Verrucomicrobia significantly decreased. Bacterial Shannon index of SW were lower than those in other sites. While, fungal diversity had no significant differences under different types of degradation wetland. Along with the wetland degradation, such differential responses of the microbial diversity and dominant phyla were significantly correlated with TP, TK, AK and SOM, which were the most important factors affecting soil microbial communities. Generally, these results suggested that wetland degradation could result in variations in soil microbial community composition structure. These changes could be used as an early warning signal for the degradation wetland in Sanjiang Plain.