Welcome to Chinese Journal of Applied Ecology! Today is Share:

Chinese Journal of Applied Ecology ›› 2016, Vol. 27 ›› Issue (10): 3361-3370.doi: 10.13287/j.1001-9332.201610.034

• CONTENTS • Previous Articles     Next Articles

Variations of soil microbial community composition and enzyme activities with different salinities on Yuyao coast, Zhejiang, China

SUN Hui1, ZHANG Jian-feng1*, XU Hua-sen1, CHEN Guang-cai1, WANG Li-ping2   

  1. 1Institute of Subtropical Forestry, Chinese Academy of Forestry, Fuyang 311400, Zhejiang, China;
    2Yuyao Forestry Technological Extension Station, Yuyao 315400, Zhejiang, China;
  • Received:2016-03-03 Published:2016-10-18
  • Contact: * E-mail: zhangk126@126.com
  • Supported by:
    This work was supported by the ‘948’ Project (2013-4-83) from State Forestry Administration of China.

Abstract: In October 2015, soil samples with different salinity were collected in a coast area in Yuyao, Zhejiang, and soil microbial community composition, soil catalase, urease activities, as well as soil physical and chemical properties were studied. The results showed that Nitrospira took absolute advantage in the bacterial community, and showed good correlations to total potassium. Cladosporium and Fusarium were predominant in the fungal community. Meanwhile, Cladosporium was related to soil urease and total nitrogen, and same correlation was found between Fusarium and soil urease. Catalase activity ranged from 3.52 to 4.56 mL·g-1, 3.08 to 4.61 mL·g-1 and 5.81 to 6.91 mL·g-1 for soils with heavy, medium and weak salinity, respectively. Catalase activity increased with the soil layer deepening, which was directly related to soil total potassium, and indirectly related to pH, organic matter, total nitrogen and total phosphorus through total potassium. Soil urease activity ranged among 0.04 to 0.52 mg·g-1, 0.08 to 1.07 mg·g-1 and 0.27 to 8.21 mg·g-1 for each saline soil, respectively. Urease activity decreased with soil layer deepening which was directly related to soil total nitrogen, and was indirectly related to pH, organic matter and total potassium through total nitrogen. The total phosphorus was the largest effect factor on the bacterial community CCA ordination, and the urease was on fungal community.

Key words: soil microorganism, soil enzyme, saline soil, vegetation restoration, canonical correspondence analysis, path analysis