Literature DB >> 25129927

[Effects of snow pack on soil nitrogen transformation enzyme activities in a subalpine Abies faxioniana forest of western Sichuan, China].

Li Xiong, Zhen-Feng Xu, Fu-Zhong Wu, Wan-Qin Yang, Rui Yin, Zhi-Ping Li, Xiao-Lin Gou, Shi-Shan Tang.   

Abstract

This study characterized the dynamics of the activities of urease, nitrate reductase and nitrite reductase in both soil organic layer and mineral soil layer under three depths of snow pack (deep snowpack, moderate snowpack and shallow snowpack) over the three critical periods (snow formed period, snow stable period, and snow melt period) in the subalpine Abies faxoniana forest of western Sichuan in the winter of 2012 and 2013. Throughout the winter, soil temperature under deep snowpack increased by 46.2% and 26.2%, respectively in comparison with moderate snowpack and shallow snowpack. In general, the three nitrogen-related soil enzyme activities under shallow snowpack were 0.8 to 3.9 times of those under deep snowpack during the winter. In the beginning and thawing periods of seasonal snow pack, shallow snowpack significantly increased the activities of urease, nitrate and nitrite reductase enzyme in both soil organic layer and mineral soil layer. Although the activities of the studied enzymes in soil organic layer and mineral soil layer were observed to be higher than those under deep- and moderate snowpacks in deep winter, no significant difference was found under the three snow packs. Meanwhile, the effects of snowpack on the activities of the measured enzymes were related with season, soil layer and enzyme type. Significant variations of the activities of nitrogen-related enzymes were found in three critical periods over the winter, and the three measured soil enzymes were significantly higher in organic layer than in mineral layer. In addition, the activities of the three measured soil enzymes were closely related with temperature and moisture in soils. In conclusion, the decrease of snow pack induced by winter warming might increase the activities of soil enzymes related with nitrogen transformation and further stimulate the process of wintertime nitrogen transformation in soils of the subalpine forest.

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Year:  2014        PMID: 25129927

Source DB:  PubMed          Journal:  Ying Yong Sheng Tai Xue Bao        ISSN: 1001-9332


  2 in total

1.  Effects of naphthalene on soil fauna abundance and enzyme activity in the subalpine forest of western Sichuan, China.

Authors:  Yuwei Liu; Fan Yang; Wanqin Yang; Fuzhong Wu; Zhenfeng Xu; Yang Liu; Li Zhang; Kai Yue; Xiangyin Ni; Liying Lan; Ya Chen; Bo Tan
Journal:  Sci Rep       Date:  2019-02-26       Impact factor: 4.379

2.  Naphthalene exerts substantial nontarget effects on soil nitrogen mineralization processes in a subalpine forest soil: A microcosm study.

Authors:  Bo Tan; Fan Yang; Liying Lan; Chengming You; Jian Zhang; Zhenfeng Xu; Yang Liu; Li Zhang; Han Li
Journal:  PLoS One       Date:  2019-05-20       Impact factor: 3.240

  2 in total

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