兰州大学机构库 >生命科学学院
地膜覆盖和秸秆还田对玉米地与土壤氮素转化相关的土壤酶活性影响研究
Alternative TitleEffects of plastic film mulch and straw incorporation on soil nitrogen-transformation-related enzymes in maize-cropped farmlands
孔雪静
Subtype硕士
Thesis Advisor李小刚
2016-05-15
Degree Grantor兰州大学
Place of Conferral兰州
Degree Name硕士
Keyword氮素转化 秸秆还田 地膜覆盖 蛋白酶 脱氨酶 脱氢酶 脲酶
Abstract有研究发现地膜覆盖和秸秆还田能提高氮素矿化速率,而土壤氮素矿化主要由土壤微生物分泌的酶进行催化,目前对于影响氮素矿化速率快慢的直接原因鲜有研究。本实验致力于从与土壤氮素转化相关的几种重要的酶在玉米生长的几个重要时期的活性高低,为氮素周转过程做进一步的解释。主要得出以下结果: 1.地膜覆膜和秸秆还田均会提高土壤酶的活性。另外,蛋白酶,脱氨酶,脱氢酶的活性在玉米生长大喇叭口期达到最大值,而脲酶活性的最大值出现在抽穗期。 2.蛋白酶,脱氢酶,脱氨酶的活性在玉米生长时期呈现出极显著正相关的关系。 3.地膜覆盖会明显增加地温。 4.地膜覆盖和秸秆还田在玉米生长各个时期,均会提高土壤含水量。 5.地膜覆盖会降低土壤pH值,但秸秆还田对其影响不大。地膜覆盖会使土壤中有机碳含量和全氮含量有所下降,秸秆还田会增加土壤中的有机碳含量和全氮含量。覆膜和秸秆还田会提高土壤微生物碳氮。 综上结论可得,地膜覆盖和秸秆还田可明显提高与土壤氮素转化相关的酶活性;酶活性的高低与土壤氮素矿化速率的快慢相对应,说明可以通过测定与土壤氮素转化相关的酶活性高低来反应土壤氮素的矿化速率的快慢。
Other AbstractIn order to improve the status of natural hydrothermal condition of dry farming in Loess Plateau being not conducive to crop growth as well as low soil fertility, the study puts forward two measures including technology of whole covering on double edges and planting in catchment furrows, and straw incorporation to improve soil hydrothermal conditions in the area, increase the content of soil organic matter, and alleviate the status of low crop yield and poor growth condition. As an important part of soil fertility, the transformation, cycling and utilization efficiency of nitrogen are very important for crop growth. Study finds that plastic film mulch and straw incorporation promote mineralization of soil nitrogen, and soil nitrogen mineralization is mainly catalyzed by soil enzyme which is secreted by soil microorganism. The experiment focuses onmaking further explanation for nitrogen turnover processfrom high or low activity of several important enzymes related to soil nitrogen transformation in several important periods of maize growing, so as to make the cause of nitrogen turnover clear. This experiment conducted field trials in Yuzhong County, Lanzhou City, Gansu Province in 2014-2015 for two years, it set four treatments for arable land planted with maize, respectively bare land (CK), straw incorporation (S), plastic film mulch (M) and plastic film mulch + straw incorporation (SM), three groups repeat with random group. In important periods (seedling stage, jointing stage, heading stage, booting stage and mature stage) of maize growing, the study carries out dynamic measurement on protease, deaminase, dehydrogenase and urease, it also conducts measurement onsoil temperature, soil moisture content, microbial biomass carbon and nitrogen,pH value, organic carbon and total nitrogen of the experimental field. The following results are mainly obtained: 1. Plastic film mulch and straw incorporation will increase soil enzyme activity. Specifically, under the four treatments of crop growing in the same period, the activities of soil protease, deaminase and dehydrogenase under the treatment of membrane mulching + straw returning to field are the highest, soil protease activity under the treatment of bare land is the lowest, and enzyme activity under the two treatments of plastic membrane mulching and straw returning to field is between these two treatments; as for urease, enzyme activity under the treatment of straw incorporation is significantly higher th...
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Language中文
Document Type学位论文
Identifierhttps://ir.lzu.edu.cn/handle/262010/221547
Collection生命科学学院
Recommended Citation
GB/T 7714
孔雪静. 地膜覆盖和秸秆还田对玉米地与土壤氮素转化相关的土壤酶活性影响研究[D]. 兰州. 兰州大学,2016.
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