期刊文献+

Effects of Long-term Fertilization on Soil M icrobial Com m unity Structure,Labile Organic Carbon and Nitrogen and Enzym e Activity in Paddy Field and Upland 被引量:4

Effects of Long-term Fertilization on Soil M icrobial Com m unity Structure,Labile Organic Carbon and Nitrogen and Enzym e Activity in Paddy Field and Upland
下载PDF
导出
摘要 To investigate the effects of long-term fertilization systems on soil microbial community structure,labile organic carbon and nitrogen and enzyme activity in yellow sand paddy field and upland,a field experiment was conducted at the experimental station of Dongyang Institute of Maize Research in Zhejiang Province,China in 2009.The experiment consisted of six treatments with three replicates,and they were arranged in a completely randomized design,including no fertilization in paddy field (PCK),conventional fertilization in paddy field (PCF),formulated fertilization by soil testing in paddy field (PSTF),formulated fertilization by soil testing with organic manure in paddy field (PSTF+OF),conventional fertilization on upland (DCF),and formulated fertilization by soil testing with organic manure on upland (DSTF+OF).Soil nutrients,enzyme activity,microbial biomass and community structure were determined in 2015.The results showed that compared with no fertilization in paddy field (PCK),fertilization increased soil phosphorus and potassium content,and decreased pH value.No fertilization in paddy field (PCK) had no significant effect on soil culturable microorganisms in paddy field and upland,but formulated fertilization by soil testing with organic manure on upland (DSTF+OF) significantly increased the number of fungi.Formula fertilization by soil testing with organic manure (PSTF+OF) also significantly increased soil microbial biomass carbon and nitrogen in paddy field and upland.Moreover,fertilization had no significant effect on soil cellulase activity,but formula fertilization by soil testing with organic manure (PSTF+OF) significantly increased soil dehydrogenase and catalase activity.Therefore,long-term application of chemical fertilizer with organic fertilizer can effectively improve soil fertility. To investigate the effects of long-term fertilization systems on soil microbial community structure,labile organic carbon and nitrogen and enzyme activity in yellow sand paddy field and upland,a field experiment was conducted at the experimental station of Dongyang Institute of Maize Research in Zhejiang Province,China in 2009. The experiment consisted of six treatments with three replicates,and they were arranged in a completely randomized design,including no fertilization in paddy field( PCK),conventional fertilization in paddy field( PCF),formulated fertilization by soil testing in paddy field( PSTF),formulated fertilization by soil testing with organic manure in paddy field( PSTF + OF),conventional fertilization on upland( DCF),and formulated fertilization by soil testing with organic manure on upland( DSTF + OF). Soil nutrients,enzyme activity,microbial biomass and community structure were determined in 2015. The results showed that compared with no fertilization in paddy field( PCK),fertilization increased soil phosphorus and potassium content,and decreased p H value. No fertilization in paddy field( PCK) had no significant effect on soil culturable microorganisms in paddy field and upland,but formulated fertilization by soil testing with organic manure on upland( DSTF + OF) significantly increased the number of fungi. Formula fertilization by soil testing with organic manure( PSTF + OF) also significantly increased soil microbial biomass carbon and nitrogen in paddy field and upland. Moreover,fertilization had no significant effect on soil cellulase activity,but formula fertilization by soil testing with organic manure( PSTF + OF) significantly increased soil dehydrogenase and catalase activity. Therefore,long-term application of chemical fertilizer with organic fertilizer can effectively improve soil fertility.
出处 《Meteorological and Environmental Research》 CAS 2019年第5期105-111,共7页 气象与环境研究(英文版)
基金 Supported by National Modern Agricultural Industrial Technology System(CARS-02-69) Major Agriculture Science Foundation of Upland Grain Crops Breeding of Zhejiang Province(2016C02050-9-1) Project for Training of Youth Talents of Zhejiang Academy of Agricultural Sciences(2015)
关键词 Long-term fertilization Paddy field UPLAND Microbial community STRUCTURE SOIL enzyme ACTIVITY Long-term fertilization Paddy field Upland Microbial community structure Soil enzyme activity
  • 相关文献

参考文献12

二级参考文献227

共引文献891

同被引文献89

引证文献4

二级引证文献23

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部