期刊文献+

黄土区地膜覆盖对麦田土壤微生物体碳的影响 被引量:47

Effect of plastic film mulching on soil microbial biomass in spring wheat field in semi-arid loess area.
在线阅读 下载PDF
导出
摘要 研究了1999年(丰水年)和2000年(干旱年)旱地条件下不同时间覆膜(不覆膜、覆膜30 d、覆膜60d和全程覆膜)对春小麦(Triticum aestivum)农田土壤微生物体碳的影响。结果表明,1999年土壤微生物体碳平均为335.3 mg·kg^(-1)干土,2000年平均为259.3 mg·kg^(-1)干土,前者高出后者29.37%。2年中最高微生物体碳均出现在全程覆膜处理。1999年,土壤微生物体碳在覆膜60d时即接近最高值,该处理籽粒产量也最高。2000年,由于春小麦生育后期降水丰富,在整个生育期中,微生物体碳增长表现为“增长-平稳甚至出现下降-再增长”的梯形方式,到生育后期,各处理之间才出现显著差异,全程覆膜处理的微生物体碳后期大幅度增加,与1999年接近。2年中各处理的C/N处于7.732~9.042之间,远低于11.3的临界值,C/P处于300.8~719.6之间,均高于300的临界值,不利于土壤微生物体碳的增加,微生物和作物对土壤有效态氮和磷的吸收处于竞争状态,表明该农田生态系统有机质严重不足,已经构成了限制作物生产力发挥的重要因素,长期地膜覆盖和大量使用化肥将加剧这一问题的严重性。 This paper studied the effect of different periods of plastic film mulching (M0-no mulching, M30-mulching for 30 days, M60)-mulching for 60 days, and M-mulching for whole growth period) on soil microbial biomass carbon (SMBC) of spring wheat field in semi-arid loess plateau. The mean SMBC in 1999 and 2000 was 335. 3 and 259.3 mg.kg-1 dry soil, respectively. It was 29. 3% higher in 1999 than in 2000. The highest SMBC was recorded at the harvest stage in M treatment for the two years. In 1999, a wet year with more rainfall, the SMBC of M60 and M treatments was significantly higher than those of MO and M30 in the mid-period of growth, reached its top at the end of the growth period. The highest grain yield was also achieved in M60.It was a dry year in 2000, but rainfall was rich in the latter growth period of spring wheat. SMBC increased at the beginning period of growth, and did not increase during the mid-growth period. It increased again during the latter period of growth, and showed a significant difference among the treatments. At the harvest stage of 2000, SMBC in M0 was the highest among all the treatments. It was similar between M and M60, and lower than that of M30. In the two years, the ratio of C/N ranged between 7.732~ 9.042, being lower than the threshold of 11.3, and the ratio of C/P was 300. 8-719.6, being higher than the threshold of 300. The two parameters showed that the increase of SMBC was inhibited because of the competition of soil available nutrients between soil microbes and crops. These indicated that soil organic matter content was so shortage that it became the key factor to restrict crop productivity. Under this condition, increasing crop productivity through the input of chemical fertilizers would conceal the problem of soil degradation, and result in a further decrease of soil quality. A long term plastic film mulching would make the problem more serious.
出处 《应用生态学报》 CAS CSCD 2003年第9期1512-1516,共5页 Chinese Journal of Applied Ecology
基金 国家重点基础研究发展规划项目(2000018603) 基础研究重大项目前期研究专项资助
关键词 地膜覆盖 土壤微生物体碳 植物营养 春小麦 土壤质量 半干旱黄土高原 Plastic film mulching, Soil microbial biomass carbon, Spring wheat, Plant nutrition, Soil quality,Semi-arid Loess Plateau.
  • 相关文献

参考文献20

  • 1Wang Q (王谦).Analyses and evaluation of agro-climate resources in Dingxi County of Gansu Province[J].Agric Res Arid Areas(干旱区研究),1988,2(1):69-74.
  • 2俞慎,李勇,王俊华,车玉萍,潘映华,李振高.土壤微生物生物量作为红壤质量生物指标的探讨[J].土壤学报,1999,36(3):413-422. 被引量:164
  • 3张成娥 刘国彬 陈小利.Micro-organism.enzyme activities and biomass in soils in hillside fields under varied patterns of land use[J].J Soil Sci(土壤科学),1999,30(3):101-103.
  • 4Bonde AT, Schniirer J, Rosswall T. 1988. Microbial biomass as a fraction of potentially mineralizable N in soil from long-term field experiments. Soil Biol Bichem, 20(4) : 447-452.
  • 5Bottner P. 1985. Response of microbial biomass to alternate moist and dry conditions in soil incubated with ^14C and ^15N--Labelled plant material. Soil Biol chem, 17:329-337.
  • 6Carter MR and White RP. 1986. Determination of variability in soils physical properties and microbial biomass under continuous direct-phnted corn. Can J Soil Sci, 66 : 747- 750.
  • 7Carter MR. 1986. Microbial biomass as an index for tillage-induced changes in soil biological properties. Soil Tillage Res, 7:29-40.
  • 8Chen W-X(陈文新).1990.Soil Science and Environmental Microbiology.Beijing:Beiiing Agricultural University Press.(in Chinese).
  • 9Duxbury JM, Lauren JG, Fruci JR. 1991. Measurement of the biologically active soil nitrogen fraction by is N technique. Agric Ecosyst Environ, 14(1) : 54-58.
  • 10Franzluebbers AJ, Hons FM, Zuberer DA. 1987. Seasonal changes in soil microbial biomass and mineralizable C and N wheat management systems. Soil Biol Biochem, 26 : 1469-1475.

二级参考文献2

  • 1杜丽娟 文启孝 等.应用费尔恩法测定氯化钠盐土或底土中的有机碳[J].土壤,1982,14(4):149-151.
  • 2杜丽娟,土壤,1984年,14卷,4期,149页

共引文献163

同被引文献791

引证文献47

二级引证文献1047

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