Microbial Functional Diversity, Biomass and Activity as Affected by Soil Surface Mulching in a Semiarid Farmland

PLoS One. 2016 Jul 14;11(7):e0159144. doi: 10.1371/journal.pone.0159144. eCollection 2016.

Abstract

Mulching is widely used to increase crop yield in semiarid regions in northwestern China, but little is known about the effect of different mulching systems on the microbial properties of the soil, which play an important role in agroecosystemic functioning and nutrient cycling. Based on a 4-year spring maize (Zea mays L.) field experiment at Changwu Agricultural and Ecological Experimental Station, Shaanxi, we evaluated the responses of soil microbial activity and crop to various management systems. The treatments were NMC (no mulching with inorganic N fertilizer), GMC (gravel mulching with inorganic N fertilizer), FMC (plastic-film mulching with inorganic N fertilizer) and FMO (plastic-film mulching with inorganic N fertilizer and organic manure addition). The results showed that the FMO soil had the highest contents of microbial biomass carbon and nitrogen, dehydrogenase activity, microbial activity and Shannon diversity index. The relative use of carbohydrates and amino acids by microbes was highest in the FMO soil, whereas the relative use of polymers, phenolic compounds and amines was highest in the soil in the NMC soil. Compared with the NMC, an increased but no significant trend of biomass production and nitrogen accumulation was observed under the GMC treatment. The FMC and FMO led a greater increase in biomass production than GMC and NMC. Compare with the NMC treatment, FMC increased grain yield, maize biomass and nitrogen accumulation by 62.2, 62.9 and 86.2%, but no significant difference was found between the FMO and FMC treatments. Some soil biological properties, i.e. microbial biomass carbon, microbial biomass nitrogen, being sensitive to the mulching and organic fertilizer, were significant correlated with yield and nitrogen availability. Film mulching over gravel mulching can serve as an effective measure for crop production and nutrient cycling, and plus organic fertilization additions may thus have improvements in the biological quality of the soil and its sustainability in the rainfall-limited semiarid region.

MeSH terms

  • Biodiversity
  • Biomass
  • China
  • Crop Production / methods*
  • Ecosystem
  • Fertilizers
  • Manure
  • Nitrogen / metabolism
  • Plastics
  • Rain
  • Soil / chemistry
  • Soil Microbiology*
  • Zea mays / growth & development
  • Zea mays / metabolism

Substances

  • Fertilizers
  • Manure
  • Plastics
  • Soil
  • Nitrogen

Grants and funding

This research was financially supported by the National Natural Science Foundation of China (51279197, 50809068) to YFS (http://www.nsfc.gov.cn/), the Fundamental Research Funds for the Central Universities (YQ2013009, 2452015493) to YFS (http://www.moe.gov.cn/), the Ministry of Science and Technology of China (2015CB150402) to SQL (http://www.most.gov.cn/) and Science and Technology Planning Project of Yangling Demonstration Zone, China (2014NY-30) to YFS (http://kjj.yangling.gov.cn/). The funders had no role in study design, data collection and analysis, decision to publish, or preparation of the manuscript.