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Responses of soil microbial carbon metabolism  to the leaf litter composition in Liaohe River Nature Reserve of northern Hebei Province, China.

LI Tian-yu, KANG Feng-feng, HAN Hai-rong, GAO Jing, SONG Xiao-shuai, YU Shu, ZHAO Jin-long, YU Xiao-wen   

  1. (College of Forestry, Beijing Forestry University, Beijing 100083, China)
  • Online:2015-03-18 Published:2015-03-18

Abstract: Using litter bag method, we studied the effects of single and mixed litters from Betula platyphlla, Populus davidiana and Quercus mongolica on soil microbial biomass carbon (MBC), microbial respiration (MR) and microbial metabolic quotient (qCO2) in 0-5, 5-10 and 10-20 cm soil layers. The results showed that the average contents of MBC in 0-20 cm soil layer were 124.84, 325.29, 349.79 and 319.02 mg·kg-1 in the leaf litter removal treatment, Betula platyphlla treatment, Populus davidiana treatment and Quercus mongolica treatment, and the corresponding average rates of MR were 0.66, 1.12, 1.16 and 1.10 μg·g-1·h-1, respectively. Meanwhile, in 0-20 cm soil layer, the average contents of MBC in the treatments with single leaf litter, mixed litter of two plant species and mixed litter of three plant species were 331.37, 418.52 and 529.34 mg·kg-1, and the corresponding average rates of MR were 1.13, 1.30 and 1.46 μg·g-1·h-1, respectively. In contrast to the MBC and MR, qCO2 in soil showed a reverse pattern. Our study suggested that characteristics of microbial carbolic metabolism were influenced by litter quality. Namely, the treatment with high litter quality had higher MBC, MR and utilization efficiency of soil carbon, compared with the treatment with low litter quality. Moreover, mixture of different species of leaf litter improved soil microbial activities, increased utilization efficiency on soil carbon and promoted diversity of microbial metabolic pathways, which could then contribute to maintaining and enhancing soil quality of forestland.