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镁碱化盐土微生物生物量和土壤基础呼吸
引用本文:元炳成,刘 权,黄 伟,李凤成.镁碱化盐土微生物生物量和土壤基础呼吸[J].土壤,2011,43(1):67-71.
作者姓名:元炳成  刘 权  黄 伟  李凤成
作者单位:1. 北京师范大学珠海分校,广东珠海,519085
2. 甘肃广播电视大学,兰州,730030
基金项目:国家自然科学基金项目(30700104)资助
摘    要:通过测定甘肃河西走廊疏勒河中游昌马冲积扇缘不同镁碱度条件下10个采样点30个土样的化学性质和生物化学性质指标,研究了电导率和镁碱度对土壤微生物生物量及其基础呼吸的影响。结果表明:微生物生物量碳(氮)和土壤基础呼吸与电导率、镁碱度和Mg2+/Ca2+之间显著负相关,表明盐度和镁碱度对土壤微生物群落有显著的抑制作用,而且盐度的抑制作用比镁碱度更大;微生物代谢熵(qCO2)和电导率、镁碱度、Mg2+/Ca2+之间为正相关关系,也说明镁碱化盐土对土壤微生物而言是一种严重的胁迫环境。

关 键 词:电导率  镁碱度  Mg2+/Ca2+  微生物生物量  土壤基础呼吸  微生物代谢熵

Microbial biomass and basal soil respiration in alkalized magnesic soils
YUAN Bing-cheng,LIU Quan,HUANG Wei,LI Feng-cheng.Microbial biomass and basal soil respiration in alkalized magnesic soils[J].Soils,2011,43(1):67-71.
Authors:YUAN Bing-cheng  LIU Quan  HUANG Wei  LI Feng-cheng
Institution:College of Real Estate, Zhuhai Campus, Beijing Normal University
Abstract:The effects of EC (electrical conductivity of soil saturation paste) and Mg2+ alkalinity on soil microbial biomass and basal soil respiration in alkalized magnesic soils were investigated. The study was conducted along the border area of the alluvial fan of Chang Ma of Shu Le He River. Ten sites were chosen and thirty soil samples were taken. The results showed that microbial biomass C(N) and basal soil respiration negatively correlated with EC, exchangeable Mg2+ percentage and Mg2+/Ca2+, while the metabolic quotient (qCO2) positively correlated with EC, exchangeable Mg2+ percentage and Mg2+/Ca2+, which indicated the adverse effect that salinity and Mg2+ alkalinity stressec on soil microbial community.
Keywords:EC  Mg2+ alkalinity  Mg2+/Ca2+  Microbial biomass  Basal soil respiration  Metabolic quotient
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