Li Ning, Li Huaxing, Zhu Fengjiao, Liu Yuanjin, Kuang Peirui
Environmental Science, South China Agricultural University, Guangzhou 510640, China.
Ying Yong Sheng Tai Xue Bao. 2006 Feb;17(2):285-90.
The study on the 64 vegetable garden soil samples in the Baiyuan District of Guangzhou City showed that there were significantly positive correlations of soil microbial biomass carbon (Cmic) with soil total N, alkali-hydrolygable N, available K, cation exchange capacity (CEC) and organic matter (OM), of soil microbial biomass nitrogen (Nmic) with soil total N, total P, CEC and OM, of soil basal respiration (SBR) with soil total N, alkali-hydrolygable N, available K, CEC and OM, of AWCD with soil total N and OM, and of Shannon diversity index with soil total N and CEC. Low alkali-hydrolygable N increased Cmic SBR, and metabolic quotient (qCO2), while high alkali-hydrolygable N decreased qCO2. High available P decreased Cmic, Nmic and microbial quotient, and a high ratio of available P to alkali-hydrolygable N was related to the decrease of Cmic, Nmic, Cmic/Nmic and SBR. It was suggested that there were significant correlations between soil microbial ecological characteristics and physico-chemical properties, and excessive available nutrients or inappropriate ratios of alkali-hydrolygable N to available P in soil were harmful to soil microbes.
对广州市白云区64个菜园土壤样本的研究表明,土壤微生物生物量碳(Cmic)与土壤全氮、碱解氮、速效钾、阳离子交换量(CEC)和有机质(OM)显著正相关;土壤微生物生物量氮(Nmic)与土壤全氮、全磷、CEC和OM显著正相关;土壤基础呼吸(SBR)与土壤全氮、碱解氮、速效钾、CEC和OM显著正相关;平均颜色变化率(AWCD)与土壤全氮和OM显著正相关;香农多样性指数与土壤全氮和CEC显著正相关。低碱解氮增加了Cmic、SBR和代谢商(qCO2),而高碱解氮降低了qCO2。高速效磷降低了Cmic、Nmic和微生物商,速效磷与碱解氮的高比例与Cmic、Nmic、Cmic/Nmic和SBR的降低有关。研究表明,土壤微生物生态特征与理化性质之间存在显著相关性,土壤中过量的速效养分或碱解氮与速效磷的比例不当对土壤微生物有害。