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三峡水库泄水期消落带土壤微生物活性

李飞,张文丽**,刘菊,夏会娟,王建柱   

  1. (三峡大学化学与生命科学学院, 湖北宜昌 443002)
  • 出版日期:2013-04-10 发布日期:2013-04-10

Soil microbial activities in the water-level-fluctuating zone of Three Gorges Reservoir area during discharging period.

LI Fei, ZHANG Wen-li**, LIU Ju, XIA Hui-juan, WANG Jian-zhu   

  1. (College of Chemistry and Life Science, China Three Gorges University, Yichang 443002, Hubei, China)
  • Online:2013-04-10 Published:2013-04-10

摘要: 以三峡库区香溪河消落带土壤为对象,研究泄水期(5—8月)消落带不同海拔土壤理化性质及微生物活性,旨在揭示三峡库区消落带土壤质量变化趋势。结果表明: 随着海拔降低、淹水强度增强,消落带土壤含水量增加,pH值上升,土壤微生物生物量和微生物熵逐渐降低,土壤代谢熵显著增加,干湿交替区165 m以下土壤代谢熵显著高于未淹没区175~185 m。表明香溪河消落带低海拔土壤受江水淹没胁迫,pH值趋于碱性,土壤环境质量降低,不适宜微生物的生长。消落带各海拔土壤SOC、TN和C/N无显著差异;但干湿交替区土壤SOC、TN和C/N的变异系数降低,表明干湿交替是影响库区消落带土壤碳、氮分布的重要因子。相关分析显示,土壤C/N与SOC呈极显著正相关,说明香溪河消落带C/N的变化主要由SOC决定。

关键词: 烤烟, 植烟土壤, 生物炭, 微生物, 土壤呼吸速率

Abstract: Taking the soils at different altitudes in the water-level-fluctuating zone (WLFZ) of Xiangxi River of the Three Gorges Reservoir area as the objects, this paper studied their physicochemical properties and microbial activities during discharging period (May-August), aimed to reveal the variation trends of the soil quality in the WLFZ of the Three Gorges Reservoir area. With the decrease of altitude and the increase of flooding strength, the soil water content and pH value in the WLFZ increased, soil microbial biomass and microbial quotient decreased, and soil metabolic quotient (qCO2) increased significantly. The soil qCO2 in the cyclic wetting and drying area at the altitude below 165 m was significantly higher than that the in non-inundated area at the altitude 175-185 m. At the lower altitudes of the WLFZ, soil was subjected to flooding stress, soil pH tended to become alkaline, and soil quality decreased, being not suitable for the growth of microorganisms. No significant differences were observed in the soil organic carbon (SOC), total N, and C/N ratio at different altitudes of the WLFZ, but the coefficient of variation (CV) of the three soil parameters was relatively smaller in cyclic wetting and drying area. It  was suggested that cyclic wetting and drying was the main factor affecting the distributions of soil C and N in the WLFZ. Correlation analysis showed that soil C/N ratio had a significant positive correlation with SOC, which implied that the changes of soil C/N ratio in the WLFZ of Xiangxi River were mainly determined by the SOC.

Key words: flue-cured tobacco, tobacco-planting soil, biochar, microorganism, soil respiration rate.