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地表太阳辐射减弱对小麦根际土壤微生物碳代谢指纹的影响

吴芳芳**,郑有飞,吴荣军,王锦旗,李萍   

  1. (南京信息工程大学环境科学与工程学院,江苏大气环境监测与污染控制高技术研究重点实验室, 南京 210044)
  • 出版日期:2014-04-10 发布日期:2014-04-10

Effects of reduced solar irradiance on soil microbial carbon metabolic fingerprint in maize rhizosphere.

WU Fang-fang**, ZHENG You-fei, WU Rong-jun, WANG Jin-qi, LI Ping   

  1. (Jiangsu Key Laboratory of Atmospheric Environmental Monitoring and Pollution Control HighTech Research, Nanjing University of Information Science & Technology, Nanjing 210044, China)
  • Online:2014-04-10 Published:2014-04-10

摘要:

采用遮荫网设置4个太阳辐射通量梯度(20%、40%、60%、100%),对小麦生长季麦田土壤进行太阳辐射减弱的试验,用BIOLOG生态测试板(ECO MicroPlate),采用孔平均颜色变化率法(average well-color development, AWCD)测定不同太阳辐射通量处理下的冬小麦根际土壤微生物利用单一碳源的能力,计算微生物群落多样性指数,对不同碳源的利用率进行主成分分析,重复2年的试验,研究太阳辐射减弱对麦田土壤微生物多样性的影响。结果表明:1)太阳辐射减弱,土壤微生物对单一碳源的利用速度降低,碳源分解的总量降低;2)土壤微生物优势种群、群落丰富度和个体数量在群落中的分布状况未受到太阳辐射减弱的直接影响;3)微生物对大多数碳源的代谢能力减弱,糖类代谢受辐射减弱的影响最大,变异度最高。结果说明,小麦根际土壤微生物碳代谢受地表太阳辐射减弱的影响,这为了解大气环境变化对土壤微生态的影响提供了参考。
 

关键词: 黄瓜, 干旱, 不定根, 钙离子, 一氧化氮, 抗氧化酶

Abstract: The effects of reduced solar irradiance on soil microbial diversity in winter wheat (Triticum aestivum) rhizosphere were investigated in a two-year experiment using a shading method. Solar irradiance was reduced by 20%, 40%, and 60%, respectively, with unshading as controls. The catabolic ability of single carbon source was measured by BIOLOG ECO MicroPlate. Average well-color development (AWCD), soil microbial diversity index and principal component analysis (PCA) were calculated. The results showed that, under the reduced solar irradiance, the catabolic ability of single carbon source was decreased, with a slower decomposition rate of total carbon sources. However, we found no obvious influence of reduced solar irradiance on dominant soil microbial populations, community richness, and the number of individuals in the community. The microorganisms weakened their ability to metabolize majority of carbon sources under the reduced solar irradiance. The metabolism of saccharides was most affected, with a greater variation compared to other carbon sources. The results indicate that microbial carbon metabolism in the wheat rhizosphere soil was affected by the reduced solar irradiance. This study provided a reference for understanding the impact of atmospheric environmental change on soil microecology.

Key words: cucumber, drought, adventitious root, calcium ion, nitric oxide, antioxidant enzymes