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土层厚度对种植屋面土壤微生物群落功能的影响

俞伟,金雪梅,江振扬,袁在翔,关庆伟*   

  1. (南京林业大学南方现代林业协同创新中心, 南京林业大学生物与环境学院, 南京 210037)
  • 出版日期:2020-06-10 发布日期:2020-06-10

Effects of soil thickness on soil microbial community function of green roof.

YU Wei, JIN Xue-mei, JIANG Zhen-yang, YUAN Zai-xiang, GUAN Qing-wei*#br#   

  1. (Co-Innovation Center for Sustainable Forestry in Southern China, College of Biology and the Environment, Nanjing Forestry University, Nanjing 210037, China)
  • Online:2020-06-10 Published:2020-06-10

摘要: 采用控制性模拟试验方法,设置40、70、100 cm 3个土层厚度,研究了种植屋面土壤微生物群落功能和土层厚度之间的关系,尝试从土壤生物学角度揭示土层厚度在提高种植屋面整体生态功能方面所起的重要作用。结果表明,种植屋面土壤微生物群落代谢功能整体活性AWCD值、对碳源CI、AI、MI的代谢作用和McIntosh U指数,100 cm土层均显著大于其他土层(P<0.05),而70和40 cm土层之间大多差异不显著(P>0.05)。主成分分析(PCA)排序图显示,100 cm土层代表的微生物群落碳源代谢能力最强,而70和40 cm土层对多数碳源的代谢能力相当。土层厚度显著影响了高杆女贞胸径年生长率(AGR),从40到70 cm,AGR增加了11%;从70到100 cm,AGR增加了15%,增幅明显加大。种植屋面土层厚度对土壤微生物群落功能的影响和植物的生长率有着较好的一致性。合理的土层厚度能为种植屋面的生物提供适宜的生长环境,促进其生态效益的最大化。

关键词: 番茄幼苗, 缺铁, 亚适温, 硝酸盐胁迫

Abstract: We examined the relationship between soil microbial community function and soil  thickness in green roof under three soil  thicknesses (40, 70, and 100 cm), by using a control simulation test method. Our aim was to reveal the role of soil layer thickness in improving the overall ecological function of green roof from a perspective of soil biology. The results showed that the overall metabolic activity (AWCD) of soil microbial community, the metabolism of carbon sources CI, AI and MI, and the McIntosh U index under the 100 cm soil layer  were significantly larger than those under the other two thicknesses (P<0.05), while most of these indicators did not differ between 70 cm and 40 cm soil layer  (P>0.05). Results from PCA ordination plot displayed that carbon source metabolic ability of soil microbial community in 100 cm soil layer was the strongest, while that in 70 cm and 40 cm soil layer was generally similar. Soil thickness significantly affected the annual growth rate (AGR) of diameter at breast height of Ligustrum lucidumAit. AGR increased by 11% from 40 cm to 70 cm, and by 15% from 70 cm to 100 cm. The effects of soil thickness in green roof on soil microbial community function and plant growth rate had a good consistency. Reasonable soil thickness can provide suitable growing environment for roofing organisms and promote the maximization of their ecological benefits.

Key words: NO3- stress., omato seedlings, iron deficiency, suboptimal temperature