期刊文献+

增温下土壤资源异质分布对杉木幼苗生长的影响 被引量:7

Effects of heterogeneous distribution of soil resources on the growth of Chinese fir seedlings under warming
原文传递
导出
摘要 在福建三明森林生态系统与全球变化研究站陈大观测点开展大气温度控制、土壤温度控制和土壤资源分布3因子试验,探讨土壤资源异质分布和增温对杉木幼苗地下和地上生长的影响,以及增温是否能改变杉木幼苗细根对土壤资源异质分布的识别度,以明确杉木人工林在全球变暖背景下对土壤资源异质分布的响应.结果表明:杉木对土壤资源异质分布的识别度主要体现在吸收根(0~1 mm径级)上,而1~2 mm径级细根则不具有识别度.除了单独大气增温处理对杉木1~2 mm径级细根的避贫系数具有显著影响外,不同增温处理均未对杉木幼树细根的贫富比、趋富系数和避贫系数产生显著影响.与土壤资源均质分布相比,土壤资源异质分布增加了0~1 mm径级细根生物量,降低了树高.与无大气增温相比,大气增温降低了0~1和0~2 mm径级细根生物量,增加了树高.与无土壤增温相比,土壤增温降低了1~2 mm径级细根生物量,但增加了树高和侧枝长度.大气增温控制、土壤增温控制和土壤资源异质分布对杉木地下、地上生长都无显著交互作用.杉木幼苗吸收根本身对土壤资源异质分布具有识别度,但增温并不会改变杉木幼苗细根对土壤资源异质分布的识别度. A three-factor experiment with air temperature manipulation, soil temperature manipulation and nutrients distribution pattern was conducted in Forest Ecosystem and Global Change Research Station of Fujian Normal University in Chenda, Sanming, Fujian Province. We examined the effects of heterogeneous distribution of soil resources and warming on underground and aboveground growth of Chinese fir(Cunninghamia lanceolata) seedlings, and whether warming could change the recognition of fine roots to the heterogeneous distribution of soil resources, to understand the response of Chinese fir seedlings to heterogeneous distribution of soil resources under the background of global warming. The results showed that the recognition degree of Chinese fir to the nutrients distribution pattern was mainly reflected by the absorbing root(0-1 mm diameter class) rather than by the 1-2 mm diameter class fine roots. There were no significant effects of warming on the ratio of fine root biomass between nutrient-poor and nutrient-rich patches, the coefficient of nutrients-avoidance and the coefficient of nutrients-preference of fine roots of young Chinese fir except for the single air warming. Chinese fir had higher fine root biomass(0-1 mm diameter class) and lower height in the heterogeneous soil resource environment. Air warming decreased the biomass of fine roots(both 0-1 and 0-2 mm diameter classes) and increased the height of trees. Soil warming decreased the fine root biomass of 1-2 mm diameter class and increased the height of trees and the length of lateral branches. There was no significant interactive effect of air warming, soil warming and heterogeneity of soil resource on aboveground and belowground growth of Chinese fir. The results demonstrated that the absorbing roots of Chinese fir seedlings could recognize the heterogeneous distribution of soil resources,which was not altered by warming.
作者 姜琦 陈光水 陈廷廷 张礼宏 闫晓俊 熊德成 JIANG Qi;CHEN Guang-shui;CHEN Ting-ting;ZHANG Li-hong;YAN Xiaojun;XIONG De-cheng(College of Geographical Sciences,Fujian Normal University/Cultivation Base of State Key Laboratory of Humid Subtropical Mountain Ecology,Fuzhou 350007,China)
出处 《应用生态学报》 CAS CSCD 北大核心 2019年第7期2156-2164,共9页 Chinese Journal of Applied Ecology
基金 国家自然科学基金重点项目(31830014)资助~~
关键词 土壤资源异质分布 细根 增温 养分斑块 heterogeneous distribution of soil resource fine root warming nutrient patch
  • 相关文献

参考文献2

二级参考文献60

  • 1罗武庭.DJ—2可变矩形电子束曝光机的DMA驱动程序[J].LSI制造与测试,1989,10(4):20-26. 被引量:373
  • 2Bouma, T. J., Yanai, R. D., Elkin, A. D., Hartmond, U., Flores- Alva, D. E. and Eissenstat, D. M. 2001. Estimating age- dependent costs and benefits of roots with contrasting life span: comparing apples and oranges. New Phytol. 150: 685- 695.
  • 3Campbell, B. D. and Grime, J. P. 1989. A comparative study of plant responsiveness to the duration of episodes of mineral nutrient enrichment. New Phytol. 112: 261-267.
  • 4Campbell, B. D., Grime, J. P. and Mackey, J. M. L. 1991. A trade-off between scale and precision in resource foraging. Oecologia. 87:532 -538.
  • 5Charnov, E. L. 1976. Optimal foraging: Attack strategy of a mantid. Am. Nat. 110:141- 151.
  • 6Comas, L. H., Eissenstat, D. M. and Lakso, A. N. 2000. Asse- ssing root death and root system dynamics in a study of grape canopy pruning. New Phytol. 147: 171-178.
  • 7Drew, M. C. 1975. Comparison of the effects of a localized sup- ply of phosphate, nitrate, ammonium and potassium on the growth of the seminal root system, and the shoot, in barley. New Phytol. 75: 479-490.
  • 8McNickle, G. G. and Cahill, J. F. Jr. 2009. Plant root growth and the marginal value theorem. PNAS. 106: 4747-4751.
  • 9Eissenstat, D. M. 1991. On the relationship between specific root length and the rate of root proliferation: a field study using citrus rootstocks. New Phytol. 118:63- 68.
  • 10Forde, B. G. 2002. Local and long-range signaling pathways re- gulating plant responses to nitrate. Annu. Rev. Plant Biol. 53: 203-224.

共引文献20

同被引文献95

引证文献7

二级引证文献54

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部