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[人工林根系分泌物碳氮比 对土壤理化性质及土壤呼吸的影响]

[Effects of root exudates C:N on soil physical and chemical characteristics and soil respiration in plantation].

作者信息

Zhang Hai-Long, Wu Run-Qin, Li Jia-Jia, Wang Rui-Qiang, Long Xiahou, Yang Chun-Xia, Shangguan Zhou-Ping

机构信息

College of Forestry, Northwest A&F University, Yangling 712100, Shaanxi, China.

State Key Laboratory of Soil Erosion and Dryland Agriculture on the Loess Plateau, Northwest A&F University, Yangling 712100, Shaanxi, China.

出版信息

Ying Yong Sheng Tai Xue Bao. 2022 Apr;33(4):949-956. doi: 10.13287/j.1001-9332.202204.013.

DOI:10.13287/j.1001-9332.202204.013
PMID:35543046
Abstract

We explored the effects of C:N ratio in root exudates of plantations on soil nutrient cycling and microbial activity on the Loess Plateau. We collected soil from the plantations with essentially identical habitat conditions and growing time of 15, 25, 35, and 45 years. By adding root exudates with different C:N ratios (N only, C:N=10, C:N=50, C:N=100, C only) to the soil and using deionized water as a control, we analyzed the effects of C:N ratio of root exudates on the physicochemical properties of elements such as carbon, nitrogen and phosphorus, soil pH, and soil respiration. The results showed that: 1) Organic carbon content was positively correlated with the C:N ratio of root exudates. Soil organic carbon (SOC) decomposition was faster when root exudates C:N=10. Higher C:N ratio of root exudates (C:N=100) could inhibit SOC decomposition, but only C addition had no significant effect on SOC. 2) Different root exudate C:N produced no significant influence on the total nitrogen. The addition of carbon promoted microbial uptake of ammonium nitrogen, while the addition of nitrogen promoted the nitrification of ammonium nitrogen. As the C:N ratio of root exudates increased, soil ammonium nitrogen content decreased. 3) The addition of nitrogen would reduce soil pH and increase soil total phosphorus content. 4) Soil respiration of plantations was positively correlated with the C:N ratio of root exudates. With the increases of C:N ratio, the promoting effect of root exudates on soil respiration at 25 and 35 years plantations was stronger. In conclusion, higher C:N ratio of root exudates will significantly promote the effect on soil respiration of plantations. Our results improved the understan-ding of the root-soil-microbial interactions in forests.

摘要

我们探究了黄土高原人工林根系分泌物碳氮比(C:N)对土壤养分循环及微生物活性的影响。我们从生长时间分别为15年、25年、35年和45年且生境条件基本相同的人工林中采集土壤。通过向土壤中添加不同碳氮比(仅添加氮、C:N = 10、C:N = 50、C:N = 100、仅添加碳)的根系分泌物,并以去离子水作为对照,分析了根系分泌物碳氮比对碳、氮、磷等元素的理化性质、土壤pH值及土壤呼吸的影响。结果表明:1)有机碳含量与根系分泌物碳氮比呈正相关。当根系分泌物C:N = 10时,土壤有机碳(SOC)分解更快。根系分泌物碳氮比更高时(C:N = 100)会抑制SOC分解,但仅添加碳对SOC无显著影响。2)不同根系分泌物碳氮比对全氮无显著影响。添加碳促进了微生物对铵态氮的吸收,而添加氮促进了铵态氮的硝化作用。随着根系分泌物碳氮比增加,土壤铵态氮含量降低。3)添加氮会降低土壤pH值并增加土壤总磷含量。4)人工林土壤呼吸与根系分泌物碳氮比呈正相关。随着碳氮比增加,根系分泌物对2

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