Chinese Journal of Applied Ecology ›› 2016, Vol. 27 ›› Issue (8): 2467-2476.doi: 10.13287/j.1001-9332.201608.037
• CONTENTS • Previous Articles Next Articles
ZHOU Ji-dong1,2, SHI Rong-jiu1, ZHAO Feng1, HAN Si-qin1, ZHANG Ying1*
Received:
2015-12-30
Published:
2016-08-18
Contact:
* E-mail: yzhang@iae.ac.cn
Supported by:
ZHOU Ji-dong, SHI Rong-jiu, ZHAO Feng, HAN Si-qin, ZHANG Ying. Effects of the frequency and intensity of nitrogen addition on soil pH, the contents of carbon, nitrogen and phosphorus in temperate steppe in Inner Mongolia, China.[J]. Chinese Journal of Applied Ecology, 2016, 27(8): 2467-2476.
[1] Goulding KW. Nitrogen deposition to land from the atmosphere. Soil Use and Management, 1990, 6: 61-63 [2] Solberg S, Andreassen K, Clarke N, et al. The possible influence of nitrogen and acid deposition on forest growth in Norway. Forest Ecology and Management, 2004, 192: 241-249 [3] Paulot F, Jacob DJ, Henze DK. Sources and processes contributing to nitrogen deposition: An adjoint model analysis applied to biodiversity hotspots worldwide. Environmental Science and Technology, 2013, 47: 3226-3233 [4] Song H-H (宋欢欢), Jiang C-M (姜春明), Yu W-T (宇万太). Basic features and monitoring methodologies of atmospheric nitrogen deposition. Chinese Journal of Applied Ecology (应用生态学报), 2014, 25(2): 599-610 (in Chinese) [5] Zhu J, He N, Wang Q, et al. The composition, spatial patterns, and influencing factors of atmospheric wet nitrogen deposition in Chinese terrestrial ecosystems. Science of the Total Environment, 2015, 511: 777-785 [6] Jia YL, Yu GR, He NP, et al. Spatial and decadal variations in inorganic nitrogen wet deposition in China induced by human activity. Scientific Reports, 2014, 4: 3763 [7] Zheng X, Fu C, Xu X, et al. The Asian nitrogen cycle case study. Ambio, 2002, 31: 79-87 [8] Liu XJ, Zhang Y, Han WX, et al. Enhanced nitrogen deposition over China. Nature, 2013, 494: 459-463 [9] Liu X, Duan L, Mo J, et al. Nitrogen deposition and its ecological impact in China: An overview. Environmental Pollution, 2011, 159: 2251-2264 [10] Lv C, Tian H. Spatial and temporal patterns of nitrogen deposition in China: Synthesis of observational data. Journal of Geophysical Research: Atmospheres, 2007, 112: 1-10 [11] Zhang J (张 菊), Kang R-H (康荣华), Zhao B (赵斌), et al. Monitoring nitrogen deposition on temperate grassland in Inner Mongolia. Environmental Science (环境科学), 2013, 34(9): 3552-3556 (in Chinese) [12] Li C-C (李琛琛), Liu N (刘 宁), Guo J-P (郭晋平), et al. Short term effect of nitrogen deposition on needle of larix and forest soil. Ecology and Environmental Sciences (生态环境学报), 2014, 23(12): 1924-1932 (in Chinese) [13] Luo X-B (罗献宝), Liang R-B (梁瑞标), Wang Y-X (王亚欣). Response of soil microbial carbon and nitrogen pools to increasing atmospheric nitrogen deposition in forest surface soil. Ecology and Environmental Sciences (生态环境学报), 2014, 23(3): 365-370 (in Chinese) [14] Liu J-C (刘建才), Chen J-L (陈金玲), Jin G-Z (金光泽). Response of soil organic carbon and nutrients to simulated nitrogen deposition in typical mixed broadleaved-Korean pine forest. Bulletin of Botanical Research (植物研究), 2014, 34(1): 121-130 (in Chinese) [15] Han X (韩 雪), Wang C-M (王春梅), Lin Z-L (蔺照兰). Effects of simulated nitrogen deposition on temperate forest litter decomposition. Ecology and Environmental Sciences (生态环境学报), 2014, 23(9): 1503-1508 (in Chinese) [16] Liu XJ, Duan L, Mo JM, et al. Nitrogen deposition and its ecological impact in China: An overview. Environmental Pollution, 2011, 159: 2251-2264 [17] Harpole WS, Tilman D. Grassland species loss resulting from reduced niche dimension. Nature, 2007, 446:791-793 [18] Hautier Y, Niklaus PA, Hector A. Competition for light causes plant biodiversity loss after eutrophication. Science, 2009, 324: 636-638 [19] Stevens CJ, Thompson K, Grime JP, et al. Contribution of acidification and eutrophication to declines in species richness of calcifuge grasslands along a gradient of atmospheric nitrogen deposition. Functional Ecology, 2010, 24: 478-484 [20] Li L-J (李禄军), Zeng D-H (曾德慧), Yu Z-Y (于占源), et al. Effects of nitrogen addition on grassland species diversity and productivity in Keerqin Sandy land. Chinese Journal of Applied Ecology (应用生态学报), 2009, 20(8): 1838-1844 (in Chinese) [21] Tu Y (涂 玉), You Y-M (尤业明), Sun J-X (孙建新). Effects of forest floor litter and nitrogen addition on soil microbial biomass C and N and microbial activity in a mixed Pinus tabulaeformis and Quercus liaotungensis forest stand in Shanxi Province of China. Chinese Journal of Applied Ecology (应用生态学报), 2012, 23(9): 2325-2331 (in Chinese) [22] Vitousek PM, Aber JD, Howarth RW, et al. Human alteration of the global nitrogen cycle: Sources and consequences. Ecological Applications, 1997, 7: 737-750 [23] Bergkvist BO, Folkeson L. Soil acidification and element fluxes of a Fagus sylvatica forest as influenced by simulated nitrogen deposition. Water, Air, and Soil Pollution, 1992, 65: 111-133 [24] Fierer N, Jackson RB. The diversity and biogeography of soil bacterial communities. Proceedings of the National Academy of Sciences of the United States of America, 2006, 103: 626-631 [25] Rousk J, Bååth E, Brookes PC, et al. Soil bacterial and fungal communities across a pH gradient in an arable soil. The ISME Journal, 2010, 4: 1340-1351 [26] Zhou X-B (周晓兵), Zhang Y-M (张元明). Review on the ecological effects of N deposition in arid and semi-arid areas. Acta Ecologica Sinica (生态学报), 2009, 29(7): 3835-3845 (in Chinese) [27] Qi Y (祁 瑜), Mulder J, Duan L (段 雷), et al. Short-term effects of simulating nitrogen deposition on soil organic carbon in a Stipa krylovii steppe. Acta Ecologica Sinica (生态学报), 2015, 35(4): 1104-1113 (in Chinese) [28] Yang S (杨 山), Li X-B (李小彬), Wang R-Z (王汝振), et al. Effects of nitrogen and water addition on soil bacterial diversity and community structure in temperate grasslands in northern China. Chinese Journal of Applied Ecology (应用生态学报), 2015, 26(3):739-746 (in Chinese) [29] Chen Z-Z (陈佐忠). Topography and climate of Xilin River Basin// Academia Sinica Inner Mongolia Grassland Ecosystem Research Station (中国科学院内蒙古草原生态系统定位研究站). Research on Grassland Ecosystem. 3th Ed. Beijing: Science Press, 1988: 13-22 (in Chinese) [30] Wang J-W (汪久文), Cai W-Q (蔡蔚祺). Studies on genesis, types and characteristics of the soils of the Xilin River Basin// Academia Sinica Inner Mongolia Grassland Ecosystem Research Station (中国科学院内蒙古草原生态系统定位研究站). Research on Grassland Ecosystem. 3th Ed. Beijing: Science Press, 1988: 23-83 (in Chinese) [31] Zhang Y-H (张云海), He N-P (何念鹏), Zhang G-M (张光明), et al. Nitrogen deposition and Leymus chinensis leaf chlorophyll content in Inner Mongolian grassland. Acta Ecologica Sinica (生态学报), 2013, 33(21): 6786-6794 (in Chinese) [32] Chu H, Grogan P. Soil microbial biomass, nutrient availability and nitrogen mineralization potential among vegetation-types in a low arctic tundra landscape. Plant and Soil, 2010, 329: 411-420 [33] Bao S-D (鲍士旦). Soil and Agricultural Chemistry Analysis. Beijing: China Agriculture Press, 2000: 107-110 (in Chinese) [34] The State Forestry Administration of the People’s Republic of China (中华人民共和国国家林业局). Determination of Total Phosphorus in Forest Soil (LY/T 1232—1999) [EB/OL]. (1999-11-01) [2015-10-19]. http://www.zbgb.org/25/StandardDetail734790.htm (in Chinese) [35] The State Forestry Administration of the People’s Republic of China (中华人民共和国国家林业局). Determination of Available Phosphorus in Forest Soil (LY/T 1233—1999) [EB/OL]. (1999-11-01) [2015-10-19]. http://www.zbgb.org/25/StandardDetail734791.htm (in Chinese) [36] Shi Y (施 瑶), Wang Z-Q (王忠强), Zhang X-Y (张心昱), et al. Effects of nitrogen and phosphorus addition on soil microbial community composition in temperate typical grassland in Inner Mongolia. Acta Ecologica Sinica (生态学报), 2014, 34(17): 4943-4949 (in Chinese) [37] Xu L-Q (许利群). Gley relative analysis of physics and chemistry properties on Chinese fir growth. Journal of Zhejiang Forestry Science and Technology (浙江林业科技),1993, 13(1): 47-56 (in Chinese) [38] Turner MM, Henry HA. Interactive effects of warming and increased nitrogen deposition on 15N tracer retention in a temperate old field: Seasonal trends. Global Change Biology, 2009, 15: 2885-2893 [39] Blake L, Goulding K. Effects of atmospheric deposition, soil pH and acidification on heavy metal contents in soils and vegetation of semi-natural ecosystems at Rothamsted Experimental Station, UK. Plant and Soil, 2002, 240: 235-251 [40] Aber JD, Magaill AH, Boone R, et al. Plant and soil responses to chronic nitrogen additions at the Harvard Forest, Massachusetts. Ecological Applications, 1993, 3: 156-166 [41] Sun B-H (孙本华), Hu Z-Y (胡正义), Lü J-L (吕家珑), et al. Nutrient leaching and acidification of southern China coniferous forest red soil under stimulated N deposition. Chinese Journal of Applied Ecology (应用生态学报), 2006, 17(10): 1820-182 (in Chinese) [42] Silveira ML, Liu K, Sollenberger LE, et al. Short-term effects of grazing intensity and nitrogen fertilization on soil organic carbon pools under perennial grass pastures in the southeastern USA. Soil Biology and Biochemistry, 2013, 58: 42-49 [43] Zhang N, Wan S, Li L, et al. Impacts of urea N addition on soil microbial community in a semi-arid tempe-rate steppe in northern China. Plant and Soil, 2008, 311: 19-28 [44] Wang S-P (王淑平), Zhou G-S (周广胜), Gao S-H (高素华), et al. Distribution of soil labile carbon along the northeast China transect (NECT) and its response to climatic change. Acta Phytoecologica Sinica (植物生态学报), 2003, 27(6): 780-785 (in Chinese) [45] Yang J-S (杨继松), Liu J-S (刘景双), Yu J-B (于君宝), et al. Dynamics of dissolved organic carbon (DOC) leaching in meadow marsh soil and related affecting factors. Chinese Journal of Applied Ecology (应用生态学报), 2006, 17(1): 113-117 (in Chinese) [46] Andersson S, Nilsson SI, Saetre P. Leaching of dissolved organic carbon (DOC) and dissolved organic nitrogen (DON) in mor humus as affected by temperature and pH. Soil Biology and Biochemistry, 2000, 32: 1-10 [47] Yano Y, McDowell WH, Aber JD. Biodegradable dissolved organic carbon in forest soil solution and effects of chronic nitrogen deposition. Soil Biology and Biochemistry, 2000, 32: 1743-1751 [48] Fang H-J (方华军), Cheng S-L (程淑兰), Yu G-R (于贵瑞). Research on process and mechanism of carbon and nitrogen leaching for forest soils. Progress in Geography (地理科学进展), 2007, 26(3): 29-37 (in Chinese) [49] Tao Z (陶 贞), Shen C-D (沈承德), Gao Q-Z (高全洲), et al. Soil organic carbon storage and vertical distribution of alpine meadow on the Tibetan Plateau. Acta Geographica Sinica (地理学报), 2006, 61(7): 720-728 (in Chinese) [50] Yang X-M (杨晓梅), Cheng J-M (程积民), Meng L (孟 蕾), et al. Features of soil organic carbon storage and vertical distribution in different forests. Chinese Agricultural Science Bulletin (中国农学通报), 2010, 26(9): 132-135 (in Chinese) [51] Wang B (王 波). Effects of Litter on Soil Physical and Chemical Properties in Leymus chinensis Grassland in Songnen Plain. Master Thesis. Changchun: Northeast Normal University, 2006 (in Chinese) [52] Zhang Y, Han X, He N, et al. Increase in ammonia volatilization from soil in response to N deposition in Inner Mongolia grasslands. Atmospheric Environment, 2014, 84: 156-162 [53] Chen L-X (陈立新), Duan W-B (段文标). Effects of simulated nitrogen deposition on soil available nitrogen forms and their contents in typical temperate forest stands. Chinese Journal of Applied Ecology (应用生态学报), 2011, 22(8): 2005-2012 (in Chinese) [54] Chapin III FS, Matson PA, Vitousek P. Principles of Terrestrial Ecosystem Ecology. Berlin, Germany: Springer-Verlag, 2011 [55] Li Y (李 银), Zeng S-C (曾曙才), Huang W-J (黄文娟). Effects of simulated nitrogen deposition on soil acid phosphomonoesterase activity and soil available phosphorus content in subtropical forests in Dinghushan Mountain. Chinese Journal of Applied Ecology (应用生态学报), 2011, 22(3): 631-636 (in Chinese) [56] Elser JJ, Bracken ME, Cleland EE, et al. Global analysis of nitrogen and phosphorus limitation of primary producers in freshwater, marine and terrestrial ecosystems. Ecology Letters, 2007, 10: 1135-1142 [57] Yuan Y-H (袁颖红), Fan H-B (樊后保), Wang Q (王 强), et al. Available nutrients with increased N deposition in soils of Cunninghamia lanceolata plantations. Journal of Zhejiang Forestry College (浙江林学院学报), 2007, 24(4): 437-444 (in Chinese) [58] Zhang YM, Wu N, Zhou GY, et al. Changes in enzyme activities of spruce (Picea balfouriana) forest soil as related to burning in the eastern Qinghai-Tibetan Plateau. Applied Soil Ecology, 2005, 30: 215-225 [59] Huang W-J (黄文娟), Liu J-X (刘菊秀), Tang X-L (唐旭利), et al. Inorganic nitrogen and available phosphorus concentrations in the soils of five forests at Dinghushan, China. Chinese Journal of Applied and Environmental Biology (应用与环境生物学报), 2009, 15(4): 441-447 (in Chinese) |
[1] | XIE Jingjin, XU Qiuyue, HE Min, XIA Yun, FAN Yuexin, YANG Liuming. Effects of forest regeneration types on phosphorus fractions of soil aggregates in subtropical forest [J]. Chinese Journal of Applied Ecology, 2024, 35(2): 330-338. |
[2] | SUN Guanfa, LU Mei, SHAN Shengyang, ZHAO Dingrong, SUN Yujia, LIU Guoqing, ZHAO Xuyan, FENG Jun. Effect of short-term nitrogen deposition on dry-wet seasonal variation of soil respiration in degraded Poa pratensis alpine meadow of the Napahai, Yunnan, China [J]. Chinese Journal of Applied Ecology, 2024, 35(2): 390-398. |
[3] | MA Xiaoming, LI Dan, LEI Jia, YU Jie, WANG Nan, HOU Xianqing, WEI Na, LI Rong. Influence of tillage methods combined with mulching on soil physical properties and potato yield in dry farming area under different precipitation years [J]. Chinese Journal of Applied Ecology, 2024, 35(2): 447-456. |
[4] | CHANG Jie, JU Xin, YI Likai, NING Yanan, DIAO Huajie, HAO Jie, WANG Changhui, DONG Kuanhu. Characteristics of anion and cation in rhizosphere soil of saline grassland in North China under different nitrogen addition levels [J]. Chinese Journal of Applied Ecology, 2024, 35(1): 212-218. |
[5] | KONG Dongyan, YANG Lingfang, DIAO Jingwen, GUO Peng. Meta-analysis on the effects of nitrogen deposition on soil N2O flux in different habitats [J]. Chinese Journal of Applied Ecology, 2023, 34(8): 2171-2177. |
[6] | DAI Zecheng, LIU Yuexiu, DANG Ning, WANG Zhirui, CAI Jiangping, ZHANG Yuge, SONG Yongbo, LI Hui, JIANG Yong. Short-term legacy effects of long-term nitrogen and water addition on soil chemical properties and micro-bial characteristics in a temperate grassland [J]. Chinese Journal of Applied Ecology, 2023, 34(7): 1834-1844. |
[7] | ZHANG Kunfeng, WANG Shaojun, WANG Ping, ZHANG Lulu, FAN Yuxiang, XIE Lingling, XIAO Bo, WANG Zhengjun, GUO Zhipeng. Effects of ant nesting on seasonal dynamics of soil N2O emission in a secondary tropical forest [J]. Chinese Journal of Applied Ecology, 2023, 34(5): 1218-1224. |
[8] | ZHANG Xiaowei, YANG Xianhe, CHE Haojie, QIN Jing, BI Huangai, AI Xizhen. Effects of rotted corn straw on soil environment, yield, and quality of cucumber [J]. Chinese Journal of Applied Ecology, 2023, 34(5): 1290-1296. |
[9] | LIU Yanji, LIU Zikai, JIN Shengsheng, DENG Huiyu, SHEN Jupei, HE Jizheng. Response of gene abundance of ammonia-oxidizing microorganisms and denitrifying microorganisms to nitrogen and phosphorus addition in subtropical forest. [J]. Chinese Journal of Applied Ecology, 2023, 34(3): 639-646. |
[10] | WEI Jinju, QIN Guobing, ZHANG Gengjin, JIA Lulu, ZHOU Jian, WU Jianfu, WEI Zongqiang. Effect of biochar with different particle sizes on the sorption-desorption characteristics of soil phosphorus. [J]. Chinese Journal of Applied Ecology, 2023, 34(3): 708-716. |
[11] | SHI Jia-mian, SONG Ge, LIU Shanshan, ZHENG Yong. Responses of arbuscular mycorrhizal fungal morphological traits and the diversity of spore-associated bacteria to simulated nitrogen deposition and drought in a Cunninghamia lanceolata plantation soil [J]. Chinese Journal of Applied Ecology, 2023, 34(12): 3291-3300. |
[12] | LIU Jiaqi, LIANG Yan, XIAO Fan, HAN Yiqing, HU Chuanxing, WEI Liuhong, DUAN Min. Main sources of soil phosphorus and their seasonal changes across different vegetation restoration stages in karst region of southwest China [J]. Chinese Journal of Applied Ecology, 2023, 34(12): 3313-3321. |
[13] | XU Heguang, LI Yali, HE Guoxing, LIU Xiaoni, JI Tong, XIAO Rong. Response of soil stoichiometric characteristics to climatic factors in temperate steppe of Longzhong region, China [J]. Chinese Journal of Applied Ecology, 2023, 34(11): 3003-3010. |
[14] | WANG Yihuan, JIN Yidan, JIANG Mingkai, MA Shuqin, CHEN Youchao, CAI Yanjiang. Short-term nitrogen deposition changes chemical composition of litter and soil organic matter in a Moso bamboo forest [J]. Chinese Journal of Applied Ecology, 2023, 34(10): 2593-2600. |
[15] | GAO Jun, YANG Jian-ying, SHI Chang-qing, GONG Bo, LIU Zi-jing. Understory plant diversity and soil physicochemical properties of Pinus tabuliformis artificial water conservation forests in the upper reaches of Miyun Reservoir, China [J]. Chinese Journal of Applied Ecology, 2022, 33(9): 2305-2313. |
Viewed | ||||||||||||||||||||||||||||||||||||||||||||||||||
Full text 34
|
|
|||||||||||||||||||||||||||||||||||||||||||||||||
Abstract 400
|
|
|||||||||||||||||||||||||||||||||||||||||||||||||