Chin J Plant Ecol ›› 2006, Vol. 30 ›› Issue (4): 553-562.DOI: 10.17521/cjpe.2006.0073
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HAN Bin1,2(), FAN Jiang-Wen1,*(
), ZHONG Hua-Ping1
Received:
2005-01-25
Online:
2006-01-25
Published:
2006-07-30
Contact:
FAN Jiang-Wen
HAN Bin, FAN Jiang-Wen, ZHONG Hua-Ping. GRASSLAND BIOMASS OF COMMUNITIES ALONG GRADIENTS OF THE INNER MONGOLIA GRASSLAND TRANSECT[J]. Chin J Plant Ecol, 2006, 30(4): 553-562.
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URL: https://www.plant-ecology.com/EN/10.17521/cjpe.2006.0073
最小值 Minimum value | 最大值 Maximum value | |
---|---|---|
海拔高度Altitude(H) (m) | 586 | 1 634 |
年平均气温Mean annual temperature(T) (℃) | -2.61 | 9.05 |
年降水量Annual precipitation(P) (mm) | 103.92 | 394.21 |
≥0 ℃年积温Accumulated temperature above zero(A0) (℃) | 2 215.16 | 4 065.01 |
≥10 ℃年积温Accumulated temperature above ten degree(A10) (℃) | 1 728 | 3 696 |
年平均相对湿度Mean annual relative humidity(R)(%) | 38.75 | 70.24 |
年实际日照总时数Annual hours of sunshine(S)(h) | 2 617.77 | 3 322.9 |
Table 1 Descriptive statistics of meteorological elements for all sampling sites
最小值 Minimum value | 最大值 Maximum value | |
---|---|---|
海拔高度Altitude(H) (m) | 586 | 1 634 |
年平均气温Mean annual temperature(T) (℃) | -2.61 | 9.05 |
年降水量Annual precipitation(P) (mm) | 103.92 | 394.21 |
≥0 ℃年积温Accumulated temperature above zero(A0) (℃) | 2 215.16 | 4 065.01 |
≥10 ℃年积温Accumulated temperature above ten degree(A10) (℃) | 1 728 | 3 696 |
年平均相对湿度Mean annual relative humidity(R)(%) | 38.75 | 70.24 |
年实际日照总时数Annual hours of sunshine(S)(h) | 2 617.77 | 3 322.9 |
rep|com | 总生物量 Total biomass | 地下生物量/地上生物量 Below-aboveground biomass ratio | 地上生物量 Aboveground biomass | 地下生物量 Belowground biomass |
---|---|---|---|---|
F检验计算值 Computed value of F test | 80.086 | 0.326 | 15.482 | 0.218 | 23.660 | 10.474 | 78.219 | 0.236 |
显著性水平 Significant level (p) | 0.722 | 0.000 | 0.805 | 0.000 | 0.232 | 0.000 | 0.790 | 0.000 |
Table 2 Tests of between-subjects effects
rep|com | 总生物量 Total biomass | 地下生物量/地上生物量 Below-aboveground biomass ratio | 地上生物量 Aboveground biomass | 地下生物量 Belowground biomass |
---|---|---|---|---|
F检验计算值 Computed value of F test | 80.086 | 0.326 | 15.482 | 0.218 | 23.660 | 10.474 | 78.219 | 0.236 |
显著性水平 Significant level (p) | 0.722 | 0.000 | 0.805 | 0.000 | 0.232 | 0.000 | 0.790 | 0.000 |
α=0.05 回归方法 Regression method | 总生物量 Total biomass | 地下生物量/地上生物量 Below-aboveground biomass ratio | 地上生物量 Aboveground biomass | 地下生物量 Belowground biomass | ||||||||||
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
全回归法 Enter | 向后剔除法 Backward | 全回归法 Enter | 向后剔除法 Backward | 全回归法 Enter | 向后剔除法 Backward | 全回归法 Enter | 向后剔除法 Backward | |||||||
复相关系数 Mutiple correlation coefficient (R) | 0.790 | 0.767 | 0.489 | 0.404 | 0.642 | 0.603 | 0.792 | 0.769 | ||||||
判定系数 Determination coefficient (R2) | 0.624 | 0.588 | 0.239 | 0.163 | 0.412 | 0.363 | 0.627 | 0.591 | ||||||
调整的判定系数 Adjusted determination coefficient ( | 0.537 | 0.551 | 0.064 | 0.087 | 0.276 | 0.305 | 0.541 | 0.554 | ||||||
显著性水平 Significant level (p) | 0.000 | 0.000 | 0.238 | 0.091 | 0.008 | 0.000 | 0.000 | 0.000 | ||||||
选入的参数 Variables entered | 全部All | E,T,P,A0 | 全部All | E,T,P,A0 | 全部All | N,T,P,S | 全部All | E,T,P,A0 |
Table 3 Statistics of regression for biomass with given factors by backward elimination
α=0.05 回归方法 Regression method | 总生物量 Total biomass | 地下生物量/地上生物量 Below-aboveground biomass ratio | 地上生物量 Aboveground biomass | 地下生物量 Belowground biomass | ||||||||||
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
全回归法 Enter | 向后剔除法 Backward | 全回归法 Enter | 向后剔除法 Backward | 全回归法 Enter | 向后剔除法 Backward | 全回归法 Enter | 向后剔除法 Backward | |||||||
复相关系数 Mutiple correlation coefficient (R) | 0.790 | 0.767 | 0.489 | 0.404 | 0.642 | 0.603 | 0.792 | 0.769 | ||||||
判定系数 Determination coefficient (R2) | 0.624 | 0.588 | 0.239 | 0.163 | 0.412 | 0.363 | 0.627 | 0.591 | ||||||
调整的判定系数 Adjusted determination coefficient ( | 0.537 | 0.551 | 0.064 | 0.087 | 0.276 | 0.305 | 0.541 | 0.554 | ||||||
显著性水平 Significant level (p) | 0.000 | 0.000 | 0.238 | 0.091 | 0.008 | 0.000 | 0.000 | 0.000 | ||||||
选入的参数 Variables entered | 全部All | E,T,P,A0 | 全部All | E,T,P,A0 | 全部All | N,T,P,S | 全部All | E,T,P,A0 |
[1] | Bai YF ( 白永飞), Li LH ( 李凌浩), Wang QB ( 王其兵), Zhang LX ( 张丽霞), Zhang Y ( 张焱), Chen ZZ ( 陈佐忠) (2000). Changes in plant species diversity and productivity along gradients of precipitation in the Xilin river basin, Inner Mongolia. Acta Phytoecologica Sinica (植物生态学报), 24, 667-673. (in Chinese with English abstract) |
[2] | Chen ZY ( 陈志银) (2000). Agrometeorology (农业气象学). Zhejiang Unerversity Press, Hangzhou, 159. (in Chinese) |
[3] | Chen ZZ ( 陈佐忠), Huang DH ( 黄德华), Zhang HF ( 张鸿芳) (1988). Study on the model of interrelation between belowground biomass and precipitation of Aneurolepidium chinense and Stipa grandis grassland in Inner Mongolia region. In: Inner Mongolia Grassland Ecosystem Research Station, Chinese Academy of Sciences(中国科学院内蒙古草原生态系统定位站)ed. Research on Grassland Ecosystem No.2(草原生态系统研究(第2集)). Science Press, Beijing, 20-25. (in Chinese) |
[4] | Coupland RT(1979). Grassland Ecosystems of the World: Analysis of Grasslands and Their Uses. Cambridge University Press, Cambridge. |
[5] | Coupland RT (1992). Mixed prairie. In: Coupland RT ed. Grasslands of the World. Cambridge University Press, Cambridge, 151-182. |
[6] | Gill RA, Kelly RH, Parton WJ, Day KA, Jackson RB, Morgan JA, Scurlock JMO, Tieszen LL, Castle JV, Ojima DS, Zhang XS(2002). Using simple environmental variables to estimate belowground productivity in grasslands. Global Ecology & Biogeography, 11, 79-86. |
[7] | Huang FX ( 黄富祥), Gao Q ( 高琼), Fu DS ( 傅德山), Liu ZD ( 刘振铎) (2001). Relation between climate variables and the aboveground biomass of Thymus mongolicus-Stipa bungeana community in steppe of Ordos Plateau, Inner Mongolia. Acta Ecologica Sinica (生态学报), 20, 1339-1346. (in Chinese with English abstract) |
[8] | Jiang S( 姜恕), Qi QH( 戚秋慧), Kong DZ( 孔德珍) (1985). The primary research about biomass of the Aneurolepidium chinense and Stipa grandis grassland community. In: Inner Mongolia Grassland Ecosystem Research Station, Chinese Academy of Sciences (中国科学院内蒙古草原生态系统定位站) ed. Research on Grassland Ecosystem No.1 (草原生态系统研究(第1集)). Science Press, Beijing, 12-22. (in Chinese) |
[9] | Koch GW, Scholes RJ, Steffen WL, Vitousek PM, Walker BH (1995). The IGBP Terrestrial Transects: Science Plan (IGBP Reports No.36). IGBP, Stockholm. |
[10] | Lauenroth WK (2000). Methods of estimating belowground net primary production. In: Sala OE, Jackson RB, Mooney HA, Howarth RW eds. Methods in Ecosystem Science. Springer, New York, 58-71. |
[11] | Li B ( 李博) (2000). Ecology (生态学). Higher Education Press, Beijing, 270-276. (in Chinese) |
[12] |
Ni J(2002). Carbon storage in grassland of China. Journal of Arid Environments, 50, 205-218.
DOI URL |
[13] | Ni J, Wang GH (2004). Northeast China Transect (NECT): ten-year synthesis and future challenges. Acta Botanica Sinica(植物学报), 46, 379-391. |
[14] |
Noy-Meir I(1973). Desert ecosystems: environment and producers. Annual Review of Ecology and Systematics, 4, 25-49.
DOI URL |
[15] | Paruelo JM, Epstein HE, Lauenroth WK, Burke IC (1997). ANPP estimates from NDVI for the Central Grassland Region of the United States. Ecology, 78, 953-958. |
[16] | Raich JW, Russell AE, Vitousek PM (1997). Primary productivity and ecosystem development along an elevational gradient on Mauna Loa, Hawaii. Ecology, 78, 707-721. |
[17] | Sala OE, Austin AT(2000). Methods of estimating aboveground net primary productivity. In: Sala OE, Jackson RB, Mooney HA, Howarth RW eds. Methods in Ecosystem Science. Springer, New York, 31-43. |
[18] | Shen YY( 沈禹颖), Yan SG( 阎顺国) , Zhu XY( 朱兴云), Zhao Y( 赵银) (1995). The primary productivity of saline pastures in Hexi Corridor. I. The seasonal dynamics of above- and underground biomass. Acta Prataculturae Sinica (草业学报), 4(2), 44-50. (in Chinese with English abstract) |
[19] | Wang Q ( 王权) (1997). Advance research on terrestrial transects. Advance in Earth Sciences (地球科学进展), 12, 43-50. (in Chinese with English abstract) |
[20] | Xi CF ( 席承藩) (1981). Summary of Natural Regionalization in China(中国自然区划概要). Science Press, Beijing. (in Chinese) |
[21] | Yu GR ( 于贵瑞) (2003). Global Change, Carbon Cycle and Storage in Terrestrial Ecosystem (全球变化与陆地生态系统碳循环和碳蓄积). China Meteorological Press, Beijing, 84. (in Chinese) |
[22] | Yu WT ( 宇万太), Yu YQ ( 于永强) (2001). Advance in the research of belowground biomass. Chinese Journal of Applied Ecology (应用生态学报), 12, 927-932. (in Chinese with English abstract) |
[23] | Zhang XS ( 张新时), Yang DA ( 杨奠安) (1995). Allocation and study on global change transect. Quaternary Sciences (第四纪研究), 1, 43-52. (in Chinese with English abstract) |
[24] | Zhang ZT ( 章祖同) (1990). Inner Mongolia Grassland in China (内蒙古草地资源). Inner Mongolia People's Press, Huhhot, 31-37, 318. (in Chinese) |
[25] | Zhou GS ( 周广胜), Wang YH ( 王玉辉), Jiang YL ( 蒋延玲) (2002). Global change and water-driven IGBP-NECT, Northeast China. Earth Science Frontiers (地学前缘), 9, 198-215. (in Chinese with English abstract) |
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