Chin J Plant Ecol ›› 2010, Vol. 34 ›› Issue (10): 1165-1173.DOI: 10.3773/j.issn.1005-264x.2010.10.005
• Research Articles • Previous Articles Next Articles
SUN Ju1,2, LI Xiu-Zhen1,*(), WANG Xian-Wei1,2, LÜ Jiu-Jun1,2, LI Zong-Mei1,2, HU Yuan-Man1
Received:
2009-12-28
Accepted:
2010-02-01
Online:
2010-12-28
Published:
2010-10-31
Contact:
LI Xiu-Zhen
SUN Ju, LI Xiu-Zhen, WANG Xian-Wei, LÜ Jiu-Jun, LI Zong-Mei, HU Yuan-Man. Analysis of structures of permafrost wetland plant communities along environmental gradients in the Da Hinggan Mountains, China[J]. Chin J Plant Ecol, 2010, 34(10): 1165-1173.
Fig. 2 Two-dimensional DCCA ordination diagram of 24 permafrost wetlands plant communities. Al, altitude; La, latitude; H, mean annual humidity; Lo, longitude; P, mean annual precipitation; S, mean annual sunshine; T, mean annual air temperature. I, predominantly continuous permafrost; II, predominantly continuous and island permafrost; III, sparely island permafrost; 1-24, sampling sites.
冻土区类型 Permafrost type | 大片多年冻土区 Predominantly continuous permafrost | 大片-岛状多年冻土区 Predominantly continuous and island permafrost | 稀疏岛状多年冻土区 Sparely island permafrost |
---|---|---|---|
样地 Sampling sites | 1-16 | 17-20 | 21-24 |
纬度 Latitude (N) | 50.69°-53.20° | 49.57°-50.38° | 48.83°-49.20° |
经度 Longitude (E) | 121.52°-123.00° | 121.23°-121.71° | 120.80°-121.31° |
海拔 Altitude (m) | 443-836 | 748-817 | 680-782 |
年平均气温 Mean annual air temperature (℃) | -4.2a | -3.0b | -1.1c |
年平均降水量 Mean annual precipitation (mm) | 437.2a | 431.1ab | 423.4b |
年平均湿度 Mean annual humidity (%) | 69.8a | 68.3b | 65.7c |
年平均日照时间 Mean annual sunshine time (h) | 2 450.8a | 2 586.7b | 2 680.7c |
多年冻土的连续性 Continuity of permafrost | 75%-60% | 60%-30% | < 30% |
群落描述 Description of communities | 主要优势灌木和草本植物为柴桦(Betula fruticosa)和白毛羊胡子草(Eriophorum vaginatum), 泥炭藓(Sphagnum spp.)的盖度为0-90% The main dominant shrubs and herbaceous plants were Betula fruticosa and Eriophorum vaginatum. The coverage of Sphagnum spp. was 0-90%. | 主要优势灌木和草本植物为柴桦(B. fruticosa)和大穗薹草 (Carex rhynchophysa), 无泥炭藓(Sphagnum spp.) The main dominant shrubs and herbaceous plants were B. fruticosa and Carex rhynchophysa. There was no Sphagnum spp. in 24 plots. | 主要优势灌木和草本植物为卷边柳(Salix siuzerii)和臌囊薹草(C. schmidtii), 无泥炭藓(Sphagnum spp.) The main dominant shrubs and herbaceous plants were Salix siuzerii and C. schmidtii. There was no Sphagnum spp. in 24 plots. |
Table 1 Environmental characteristics in the three types of permafrost
冻土区类型 Permafrost type | 大片多年冻土区 Predominantly continuous permafrost | 大片-岛状多年冻土区 Predominantly continuous and island permafrost | 稀疏岛状多年冻土区 Sparely island permafrost |
---|---|---|---|
样地 Sampling sites | 1-16 | 17-20 | 21-24 |
纬度 Latitude (N) | 50.69°-53.20° | 49.57°-50.38° | 48.83°-49.20° |
经度 Longitude (E) | 121.52°-123.00° | 121.23°-121.71° | 120.80°-121.31° |
海拔 Altitude (m) | 443-836 | 748-817 | 680-782 |
年平均气温 Mean annual air temperature (℃) | -4.2a | -3.0b | -1.1c |
年平均降水量 Mean annual precipitation (mm) | 437.2a | 431.1ab | 423.4b |
年平均湿度 Mean annual humidity (%) | 69.8a | 68.3b | 65.7c |
年平均日照时间 Mean annual sunshine time (h) | 2 450.8a | 2 586.7b | 2 680.7c |
多年冻土的连续性 Continuity of permafrost | 75%-60% | 60%-30% | < 30% |
群落描述 Description of communities | 主要优势灌木和草本植物为柴桦(Betula fruticosa)和白毛羊胡子草(Eriophorum vaginatum), 泥炭藓(Sphagnum spp.)的盖度为0-90% The main dominant shrubs and herbaceous plants were Betula fruticosa and Eriophorum vaginatum. The coverage of Sphagnum spp. was 0-90%. | 主要优势灌木和草本植物为柴桦(B. fruticosa)和大穗薹草 (Carex rhynchophysa), 无泥炭藓(Sphagnum spp.) The main dominant shrubs and herbaceous plants were B. fruticosa and Carex rhynchophysa. There was no Sphagnum spp. in 24 plots. | 主要优势灌木和草本植物为卷边柳(Salix siuzerii)和臌囊薹草(C. schmidtii), 无泥炭藓(Sphagnum spp.) The main dominant shrubs and herbaceous plants were Salix siuzerii and C. schmidtii. There was no Sphagnum spp. in 24 plots. |
Fig. 3 Changes of species diversity of marsh plants in different types of permafrost. Different small letters indicate significant difference at 0.05 level. I, II, III, see Fig. 2.
生活型 Life form | 大片多年冻土区 Predominantly continuous permafrost | 大片-岛状多年冻土区 Predominantly continuous and island permafrost | 稀疏岛状多年冻土区 Sparely island permafrost | df | F 值 F value |
---|---|---|---|---|---|
高位芽植物 Phanerophytes | 1.047a | 1.000b | 1.000b | 2 | 7.816* |
地上芽植物 Chamaephytes | 0.004a | 0.001a | 0.000a | 2 | 0.292 |
地面芽植物 Hemicryptophytes | 0.866a | 0.819a | 0.825a | 2 | 0.920 |
地下芽植物 Geophytes | 0.079a | 0.177b | 0.168b | 2 | 6.127* |
一年生植物 Therophytes | 0.003a | 0.002a | 0.007a | 2 | 0.381 |
Table 2 Importance values of life forms of wetland plants in the three types of permafrost
生活型 Life form | 大片多年冻土区 Predominantly continuous permafrost | 大片-岛状多年冻土区 Predominantly continuous and island permafrost | 稀疏岛状多年冻土区 Sparely island permafrost | df | F 值 F value |
---|---|---|---|---|---|
高位芽植物 Phanerophytes | 1.047a | 1.000b | 1.000b | 2 | 7.816* |
地上芽植物 Chamaephytes | 0.004a | 0.001a | 0.000a | 2 | 0.292 |
地面芽植物 Hemicryptophytes | 0.866a | 0.819a | 0.825a | 2 | 0.920 |
地下芽植物 Geophytes | 0.079a | 0.177b | 0.168b | 2 | 6.127* |
一年生植物 Therophytes | 0.003a | 0.002a | 0.007a | 2 | 0.381 |
水分生态型 Hydro-ecotype | 大片多年冻土区 Predominantly continuous permafrost | 大片-岛状多年冻土区 Predominantly continuous and island permafrost | 稀疏岛状多年冻土区 Sparely island permafrost | df | F 值 F value |
---|---|---|---|---|---|
沼生植物 Helophytes | 0.809a | 0.593a | 0.147b | 2 | 13.956* |
湿生植物 Hygrophytes | 0.845a | 0.751a | 1.072b | 2 | 6.571* |
中生植物 Mesophytes | 0.346a | 0.651b | 0.775b | 2 | 7.681* |
旱生植物 Xerophils | 0.001a | 0.005b | 0.006ab | 2 | 4.060* |
Table 3 Importance values of hydro-ecotypes of wetland vegetation in the three types of permafrost
水分生态型 Hydro-ecotype | 大片多年冻土区 Predominantly continuous permafrost | 大片-岛状多年冻土区 Predominantly continuous and island permafrost | 稀疏岛状多年冻土区 Sparely island permafrost | df | F 值 F value |
---|---|---|---|---|---|
沼生植物 Helophytes | 0.809a | 0.593a | 0.147b | 2 | 13.956* |
湿生植物 Hygrophytes | 0.845a | 0.751a | 1.072b | 2 | 6.571* |
中生植物 Mesophytes | 0.346a | 0.651b | 0.775b | 2 | 7.681* |
旱生植物 Xerophils | 0.001a | 0.005b | 0.006ab | 2 | 4.060* |
[1] | Chang XL (常晓丽), Jin HJ (金会军), He RX (何瑞霞), Yang SZ (杨思忠), Yu SP (于少鹏), Lü LZ (吕兰芝), Guo DX (郭东信), Wang SL (王绍令), Kang XC (康兴成) (2008). Advances in permafrost and cold regions environments studies in the Da Xing’anling (Da Hinggan) Mountains, northeastern China. Journal of Glaciology and Gecryology (冰川冻土), 30, 176-182. (in Chinese with English abstract) |
[2] | Colwell RK, Huston MA (1991). Conceptual framework and research issues for species diversity at the community level. In: Solbrig OT ed. From Genes to Ecosystems: a Research Agenda for Diversity. International Union of Biological Sciences, Paris, France |
[3] | Cui KC (崔克城) (2002). Frozen soils characteristic and ecological environment protection in Daxing’anling cool temperature zone. Sichuan Forestry Exploration and Design (四川林勘设计), (3), 1-5. (in Chinese with English abstract) |
[4] |
de Mera AG, Hagen MA, Orellana JAV (1999). Aerophyte, a new life form in Raunkiaer’s classification? Journal of Vegetation Science, 10, 65-68.
DOI URL |
[5] | Gu ZW (顾钟炜), Zhou YW (周幼吾) (1994). The effects of climate warming and human turbulence on the permafrost in the northward slope of MT. Da Hinggan Ling—take a sample form Amur area. Acta Geographica Sinica (地理学报), 49, 182-187. (in Chinese with English abstract) |
[6] | Guo DX (郭东信), Wang SL (王绍令), Lu GW (鲁国威), Dai JB (戴竟波), Li EY (李恩英) (1981). Division of permafrost regions in Daxiao Hinggan Ling Northeast China. Journal of Glaclology and Gecryology (冰川冻土), 3(3), 1-9. (in Chinese with English abstract) |
[7] | Jin HJ (金会军), Yu SP (于少鹏), Lü LZ (吕兰芝), Guo DX (郭东信), Li YW (李英武) (2006). Degradation of permafrost in the Da and Xiao Hinggan Mountains, Northeast China, and preliminary assessment of its trend. Journal of Glaclology and Gecryology (冰川冻土), 28, 467-474. (in Chinese with English abstract) |
[8] |
Lande R (1982). A quantitative genetic theory of life history evolution. Ecology, 63, 607-615.
DOI URL |
[9] | Li B (李博), Yang C (杨持), Lin P (林鹏) (2004). Ecology (生态学). Higher Education Press, Beijing. (in Chinese) |
[10] | Li JD (李建东) (1978). A study on the basic life forms of the Northeast grassland. Journal of Jilin Normal University (Natural Science Edition) 吉林师范大学学报(自然科学版)), 10, 143-155. (in Chinese) |
[11] | Li JD (李建东), Yang YF (杨允菲) (2002). Analysis in structures of ecological and areal types for plant species in Leymus chinensis meadow in the Songnen Plains of China. Acta Prataculturae Sinica (草业学报), 11(4), 10-20. (in Chinese with English abstract) |
[12] | Liu SJ (刘守江), Su ZX (苏智先), Zhang JX (张璟霞), Hu JY (胡进耀) (2003). Perspectives of the research on life form in land plant communities. Journal of Sichuan Teachers College (Natural Science) 四川师范学院学报(自然科学版)), 24, 155-159. (in Chinese with English abstract) |
[13] | Lu GW (鲁国威), Weng BL (翁炳林), Guo DX (郭东信) (1993). The geographic boundary of permafrost in the Northeast of China. Journal of Glaclology and Gecryology (冰川冻土), 15, 214-218. (in Chinese with English abstract) |
[14] | Lü XG (吕宪国), Liu XH (刘晓辉) (2008). Wetland research progresses in China—Dedicated to the 50th anniversary of Northeast Institute of Geography and Agroecology, Chinese Academy of Sciences. Journal of Glaclology and Gecryology (冰川冻土), 28, 301-308. (in Chinese with English abstract) |
[15] | Ma KP (马克平), Liu MY (刘明玉) (1994). Method of measuring biodiversity of community. І. Method of measuring α-diversity. Chinese Biodiversity (生物多样性), 2, 231-239. (in Chinese with English abstract) |
[16] | Qiu GQ (邱国庆), Zhou YW (周幼吾), Cheng GD (程国栋), Guo DX (郭东信), Li SD (李树德) (2000). Geocryology in China (中国冻土). Science Press, Beijing. (in Chinese) |
[17] | Qiu Y (邱扬), Zhang JT (张金屯) (2000). The ordination axes clustering based on detrended canonical correspondence analysis ordination and its application to the analysis of the ecological gradients of plant communities. Acta Ecologica Sinica (生态学报), 20, 199-206. (in Chinese with English abstract) |
[18] | Raunkiaer C (1934). The Life Forms of Plants and Statistical Plant Geography. Oxford University Press, Oxford. |
[19] |
Sarmiento L, Llambi LD, Escalona A, Marquez N (2003). Vegetation patterns, regeneration rates and divergence in an old-field succession of the high tropical Andes. Plant Ecology, 166, 145-156.
DOI URL |
[20] | Shannon CE, Weaver W (1949). The Mathematical Theory of Communication. University of Illinois Press, Urbana, IL, USA. |
[21] | Sun GY (孙广友) (2000). Discussion on the symbiotic mechanisms of swamp with permafrost—taking Da-Xiao Hinggan Mountain as examples. Journal of Glaclology and Gecryology (冰川冻土), 22, 299-316. (in Chinese with English abstract) |
[22] | Sun J (孙菊), Li XZ (李秀珍), Hu YM (胡远满), Wang XW (王宪伟), Lü JJ (吕久俊), Li ZM (李宗梅), Chen HW (陈宏伟) (2009). Classification, species diversity, and species distribution gradient of permafrost wetland plant communities in Great Xing’an Mountains valleys of Northeast China. Chinese Journal of Applied Ecology (应用生态学报), 20, 2049-2056. (in Chinese with English abstract) |
[23] | Tan J (谭俊), Li XH (李秀华) (1995). Effects of global climate warming on degradation of Da Xinganling permafrost and move of Larix gmellini to north. Inner Mongolia Forestry Investigation and Design (内蒙古林业调查设计), (1), 24-31. (in Chinese) |
[24] | terBraak CJF, Šmilauer P (2002). Canoco Reference Manual and Canodraw for Windows: User’ Guide: Software for Canonical Community Ordination (Version 4.5). Microcomputer Power, Ithaca, NY. |
[25] | Tian YB (田应兵) (2005). The vegetation type and its distribution regularity under different habitats in Ruoergai Plateau. Journal of Yangtze University (Natural Science Edition) 长江大学学报(自然科学版)), 2(2), 1-6. (in Chinese with English abstract) |
[26] | Wang CH (王春鹤), Zhang BL (张宝林), Liu FT (刘福涛) (1996). A preliminary analysis on the regularity of permafrost degradation, its advantages and disadvantages in the Greater and Lesser Xing’an Mountains. Journal of Glaclology and Gecryology (冰川冻土), 18(Special Issue), 174-180. (in Chinese with English abstract) |
[27] | Yu YM (于砚民) (1995). Ecological environment of the wetland of Xinganling area and the countermeasures for its protection. Research of Environmental Sciences (环境科学研究), 8(6), 12-16. (in Chinese with English abstract) |
[28] | Yuan L (袁力), Zhao YS (赵雨森), Nie YZ (聂远志) (2006). Spatial distribution pattern of community biomass in the forest-wetland interlaced zone of Daxing’an Mountains. Journal of Northeast Forestry University (东北林业大学学报), 34(2), 11-14. (in Chinese with English abstract) |
[29] | Zheng HY (郑慧莹), Li JD (李建东) (1999). Recovery of Vegetation Living in Saline Soil and Saline-Alkaline Grassland in Songnen Plain (松嫩平原盐生植物与盐碱化草地的恢复). Higher Education Press, Beijing. (in Chinese) |
[30] | Zhou M (周梅), Yu XX (余新晓), Feng L (冯林), Wang LH (王林和), Na PS (那平山) (2003). Effects of permafrost and wetland in forests in Great Xing’an Mountains on ecology and environment. Journal of Beijing Forestry University (北京林业大学学报), 25, 91-93. (in Chinese with English abstract) |
[31] | Zhou YW (周幼吾), Guo DX (郭东信) (1982). Principal characteristics of permafrost in China. Journal of Glaclology and Gecryology (冰川冻土), 4(1), 1-19. (in Chinese with English abstract) |
[32] | Zhou YW (周幼吾), Wang YX (王银学), Gao XW (高兴旺), Yue HS (岳汉森) (1996). Ground temperature, permafrost distribution and climate warming in northeastern China. Journal of Glaclology and Gecryology (冰川冻土), 18(Special Issue), 139-147. (in Chinese with English abstract) |
[1] | NIU Yi-Di, CAI Ti-Jiu. Changes in species diversity and influencing factors in secondary forest succession in northern Da Hinggan Mountains [J]. Chin J Plant Ecol, 2024, 48(3): 349-363. |
[2] | LI Na, TANG Shi-Ming, GUO Jian-Ying, TIAN Ru, WANG Shan, HU Bing, LUO Yong-Hong, XU Zhu-Wen. Meta-analysis of effects of grazing on plant community properties in Nei Mongol grassland [J]. Chin J Plant Ecol, 2023, 47(9): 1256-1269. |
[3] | YANG Xin, REN Ming-Xun. Species distribution pattern and formation mechanism of mangrove plants around the South China Sea [J]. Chin J Plant Ecol, 2023, 47(8): 1105-1115. |
[4] | YU Xiao, JI Ruo-Xuan, REN Tian-Meng, XIA Xin-Li, YIN Wei-Lun, LIU Chao. Distribution, characteristics and classification of Caryopteris mongholica communities in northern China [J]. Chin J Plant Ecol, 2023, 47(8): 1182-1192. |
[5] | ZHU Hua, TAN Yun-Hong. Community characteristics, research states and problems of tropical rain forests in China [J]. Chin J Plant Ecol, 2023, 47(4): 447-468. |
[6] | LI Jie, HAO Min-Hui, FAN Chun-Yu, ZHANG Chun-Yu, ZHAO Xiu-Hai. Effect of tree species and functional diversity on ecosystem multifunctionality in temperate forests of northeast China [J]. Chin J Plant Ecol, 2023, 47(11): 1507-1522. |
[7] | YANG Yuan-He, ZHANG Dian-Ye, WEI Bin, LIU Yang, FENG Xue-Hui, MAO Chao, XU Wei-Jie, HE Mei, WANG Lu, ZHENG Zhi-Hu, WANG Yuan-Yuan, CHEN Lei-Yi, PENG Yun-Feng. Nonlinear responses of community diversity, carbon and nitrogen cycles of grassland ecosystems to external nitrogen input [J]. Chin J Plant Ecol, 2023, 47(1): 1-24. |
[8] | DONG Liu-Wen, REN Zheng-Wei, ZHANG Rui, XIE Chen-Di, ZHOU Xiao-Long. Functional diversity rather than species diversity can explain community biomass variation following short-term nitrogen addition in an alpine grassland [J]. Chin J Plant Ecol, 2022, 46(8): 871-881. |
[9] | ZENG Kai-Na, SUN Hao-Ran, SHEN Yi-Chun, REN Ming-Xun. Pollination network and seasonal dynamics of Yangshan Wetland in Hainan Island, China [J]. Chin J Plant Ecol, 2022, 46(7): 775-784. |
[10] | PENG Xin, JIN Guang-Ze. Effects of plant characteristics and environmental factors on the dark diversity in a broadleaved Korean pine forest [J]. Chin J Plant Ecol, 2022, 46(6): 656-666. |
[11] | ZHAI Jiang-Wei, LIN Xin-Hui, WU Rui-Zhe, XU Yi-Xin, JIN Hao-Hao, JIN Guang-Ze, LIU Zhi-Li. Trade-offs between petiole and lamina of different functional plants in Xiao Hinggan Mountains, China [J]. Chin J Plant Ecol, 2022, 46(6): 700-711. |
[12] | SHI Bin, DOU Jian-De, HUANG Wei, LI Xiao-Wei. Community characteristics of Ephedra rhytidosperma in Helan Mountain of Ningxia, China [J]. Chin J Plant Ecol, 2022, 46(3): 362-367. |
[13] | CHEN Li, TIAN Xin-Min, REN Zheng-Wei, DONG Liu-Wen, XIE Chen-Di, ZHOU Xiao-Long. Effects of nutrient addition on plant diversity and above-ground biomass in alpine grasslands of Tianshan Mountains, China [J]. Chin J Plant Ecol, 2022, 46(3): 280-289. |
[14] | HAO Jian-Feng, ZHOU Run-Hui, YAO Xiao-Lan, YU Jing, CHEN Cong-Lin, XIANG Lin, WANG Yao-Yao, SU Tian-Cheng, QI Jin-Qiu. Effects of the second generation wild boar grazing on species diversity and soil physicochemical properties of coniferous-broad-leaved mixed forest in Jiajin Mountain, China [J]. Chin J Plant Ecol, 2022, 46(2): 197-207. |
[15] | ZHANG Yi, CHENG Jie, SU Ji-Shuai, CHENG Ji-Min. Diversity-productivity relationship of plant communities in typical grassland during the long- term grazing exclusion succession [J]. Chin J Plant Ecol, 2022, 46(2): 176-187. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||
Copyright © 2022 Chinese Journal of Plant Ecology
Tel: 010-62836134, 62836138, E-mail: apes@ibcas.ac.cn, cjpe@ibcas.ac.cn