Chin J Plant Ecol ›› 2008, Vol. 32 ›› Issue (6): 1248-1257.DOI: 10.3773/j.issn.1005-264x.2008.06.005
• Original article • Previous Articles Next Articles
CHANG Wen-Jing1, GUO Da-Li2,*()
Received:
2008-04-25
Accepted:
2008-05-23
Online:
2008-04-25
Published:
2008-11-30
Contact:
GUO Da-Li
CHANG Wen-Jing, GUO Da-Li. VARIATION IN ROOT DIAMETER AMONG 45 COMMON TREE SPECIES IN TEMPERATE, SUBTROPICAL AND TROPICAL FORESTS IN CHINA[J]. Chin J Plant Ecol, 2008, 32(6): 1248-1257.
地点 Site | 经纬度 Longitude & latitude | 海拔 (m) Altitude | 树种 Species | 种拉丁名 Latin |
---|---|---|---|---|
百花山 Bai Hua Mtain | 115.3°~115.5° E 39.5°~39.9° N | 700~2 000 | 春榆 | Ulmus propingqua |
蒙椴 | Tilia mongolica | |||
黄花柳 | Salix caprea | |||
接骨木 | Sambucus williamsii | |||
大叶白蜡 | Fraxinus rhynchophylla | |||
关帝山 Guan Di Mtain | 111.4°~111.6° E 37.8°~37.9° N | 500~2 000 | 白杄 | Picea meyeri |
青杄 | Picea wilsonii | |||
油松 | Pinus tabulaeformis | |||
辽东栎 | Quercus liaotungensis | |||
千金榆 | Carpinus cordata | |||
华北落叶松 | Larix principis-rupprechtii | |||
中条山 Zhong Tiao Mtain | 112.4°~112.5° E 35.2°~35.3° N | 1 000~3 000 | 红桦 | Betula albo-sinensis |
青杨 | Populus cathayana | |||
青榨槭 | Acer davidii | |||
华山松 | Pinus armandii | |||
鼎湖山 Ding Hu Mtain | 112.5°~112.6° E 23.1°~23.2° N | 100~600 | 藜蒴 | Chenopodium serotinum |
樟树 | Cinnamomum camphora | |||
红车木 | Syzygium hancei | |||
毛柿 | Diospyros strigosa | |||
柃木 | Eurya japonica | |||
阴香 | Cinnamomum burmannii | |||
山参子 | Sanguisorba officinalis | |||
鸡毛松 | Podocarpus imbricatus | |||
火力楠 | Michelia macclurei | |||
密花树 | Rapanea neriifolia | |||
香叶树 | Lindera communis | |||
短序润楠 | Machilus breviflora | |||
鼎湖血桐 | Macaranga sampsonii | |||
黑叶谷木 | Memecylon nigrescens | |||
黄果厚壳桂 | Cryptocarya concinna | |||
西双版纳 Xishuangbanna | 99.5°~101.6° E 21.1°~22.4° N | 200~500 | 橄榄 | Canarium album |
玉蕊 | Barringtonia racemosa | |||
萍婆 | Sterculia nobilis | |||
山柚柑 | Acronychia pedunculata | |||
假广子 | Knema erratica | |||
葱臭木 | Dysoxylum gobara | |||
大叶山楝 | Aphanamixis grandifolia | |||
圆果罗伞 | Ardisia depressa | |||
尖叶茜树 | Randia oxyodonta | |||
瑞丽润楠 | Machilus shweliensis | |||
披针叶楠 | Phoebe lanceolata | |||
思茅蒲桃 | Syzygium szemaoense | |||
华南石栎 | Lithocarpus fenestratus | |||
椴叶山麻杆 | Alchornea tiliaefolia | |||
大花哥纳香 | Goniothalamus griffithii |
Table 1 General situation of three forest ecosystem
地点 Site | 经纬度 Longitude & latitude | 海拔 (m) Altitude | 树种 Species | 种拉丁名 Latin |
---|---|---|---|---|
百花山 Bai Hua Mtain | 115.3°~115.5° E 39.5°~39.9° N | 700~2 000 | 春榆 | Ulmus propingqua |
蒙椴 | Tilia mongolica | |||
黄花柳 | Salix caprea | |||
接骨木 | Sambucus williamsii | |||
大叶白蜡 | Fraxinus rhynchophylla | |||
关帝山 Guan Di Mtain | 111.4°~111.6° E 37.8°~37.9° N | 500~2 000 | 白杄 | Picea meyeri |
青杄 | Picea wilsonii | |||
油松 | Pinus tabulaeformis | |||
辽东栎 | Quercus liaotungensis | |||
千金榆 | Carpinus cordata | |||
华北落叶松 | Larix principis-rupprechtii | |||
中条山 Zhong Tiao Mtain | 112.4°~112.5° E 35.2°~35.3° N | 1 000~3 000 | 红桦 | Betula albo-sinensis |
青杨 | Populus cathayana | |||
青榨槭 | Acer davidii | |||
华山松 | Pinus armandii | |||
鼎湖山 Ding Hu Mtain | 112.5°~112.6° E 23.1°~23.2° N | 100~600 | 藜蒴 | Chenopodium serotinum |
樟树 | Cinnamomum camphora | |||
红车木 | Syzygium hancei | |||
毛柿 | Diospyros strigosa | |||
柃木 | Eurya japonica | |||
阴香 | Cinnamomum burmannii | |||
山参子 | Sanguisorba officinalis | |||
鸡毛松 | Podocarpus imbricatus | |||
火力楠 | Michelia macclurei | |||
密花树 | Rapanea neriifolia | |||
香叶树 | Lindera communis | |||
短序润楠 | Machilus breviflora | |||
鼎湖血桐 | Macaranga sampsonii | |||
黑叶谷木 | Memecylon nigrescens | |||
黄果厚壳桂 | Cryptocarya concinna | |||
西双版纳 Xishuangbanna | 99.5°~101.6° E 21.1°~22.4° N | 200~500 | 橄榄 | Canarium album |
玉蕊 | Barringtonia racemosa | |||
萍婆 | Sterculia nobilis | |||
山柚柑 | Acronychia pedunculata | |||
假广子 | Knema erratica | |||
葱臭木 | Dysoxylum gobara | |||
大叶山楝 | Aphanamixis grandifolia | |||
圆果罗伞 | Ardisia depressa | |||
尖叶茜树 | Randia oxyodonta | |||
瑞丽润楠 | Machilus shweliensis | |||
披针叶楠 | Phoebe lanceolata | |||
思茅蒲桃 | Syzygium szemaoense | |||
华南石栎 | Lithocarpus fenestratus | |||
椴叶山麻杆 | Alchornea tiliaefolia | |||
大花哥纳香 | Goniothalamus griffithii |
变异来源 Source of variation | df | 直径 Diameter F | p | |||||
---|---|---|---|---|---|---|---|---|
根序 Order | 4 | 47.42 | < 0.01 | |||||
树种 Species | 44 | 2.25 | < 0.01 | |||||
生态系统类型 Ecosystem type | 2 | 6.13 | < 0.01 | |||||
根序×树种 Order×species | 224 | 104.82 | < 0.01 | |||||
根序×生态系统类型 Order×ecosystem type | 224 | 133.94 | < 0.01 | |||||
树种×生态系统类型 Species×ecosystem type | 224 | 10.94 | < 0.01 | |||||
根序×树种×生态系统类型 Order×species×ecosystem type | 224 | 73.56 | < 0.01 |
Table 2
变异来源 Source of variation | df | 直径 Diameter F | p | |||||
---|---|---|---|---|---|---|---|---|
根序 Order | 4 | 47.42 | < 0.01 | |||||
树种 Species | 44 | 2.25 | < 0.01 | |||||
生态系统类型 Ecosystem type | 2 | 6.13 | < 0.01 | |||||
根序×树种 Order×species | 224 | 104.82 | < 0.01 | |||||
根序×生态系统类型 Order×ecosystem type | 224 | 133.94 | < 0.01 | |||||
树种×生态系统类型 Species×ecosystem type | 224 | 10.94 | < 0.01 | |||||
根序×树种×生态系统类型 Order×species×ecosystem type | 224 | 73.56 | < 0.01 |
根序 Order | 根序 Order | ||||
---|---|---|---|---|---|
1 | 2 | 3 | 4 | 5 | |
温带 Temperate | |||||
1 | 1.00 | ||||
2 | 0.97** | 1.00 | |||
3 | 0.92** | 0.95** | 1.00 | ||
4 | 0.85** | 0.87** | 0.94** | 1.00 | |
5 | 0.19 | 0.27 | 0.33 | 0.51* | 1.00 |
亚热带 Subtropical | |||||
1 | 1.00 | ||||
2 | 0.80** | 1.00 | |||
3 | 0.70** | 0.95** | 1.00 | ||
4 | 0.61* | 0.85** | 0.88** | 1.00 | |
5 | 0.49 | 0.52* | 0.58* | 0.78** | 1.00 |
热带 Tropical | |||||
1 | 1.00 | ||||
2 | 0.99** | 1.00 | |||
3 | 0.98** | 0.99** | 1.00 | ||
4 | 0.93** | 0.94** | 0.97** | 1.00 | |
5 | 0.93** | 0.94** | 0.93** | 0.90** | 1.00 |
Table 3 Correlation coefficients among diameters of the first five orders in temperate, subtropical and tropical forest ecosystems (n=15)
根序 Order | 根序 Order | ||||
---|---|---|---|---|---|
1 | 2 | 3 | 4 | 5 | |
温带 Temperate | |||||
1 | 1.00 | ||||
2 | 0.97** | 1.00 | |||
3 | 0.92** | 0.95** | 1.00 | ||
4 | 0.85** | 0.87** | 0.94** | 1.00 | |
5 | 0.19 | 0.27 | 0.33 | 0.51* | 1.00 |
亚热带 Subtropical | |||||
1 | 1.00 | ||||
2 | 0.80** | 1.00 | |||
3 | 0.70** | 0.95** | 1.00 | ||
4 | 0.61* | 0.85** | 0.88** | 1.00 | |
5 | 0.49 | 0.52* | 0.58* | 0.78** | 1.00 |
热带 Tropical | |||||
1 | 1.00 | ||||
2 | 0.99** | 1.00 | |||
3 | 0.98** | 0.99** | 1.00 | ||
4 | 0.93** | 0.94** | 0.97** | 1.00 | |
5 | 0.93** | 0.94** | 0.93** | 0.90** | 1.00 |
生态系统类型 Ecosystem type | 方程 Regression model | R2 | p | 样本量 Sample size |
---|---|---|---|---|
温带 Temperate | y=0.132 7exp0. 3555x | 0.61 | < 0.01 | 75 |
亚热带 Subtropical | y=0.193 4exp0. 3437x | 0.56 | < 0.01 | 75 |
热带 Tropical | y=0. 209 8exp0. 3381x | 0.44 | < 0.01 | 75 |
总体 Total | y=0.175 3exp0. 3458x | 0.49 | < 0.01 | 225 |
Table 4 The regression model between diameter (y) and root order (x) in temperate, subtropical and tropical forests in China
生态系统类型 Ecosystem type | 方程 Regression model | R2 | p | 样本量 Sample size |
---|---|---|---|---|
温带 Temperate | y=0.132 7exp0. 3555x | 0.61 | < 0.01 | 75 |
亚热带 Subtropical | y=0.193 4exp0. 3437x | 0.56 | < 0.01 | 75 |
热带 Tropical | y=0. 209 8exp0. 3381x | 0.44 | < 0.01 | 75 |
总体 Total | y=0.175 3exp0. 3458x | 0.49 | < 0.01 | 225 |
[1] | Bohm W (1979). Methods of Studying Root Systems. Ecological Series No. 33. Springer-Verlag, Berlin. |
[2] | Chapin FS, Matson PA, Mooney HA (2002). Principles of Terrestrial Ecosystem Ecology. Springer-Verlag,New York. |
[3] | Chen TG (陈廷贵), Zhang JT (张金屯) (2000). The study of diversity in Shenweigou of Guandi Mountain,Shanxi Province. Acta Botanica Boreal-Occident Sinica (西北植物学报), 20,638-646. (in Chinese with English abstract) |
[4] | Cleal CJ, Thomas BA (1999). Plant Fossils: the History of Land Vegetation. Boydell Press, New York. |
[5] | Du YJ (杜彦君), Peng SJ (彭闪江), Xu GL (徐国良), Huang ZL (黄忠良), Huang YJ (黄玉佳) (2007). Study of distance-dependence on Castanopsis chinensis seed in coniferous and broad-leaved mixed forest of Dinghushan, China. Journal of Plant Ecology(Chinese Version) (植物生态学报), 31,998-1006. (in Chinese with English abstract) |
[6] | Eissenstat DM, Yanai RD (2002). Root lifespan, efficiency, and turnover. In: Waisel Y, Eshe E, Kafkafi U eds. Plant Roots: the Hiden Half. Marcel Dekker Inc., New York, 221-238. |
[7] |
Fang JY, Peng CH (2001). Changes in forest biomass carbon storage in China between 1949 and 1998. Science, 292,2320-2322.
DOI URL PMID |
[8] | Feng ZW (冯宗炜), Wang XK (王效科), WU Gang (吴刚) (1999). Biomass and Primary Production of China’s Forest Ecosystems (中国森林生态系统的生物量生产力). Science Press, Beijing. (in Chinese) |
[9] | Fitter AH (1982). Morphological analysis of root systems: application of the techique and influence of soil fertility on root system development in two herbaceous species. Plant,Cell and Environment, 5,313-322. |
[10] | Guo DL, Mitchell RJ, Hendricks JJ (2004). Fine root branch orders respond differentially to carbon source-sink manipulations in a longleaf pine forest. Oecologia, 140,450-457. |
[11] | Guo DL, Li H, Mitchell RJ, Han WX, Hendricks JJ, Fahey TJ, Hendrick RL (2008a). Heterogeneity by root branch order: exploring the discrepancy in root longevity and turnover estimates between minirhizotron and C isotope methods. New Phytologist, 177,443-456. |
[12] | Guo DL, Mitchell RJ, Withington JM, Fan PP, Hendricks JJ (2008b). Endogenous and exogenous controls of root life span, mortality and nitrogen flux in a longleaf pine forest: root branch order predominates. Journal of Ecology, 96,734-745. |
[13] | He JS (贺金生), Wang ZQ (王政权), Fang JY (方精云) (2004). Underground ecology with global changes: problems and prospects. Chinese Science Bulletin(科学通报), 49,1226-1233. (in Chinese) |
[14] | Huang JH (黄建辉), Han XG (韩兴国), Chen LZ (陈灵芝) (1999). Research on biomass of roots in forest ecosystems. Acta Ecologica Sinica(生态学报), 19,270-277. (in Chinese with English abstract) |
[15] | Hishi T, Takeda H (2005). Dynamics of heterorhizic root systems: protoxylem groups within the fine-root syetem of Chamaecyparis obtuse. New Phytologist, 167,509-521. |
[16] | Hishi T (2007). Heterogeneity of individual roots within the fine root architecture: causal links between physiological and ecosystem functions. Journal of Forest Research, 12,126-133. |
[17] | Jackson RB, Mooney HA, Schulze ED (1997). A global budget for fine root biomass, surface area, and nutrient contents. Proceedings of the National Academy of Sciences of the United State of America, 94,7362-7366. |
[18] | Lambers H, Chapin FS, Pons TL (1998). Plant Physiology Ecology. Springer, Berlin,Heidelberg, New York. |
[19] |
Pregitzer KS, Kubiske ME, Yu CK, Hendrick RL (1997). Relationships among root branch order, carbon, and nitrogen in four temperate species. Oecologia, 111,302-308.
DOI URL PMID |
[20] | Pregitzer KS, de Forest JL, Burton AJ, Allen MF, Ruess RW, Hendrick RL (2002). Fine root architecture of nine North American trees. Ecological Monographs, 72,293-309. |
[21] |
Trumbore SE, Gaudinski JB (2003). The secret lives of roots. Science, 302,1344-1345.
DOI URL PMID |
[22] | Tang JW (唐建伟), Shi JP (施济普), Zhang GM (张光明), Bai KJ (白坤甲) (2008). Density, structure and biomass of Papashorea chinensis population in different patches in Xishuangbanna, SW, China. Journal of Plant Ecology(Chinese version)(植物生态学报), 32,40-54. (in Chinese with English abstract) |
[23] | Zhang YB (张殷波), Zhang F (张峰) (2003). Analysis on the flora of seed plants in Manghe Nature Reserve, Shanxi. Botanical Research (植物研究), 23,500-506. |
[24] | Vogt KA, Grier CC, Vogt DJ (1986). Production, turnover, and nutrient dynamics of above- and belowground detritus of world forests. Advantage in Ecological Research, 15,303-377. |
[25] | Vogt KA, Persson (1991). Measuring growth and development of roots. In: Sprugel D, Benecke U, Lassoie JP, Hinckley TM eds. Techniques and Approaches in Forest Tree Ecophysiology. CRC Press, Boston. |
[26] | Wang XR (王向荣), Gu JC (谷加存), Mei L (梅莉), Han YZ (韩有志), Yu SQ (于水强), Shi JW (史建伟), Yu LZ (于立忠) (2006). Fine root order morphology and proportion between mother roots and daughter roots in Fraxiuus mandshurica and Larix gmelinii plantations. Acta Ecologica Sinica(生态学报), 26,1686-1692. (in Chinese with English abstract) |
[27] | Wang ZQ, Guo DL, Wang XR, Gu JC, Mei L (2006). Fine root architecture, morphology, and biomass of different branch orders of two Chinese temperate tree species. Plant and Soil, 288,155-171. |
[28] |
Wells CE, Glenn DM, Eissenstat DM (2002). Changes in the risk of fine root mortality with age: a case study in peach,Prunus persica (Rosaceae). American Journal of Botany, 89,79-87.
DOI URL PMID |
[29] | Wells CE, Eissenstat DM (2003). Beyond the roots of young seedlings: the influence of age and order on fine root physiology. Journal of Plant Growth Regulation, 21,324-334. |
[30] | West GB, Brown JH, Enquist BJ (1999). A general model for structure and allometry of plant vascular systems. Nature, 400,664-667. |
[31] | Xu Bin (许彬), Zhang JT (张金屯) (2007). Species diversity of Baihua Mountain in forest plant community. Botanical Research (植物研究), 27,112-118. (in Chinese with English abstract) |
[32] | Zhang XQ (张小全) (2001). Fine-root biomass, production and turnover of trees in relations to environmental conditions. Forest Research (林业科学研究), 14,566-573. (in Chinese with English abstract) |
[1] | Qingshui Yu xiaofeng ni Jiangling Zhu Zhi-Yao TANG Jing-Yun FANG. Effects of 10 years of nitrogen and phosphorus additions on leaf non-structural carbohydrates of dominant plants in two tropical rainforests in the Jianfengling, Hainan [J]. Chin J Plant Ecol, 2024, 48(预发表): 0-0. |
[2] | Yao Liu Quan-Lin ZHONG Chao-Bin XU Dong-Liang CHENG 芳 跃郑 Zou Yuxing Zhang Xue Xin-Jie Zheng Yun-Ruo Zhou. Relationship between fine root functional traits and rhizosphere microenvironment of Machilus pauhoi at different sizes [J]. Chin J Plant Ecol, 2024, 48(预发表): 0-0. |
[3] | Xu Zi-Yi Guang-Ze JIN. Variation and trade-offs in fine root functional traits of seedlings of different mycorrhizal types in mixed broadleaved-Korean pine forests [J]. Chin J Plant Ecol, 2024, 48(5): 612-622. |
[4] | LIANG Yi-Xian, WANG Chuan-Kuan, ZANG Miao-Han, SHANGGUAN Hong-Yu, LIU Yi-Xiao, QUAN Xian-Kui. Responses of radial growth and biomass allocation of Larix gmelinii to climate warming [J]. Chin J Plant Ecol, 2024, 48(4): 459-468. |
[5] | QU Ze-Kun, ZHU Li-Qin, JIANG Qi, WANG Xiao-Hong, YAO Xiao-Dong, CAI Shi-Feng, LUO Su-Zhen, sCHEN Guang-Shui. Nutrient foraging strategies of arbuscular mycorrhizal tree species in a subtropical evergreen broadleaf forest and their relationship with fine root morphology [J]. Chin J Plant Ecol, 2024, 48(4): 416-427. |
[6] | DENG Wen-Jie, WU Hua-Zheng, LI Tian-Xiang, ZHOU Li-Na, HU Ren-Yong, JIN Xin-Jie, ZHANG Yong-Pu, ZHANG Yong-Hua, LIU Jin-Liang. Main vegetation types and characteristics in Dongtou National Marine Park, Zhejiang, China [J]. Chin J Plant Ecol, 2024, 48(2): 254-268. |
[7] | DU Xu-Long, HUANG Jin-Xue, YANG Zhi-Jie, XIONG De-Cheng. Effects of warming on oxidative damage and defense characteristics and their correlation in leaf and fine root of plants: a review [J]. Chin J Plant Ecol, 2024, 48(2): 135-146. |
[8] | WANG Yu-Ting, LIU Xu-Jing, TANG Chi-Fei, CHEN Wei-Yu, WANG Mei-Juan, XIANG Song-Zhu, LIU Mei, YANG Lin-Sen, FU Qiang, YAN Zhao-Gui, MENG Hong-Jie. Community characteristics and population dynamics of Acer miaotaiense, an extremely small population species in Shennongjia, China [J]. Chin J Plant Ecol, 2024, 48(1): 80-91. |
[9] | SHU Wei-Wei, YANG Kun, MA Jun-Xu, MIN Hui-Lin, CHEN Lin, LIU Shi-Ling, HUANG Ri-Yi, MING An-Gang, MING Cai-Dao, TIAN Zu-Wei. Effects of nitrogen addition on the morphological and chemical traits of fine roots with different orders of Castanopsis hystrix [J]. Chin J Plant Ecol, 2024, 48(1): 103-112. |
[10] | CHEN Ying-Jie, FANG Kai, QIN Shu-Qi, GUO Yan-Jun, YANG Yuan-He. Spatial patterns and determinants of soil organic carbon component contents and decomposition rate in temperate grasslands of Nei Mongol, China [J]. Chin J Plant Ecol, 2023, 47(9): 1245-1255. |
[11] | WU Chen, CHEN Xin-Yi, LIU Yuan-Hao, HUANG Jin-Xue, XIONG De-Cheng. Effects of warming on fine root growth, mortality and turnover: a review [J]. Chin J Plant Ecol, 2023, 47(8): 1043-1054. |
[12] | SUN Jia-Hui, SHI Hai-Lan, CHEN Ke-Yu, JI Bao-Ming, ZHANG Jing. Research advances on trade-off relationships of plant fine root functional traits [J]. Chin J Plant Ecol, 2023, 47(8): 1055-1070. |
[13] | ZHANG Hui-Ling, ZHANG Yao-Yi, PENG Qing-Qing, YANG Jing, NI Xiang-Yin, WU Fu-Zhong. Variations of trace-elements resorption efficiency in leaves of different tree species as affected by life forms in a mid-subtropical common garden [J]. Chin J Plant Ecol, 2023, 47(7): 978-987. |
[14] | WU Fan, WU Chen, ZHANG Yu-Hui, YU Heng, WEI Zhi-Hua, ZHENG Wei, LIU Xiao-Fei, CHEN Shi-Dong, YANG Zhi-Jie, XIONG De-Cheng. Effects of warming on growth, morphology and physiological metabolism characteristics of fine roots in a mature Cunninghamia lanceolata plantation in different seasons [J]. Chin J Plant Ecol, 2023, 47(6): 856-866. |
[15] | ZHONG Qi, LI Zeng-Yan, MA Wei, KUANG Yu-Xiao, QIU Ling-Jun, LI Yun-Jie, TU Li-Hua. Effects of nitrogen addition and litter manipulations on leaf litter decomposition in western edge of Sichuan Basin, China [J]. Chin J Plant Ecol, 2023, 47(5): 629-643. |
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