植物生态学报 ›› 2007, Vol. 31 ›› Issue (1): 50-55.DOI: 10.17521/cjpe.2007.0007
收稿日期:
2005-11-17
接受日期:
2006-04-08
出版日期:
2007-11-17
发布日期:
2007-01-30
作者简介:
E-mail: yxshen@xtbg.ac.cn
基金资助:
SHEN You-Xin1,2(), LIU Wen-Yao1, CUI Jian-Wu1
Received:
2005-11-17
Accepted:
2006-04-08
Online:
2007-11-17
Published:
2007-01-30
摘要:
土壤中的种子是植物群落更新与再恢复的种源基础。国内对土壤种子库的取样面积与种子检出之间的关系还很少涉及。在采用萌发方法对采集自滇中喀斯特山地的100个10 cm×10 cm小样方的物种数进行研究后,分析了土壤种子库的种-面积关系。面积与总物种和乔、灌、草本物种数之间的关系与二次方程和对数方程之间的拟合关系都较好。总物种数和草本物种数的基数较大且随面积增长较明显,而乔木和灌木的基数相对较小,增长较慢。总物种数的增加在面积位于0.15~0.2 m2,也即15~20个10 cm×10 cm样方之间时逐渐趋缓,可将这一面积和取样数量作为同类地区种子库取样的参考。
沈有信, 刘文耀, 崔建武. 滇中喀斯特森林土壤种子库的种-面积关系. 植物生态学报, 2007, 31(1): 50-55. DOI: 10.17521/cjpe.2007.0007
SHEN You-Xin, LIU Wen-Yao, CUI Jian-Wu. SPECIES-AREA RELATIONSHIPS OF SOIL SEED BANK IN KARST FOREST IN CENTRAL YUNNAN, CHINA. Chinese Journal of Plant Ecology, 2007, 31(1): 50-55. DOI: 10.17521/cjpe.2007.0007
生活型 Life forms | 物种 Species | 科 Family | 萌发幼苗数 Seedlings emerged | 萌发幼苗的样本数 Samples with seedlings | |||
---|---|---|---|---|---|---|---|
草本 Herbs | 红鳞苔草Carex souliei | 莎草科 Cyperaceae | 549 | 80 | |||
红雾水葛Pouzolzia sanguinea | 荨麻科 Urticaceae | 547 | 90 | ||||
紫茎泽兰Eupatorium adenophorum | 菊科 Compositae | 292 | 57 | ||||
石筋草 Pilea plataniflora | 荨麻科 Urticaceae | 170 | 40 | ||||
龙葵Solanum nigrum | 茄科 Solanaceae | 42 | 27 | ||||
一点红 Emilia sonchifolia | 菊科 Compositae | 39 | 31 | ||||
菊状千里光Senecio chrysanthemoides | 菊科 Compositae | 39 | 26 | ||||
粘毛香青Anaphalis bulleyana | 菊科 Compositae | 35 | 28 | ||||
过路黄 Lysimachia christinae | 报春花科 Primulaceae | 30 | 9 | ||||
细苔草 Carex sp. | 莎草科 Cyperaceae | 25 | 13 | ||||
小蓬Conyza canadensis | 菊科 Compositae | 22 | 20 | ||||
臭灵丹 Laggera pterodonta | 菊科 Compositae | 16 | 11 | ||||
菝葜一种Smilax sp.1 | 菝葜科 Smilacaceae | 15 | 14 | ||||
竹叶草 Oplismenus compositus | 禾本科 Gramineae | 15 | 10 | ||||
鼠麴草 Gnaphalium affine | 菊科 Compositae | 14 | 12 | ||||
通泉草 Mazus pumilus | 玄参科 Scrophulariaceae | 13 | 2 | ||||
棉毛倒提壶Carpesium nepalense var. lanatum | 菊科 Compositae | 10 | 10 | ||||
其它草本 Other herbs (38) | 139 | 1~8 | |||||
灌木Shrubs | 红梅消 Rubus parvifolius | 蔷薇科 Rosaceae | 237 | 63 | |||
地石榴 Ficus tikoua | 桑科 Moraceae | 23 | 18 | ||||
竹叶椒 Zanthoxylum armatum | 芸香科 Rutaceae | 15 | 11 | ||||
其它灌木Other shrubs (3) | 7 | 1~3 | |||||
乔木Trees | 大毛毛花Albizia mollis | 苏木科 Caesalpiniaceae | 42 | 17 | |||
沙坝榕 Ficus chapaensis | 桑科 Moraceae | 14 | 14 | ||||
云南鹅耳枥Carpinus mobeigiana | 榛科 Corylaceae | 12 | 5 | ||||
其它乔木Other trees (4) | 4 | 1 |
表1 滇中喀斯特山地森林中100个采样点萌发的主要物种的幼苗数及萌发样本数
Table 1 Number of seedlings and number of samples with seedlings of the main species emerged from 100 soil samples collected from Karst forest in central Yunnan
生活型 Life forms | 物种 Species | 科 Family | 萌发幼苗数 Seedlings emerged | 萌发幼苗的样本数 Samples with seedlings | |||
---|---|---|---|---|---|---|---|
草本 Herbs | 红鳞苔草Carex souliei | 莎草科 Cyperaceae | 549 | 80 | |||
红雾水葛Pouzolzia sanguinea | 荨麻科 Urticaceae | 547 | 90 | ||||
紫茎泽兰Eupatorium adenophorum | 菊科 Compositae | 292 | 57 | ||||
石筋草 Pilea plataniflora | 荨麻科 Urticaceae | 170 | 40 | ||||
龙葵Solanum nigrum | 茄科 Solanaceae | 42 | 27 | ||||
一点红 Emilia sonchifolia | 菊科 Compositae | 39 | 31 | ||||
菊状千里光Senecio chrysanthemoides | 菊科 Compositae | 39 | 26 | ||||
粘毛香青Anaphalis bulleyana | 菊科 Compositae | 35 | 28 | ||||
过路黄 Lysimachia christinae | 报春花科 Primulaceae | 30 | 9 | ||||
细苔草 Carex sp. | 莎草科 Cyperaceae | 25 | 13 | ||||
小蓬Conyza canadensis | 菊科 Compositae | 22 | 20 | ||||
臭灵丹 Laggera pterodonta | 菊科 Compositae | 16 | 11 | ||||
菝葜一种Smilax sp.1 | 菝葜科 Smilacaceae | 15 | 14 | ||||
竹叶草 Oplismenus compositus | 禾本科 Gramineae | 15 | 10 | ||||
鼠麴草 Gnaphalium affine | 菊科 Compositae | 14 | 12 | ||||
通泉草 Mazus pumilus | 玄参科 Scrophulariaceae | 13 | 2 | ||||
棉毛倒提壶Carpesium nepalense var. lanatum | 菊科 Compositae | 10 | 10 | ||||
其它草本 Other herbs (38) | 139 | 1~8 | |||||
灌木Shrubs | 红梅消 Rubus parvifolius | 蔷薇科 Rosaceae | 237 | 63 | |||
地石榴 Ficus tikoua | 桑科 Moraceae | 23 | 18 | ||||
竹叶椒 Zanthoxylum armatum | 芸香科 Rutaceae | 15 | 11 | ||||
其它灌木Other shrubs (3) | 7 | 1~3 | |||||
乔木Trees | 大毛毛花Albizia mollis | 苏木科 Caesalpiniaceae | 42 | 17 | |||
沙坝榕 Ficus chapaensis | 桑科 Moraceae | 14 | 14 | ||||
云南鹅耳枥Carpinus mobeigiana | 榛科 Corylaceae | 12 | 5 | ||||
其它乔木Other trees (4) | 4 | 1 |
图1 滇中喀斯特山地土壤种子库的种-面积关系图 每点处标出了该点的95%置信区间,右边最后一个点无重复而无置信区间Each point is enclosed by 95% confidence limits. The last point to the right, representing the entire plot, has no confidence limits because there was no replicate quadrat
Fig.1 Species-area curve for soil seed bank of a Karst forest in central Yunnan
参考资料 References | 样方大小 Size of samples | 样方数量 Number of samples | 取样面积 Sampling area | 植物群落 Vegetation |
---|---|---|---|---|
熊利民等( | 100 cm×50 cm | 5 | 25 000 cm2 | 亚热带常绿阔叶林演替系列Successional series of subtropical everygreen broad-leaved forest |
彭军等( | 40 cm×25 cm | 20 | 20 000 cm2 | 亚热带常绿阔叶林Subtropical everygreen broad-leaved forest |
刘济明 ( | 40 cm×25 cm | 40 | 40 000 cm2 | 亚热带喀斯特森林 Subtropical Karst forest |
刘济明等( | 50 cm×50 cm | 20 | 50 000 cm2 | 亚热带常绿阔叶林Subtropical everygreen broad-leaved forest |
杨小波等 ( | 100 cm×50 cm | 5 | 25 000 cm2 | 热带原生林、次生林、人工林、农地等 Primary forest, secondary forest, planted forest and agricultural land in tropical area |
黄忠良等( | 1 m×1 m | 4~10 | 4~10 m2 | 南亚热带森林不同演替阶段Successional series of southern subtropical everygreen broad-leaved forest |
曹敏等 ( | 10 cm×10 cm | 20 | 2 000 cm2 | 热带森林 Tropical forest |
沈有信和刘文耀( | 10 cm×10 cm | 10~15 | 1 000~1 500 cm2 | 亚热带原生林、次生林、人工林、农地等 Primary forest, secondary forest, planted forest and agricultural land in sub-tropical area |
表2 中国南方一些研究者采用的土壤种子库的样方面积和样方数量
Table 2 Sample area and number of samples used by researchers in SW China
参考资料 References | 样方大小 Size of samples | 样方数量 Number of samples | 取样面积 Sampling area | 植物群落 Vegetation |
---|---|---|---|---|
熊利民等( | 100 cm×50 cm | 5 | 25 000 cm2 | 亚热带常绿阔叶林演替系列Successional series of subtropical everygreen broad-leaved forest |
彭军等( | 40 cm×25 cm | 20 | 20 000 cm2 | 亚热带常绿阔叶林Subtropical everygreen broad-leaved forest |
刘济明 ( | 40 cm×25 cm | 40 | 40 000 cm2 | 亚热带喀斯特森林 Subtropical Karst forest |
刘济明等( | 50 cm×50 cm | 20 | 50 000 cm2 | 亚热带常绿阔叶林Subtropical everygreen broad-leaved forest |
杨小波等 ( | 100 cm×50 cm | 5 | 25 000 cm2 | 热带原生林、次生林、人工林、农地等 Primary forest, secondary forest, planted forest and agricultural land in tropical area |
黄忠良等( | 1 m×1 m | 4~10 | 4~10 m2 | 南亚热带森林不同演替阶段Successional series of southern subtropical everygreen broad-leaved forest |
曹敏等 ( | 10 cm×10 cm | 20 | 2 000 cm2 | 热带森林 Tropical forest |
沈有信和刘文耀( | 10 cm×10 cm | 10~15 | 1 000~1 500 cm2 | 亚热带原生林、次生林、人工林、农地等 Primary forest, secondary forest, planted forest and agricultural land in sub-tropical area |
[1] | Arrhenius O (1921). Species and area. Journal of Ecology, 9,95-99. |
[2] | Augusto L, Dupouey JL, Picard JF, Ranger J (2001). Potential contribution of the seed bank in coniferous plantations to the restoration of native deciduous forest vegetation. Acta Oecologica, 22,87-98. |
[3] | Baskin CC, Baskin JM (1998). Seeds: Ecology, Biogeography,and Evolution of Dormancy and Germination. Academic Press, San Diago. |
[4] | Bigwood DW, Inouye DW (1988). Spatial pattern analysis of seed bank: an improved method and optimized sampling. Ecology, 69,497-507. |
[5] | Cain SA (1938). The species-area curve. American Midland Naturalist, 19,573-581. |
[6] | Cao M(曹敏), Tang Y(唐勇), Zhang JH(张建侯), Sheng CY(盛才余) (1997). Storage and dominants in the soil seed banks under the tropical forests of Xishuangbanna. Acta Botanica Yunnanica (云南植物研究), 19,177-183. (in Chinese with English). |
[7] |
Clark JS, Beckage B, Camill P, Cleveland B, HilleRisLambers J, Lichter J, McLachlan J, Mohan J, Wyckoff P (1999). Interpreting recruitment limitation in forests. American Journal of Botany, 86,1-16.
URL PMID |
[8] | Forcella F (1984). A species-area curve for buried viable seeds. Australian Journal of Agricultural Research, 35,645-652. |
[9] | Gleason HA (1922). On the relation between species and area. Ecology, 3,158-162. |
[10] | Grime JP (1989). The stress debate: symptom of impending synthesis? Biological Journal of the Linnean Society, 37,3-17. |
[11] | Gross KL (1990). A comparison of methods for estimating seed numbers in the soil. Journal of Ecology, 78,1079-1093. |
[12] | Hayashi I, Numata M (1971). Viable buried-seed population in the Miscanthus-and Zoysia-type grasslands in Japan-ecological studies on the buried-seed population in the soil related to plant succession. VI. Japanese Journal of Ecology, 20,243-252. |
[13] | He FL, legendre P (2002). Species diversity patterns derived from species-area models. Ecology, 83,1185-1198. |
[14] | Hester AJ, Gimingham CH, Miles J (1991). Succession from heather moorland to birth woodland. Ⅲ. Seed availability, germination and early growth. Journal of Ecology, 79,329-334. |
[15] | Huang ZL(黄忠良), Kong GH(孔国辉), Wei P(魏平), Wang JH(王俊浩), Huang YJ(黄玉佳), Zhang YC(张佑昌) (1996). A study on the soil seed banks at the different succession stages of the south subtropical forests. Journal of Tropical and Subtropical Botany (热带亚热带植物学报), 4(4),42-49. (in Chinese with English abstract) |
[16] | Hughes L, Dunlop M, French K, Leishman MR, Rice B, Rodgerson L, Westoby M (1994). Predicting dispersal spectra: a minimal set of hypotheses based on plant attributes. Journal of Ecology, 82,933-950. |
[17] |
Ishikawa-Goto M, Tsuyuzaki S (2004). Methods of estimating seed banks with reference to long-term seed burial. Journal of Plant Research, 117,245-248.
DOI URL PMID |
[18] | Kebrom T, Tesfaye B (2000). The role of soil seed banks in the rehabilitation of degraded hillslopes in Southern Wello, Ethiopia. Biotropica, 32,23-32. |
[19] | Liu JM(刘济明) (2000). A preliminary study on the soil seed bank dynamics of the Distylium chinensis community in the Maolan Karst forest . Acta Phytoecologica Sinica (植物生态学报), 24,366-374. (in Chinese with English abstract) |
[20] | Liu JM(刘济明), Zhong ZC(钟章成) (2000). Nature of seed rain, the seed bank and regeneration of a Castanopsis fargesii community of Fanjing Mountain . Acta Phytoecologica Sinica (植物生态学报), 24,402-407. (in Chinese with English abstract) |
[21] |
Nathan R, Katul GG, Horn HS, Thomas SM, Oren R, Avissar R, Pacala SW, Leviin SA (2002). Mechanisms of long-distance dispersal of seeds by wind. Nature, 418,409-413.
DOI URL PMID |
[22] | Numata M, Hayashi I, Komura T, Oki K (1964). Ecological studies on the burial-seed population in the soil as related to plant succession I. Japanese Journal of Ecology, 14,207-215. |
[23] | Peng J(彭军), Li XG(李旭光), Dong M(董鸣), Liu YC(刘玉成) (2000). Soil seed bank of subtropical evergreen broad-leaved forest on Simian Mountain, Chongqing. Acta Phytoecologica Sinica (植物生态学报), 24,209-214. (in Chinese with English abstract) |
[24] | Rico-Gray V, Garcia-Franco JG (1992). Vegetation and soil seed bank of successional stages in tropical lowland deciduous forest. Journal of Vegetation Science, 3,617-624. |
[25] | Scheiner SM (2003). Six types of species-area curves. Global Ecology & Biogeography, 12,441-447. |
[26] | Shen YL (沈有信), Liu WY(刘文耀), Li YH(李玉辉), Cui JW(崔建武) (2005). Community ecology study on Karst semi-humid evergreen broadleaved forest at the central part of Yunnan. Guihaia (广西植物), 25,321-326. (in Chinese with English abstract) |
[27] | Shen YX(沈有信), Liu WY(刘文耀) (2004). Persistent seed bank of Eupatorium adenophorum in soils. Acta Phytoecologica Sinica (植物生态学报), 28,768-772. (in Chinese with English abstract) |
[28] | Tackenberg O (2003). Modeling long-distance dispersal of plant diasporas by wind. Ecological Monographs, 73,173-189. |
[29] | ter Heerdt GNJ, Verweij GL, Berker RM, Bakker JP (1996). An improved method for seed bank analysis: seedling emergence after removing the soil by sieving. Functional Ecology, 10,144-151. |
[30] | Thompson K (1986). Small-scale heterogeneity in the seed bank of an acidic grassland. Journal of Ecology, 74,733-738. |
[31] | Thompson K (2000). The functional ecology of soil seed banks. In: Fenner M ed. Seeds: the Ecology of Regeneration in Plant Communities 2nd edn. 215-235. CAB International, Wallingford, UK. |
[32] | Xiong LM(熊利民), Zhong ZC(钟章成), Li XG(李旭光) (1992). A preliminary study on the soil seed banks of different successional stages of subtropical evergreen broadleaved forest. Acta Phytoecologica et Geobotanica Sinica (植物生态学与地植物学学报), 16,249-257. (in Chinese with English abstract) |
[33] | Yang XB(杨小波), Chan MZ(陈明智), Wu QS(吴庆书) (1999). Study on the soil seed banks of different land utilization system in the tropical area. Acta Pedologica Sinica (土壤学报), 36,327-333. (in Chinese with English abstract) |
[1] | 周建 王焓. 森林径级结构研究:从统计描述到理论演绎[J]. 植物生态学报, 2024, 48(预发表): 0-0. |
[2] | 付粱晨, 丁宗巨, 唐茂, 曾辉, 朱彪. 北京东灵山白桦和蒙古栎的根际效应及其季节动态[J]. 植物生态学报, 2024, 48(4): 508-522. |
[3] | 杨安娜, 李曾燕, 牟凌, 杨柏钰, 赛碧乐, 张立, 张增可, 王万胜, 杜运才, 由文辉, 阎恩荣. 上海大金山岛不同植被类型土壤细菌群落的变异[J]. 植物生态学报, 2024, 48(3): 377-389. |
[4] | 张慧玲, 张耀艺, 彭清清, 杨静, 倪祥银, 吴福忠. 中亚热带同质园不同生活型树种微量元素重吸收效率的差异[J]. 植物生态学报, 2023, 47(7): 978-987. |
[5] | 张中扬, 宋希强, 任明迅, 张哲. 附生维管植物生境营建作用的生态学功能[J]. 植物生态学报, 2023, 47(7): 895-911. |
[6] | 赖硕钿, 吴福忠, 吴秋霞, 朱晶晶, 倪祥银. 雪被去除减缓岷江冷杉凋落叶易分解碳释放[J]. 植物生态学报, 2023, 47(5): 672-686. |
[7] | 张尧, 陈岚, 王洁莹, 李益, 王俊, 郭垚鑫, 任成杰, 白红英, 孙昊田, 赵发珠. 太白山不同海拔森林根际土壤微生物碳利用效率差异性及其影响因素[J]. 植物生态学报, 2023, 47(2): 275-288. |
[8] | 万春燕, 余俊瑞, 朱师丹. 喀斯特与非喀斯特森林乔木叶性状及其相关性网络的差异[J]. 植物生态学报, 2023, 47(10): 1386-1397. |
[9] | 郝晴, 黄昌. 森林地上生物量遥感估算研究综述[J]. 植物生态学报, 2023, 47(10): 1356-1374. |
[10] | 党宏忠, 张学利, 韩辉, 石长春, 葛玉祥, 马全林, 陈帅, 刘春颖. 樟子松固沙林林水关系研究进展及对营林实践的指导[J]. 植物生态学报, 2022, 46(9): 971-983. |
[11] | 孙彩丽, 仇模升, 黄朝相, 王艺伟. 黔西南石漠化过程中土壤胞外酶活性及其化学计量变化特征[J]. 植物生态学报, 2022, 46(7): 834-845. |
[12] | 董涵君, 王兴昌, 苑丹阳, 柳荻, 刘玉龙, 桑英, 王晓春. 温带不同材性树种树干非结构性碳水化合物的径向分配差异[J]. 植物生态学报, 2022, 46(6): 722-734. |
[13] | 刘谣, 焦泽彬, 谭波, 李晗, 王丽霞, 刘思凝, 游成铭, 徐振锋, 张丽. 川西亚高山森林凋落物去除对土壤腐殖质动态的影响[J]. 植物生态学报, 2022, 46(3): 330-339. |
[14] | 于海英, 杨莉琳, 付素静, 张志敏, 姚琦馥. 暖温带森林木本植物展叶始期对低温和热量累积变化的响应[J]. 植物生态学报, 2022, 46(12): 1573-1584. |
[15] | 孟庆静, 樊卫国. 刺梨的适钙类型及对高钙生境的适应性[J]. 植物生态学报, 2022, 46(12): 1562-1572. |
阅读次数 | ||||||
全文 |
|
|||||
摘要 |
|
|||||
Copyright © 2022 版权所有 《植物生态学报》编辑部
地址: 北京香山南辛村20号, 邮编: 100093
Tel.: 010-62836134, 62836138; Fax: 010-82599431; E-mail: apes@ibcas.ac.cn, cjpe@ibcas.ac.cn
备案号: 京ICP备16067583号-19