植物生态学报 ›› 2005, Vol. 29 ›› Issue (5): 799-806.DOI: 10.17521/cjpe.2005.0106
张运春1,2, 杜晓军1, 张桥英3, 高贤明1,*(), 苏智先4
收稿日期:
2004-09-07
接受日期:
2005-05-17
出版日期:
2005-09-07
发布日期:
2005-08-30
通讯作者:
高贤明
基金资助:
ZHANG Yun-Chun1,2, DU Xiao-Jun1, ZHANG Qiao-Ying3, GAO Xian-Ming1,*(), SU Zhi-Xian4
Received:
2004-09-07
Accepted:
2005-05-17
Online:
2005-09-07
Published:
2005-08-30
Contact:
GAO Xian-Ming
About author:
* E-mail: xmgao@ibcas.ac.cn摘要:
黄牛奶树(Symplocos laurina)是一种乔木克隆植物,其枝担负着支撑叶进行光合作用和克隆苗繁殖两种功能。由于枝功能的特异性在形态上表现出独特的特征:上部的枝生长比较旺盛,主要进行光合作用负责整个植株的碳水化合物供应与积累;下部的枝在形态上有所变化,基部细长而端部较基部明显增粗,并下垂呈“V”状,在生长过程中增长明显而无明显增粗现象,主要进行克隆繁殖。黄牛奶树的枝在由营养功能转变为繁殖功能的过程中年萌发次数显著增加;枝分化成克隆苗后在截取光能方面采取了不同的策略:克隆苗作为一个新的生命体,主要通过增加叶量占据更大的水平空间来增大总叶面积以截取更多阳光,不同于营养枝通过增加单叶面积占据更大的垂直空间来增大总叶面积以截取更多阳光的方式,但在不同的生境下对照枝与压枝克隆苗达到的总叶面积却无显著差异;从各构件的生物量特征看, 对照枝的生物量主要分配在叶和叶柄等光合构件上,而枝分化成克隆苗后生物量主要分配在茎上。即黄牛奶树的枝随着着地后功能的变化,在形态等各方面都有相应的变化,这可能是由于功能变化后内源激素发生变化的结果,但这有待于进一步研究。
张运春, 杜晓军, 张桥英, 高贤明, 苏智先. 克隆乔木黄牛奶树枝条的功能特征. 植物生态学报, 2005, 29(5): 799-806. DOI: 10.17521/cjpe.2005.0106
ZHANG Yun-Chun, DU Xiao-Jun, ZHANG Qiao-Ying, GAO Xian-Ming, SU Zhi-Xian. FUNCTIONS OF BRANCHES OF THE CLONAL TREE SYMPLOCOS LAURINA. Chinese Journal of Plant Ecology, 2005, 29(5): 799-806. DOI: 10.17521/cjpe.2005.0106
特征 Characters | 各样地的对照 Controls in different habitats | 各样地的压枝苗 Samples in different habitats | 对照与压枝 Control and sample |
---|---|---|---|
年萌发次数Vegetal times | 2.130 | 5.080* | 42.883** |
叶量Number of leaves | 2.26 | 4.979** | 6.899** |
单叶面积Area of single leaf | 61.926** | 44.904** | 45.040** |
总叶面积Area of total leaves | 3.202 | 4.764 | 0.156 |
叶生物量Biomass of leaves | 9.427** | 5.798* | 2.315 |
叶柄生物量Biomass of petioles | 6.839** | 8.695** | 3.926 |
茎生物量Biomass of stems | 3.053 | 3.053 | 14.432** |
植株生物量Biomass of whole plant | 8.338** | 4.829** | 0.4 |
叶与生物量比Ratio of leaves to biomass of whole plant | 1.008 | 2.723 | 64.274** |
叶柄与生物量比Ratio of petioles to biomass of whole plant | 0.140 | 2.647 | 44.721** |
茎生物量比Ratio of stems to biomass of whole plant | 0.903 | 2.829 | 68.522** |
表1 黄牛奶树植株特征的One-way ANOVAs的F值
Table 1 One-way ANOVAs analysis (F-value) on the characters of clonal plant Symplocos laurina
特征 Characters | 各样地的对照 Controls in different habitats | 各样地的压枝苗 Samples in different habitats | 对照与压枝 Control and sample |
---|---|---|---|
年萌发次数Vegetal times | 2.130 | 5.080* | 42.883** |
叶量Number of leaves | 2.26 | 4.979** | 6.899** |
单叶面积Area of single leaf | 61.926** | 44.904** | 45.040** |
总叶面积Area of total leaves | 3.202 | 4.764 | 0.156 |
叶生物量Biomass of leaves | 9.427** | 5.798* | 2.315 |
叶柄生物量Biomass of petioles | 6.839** | 8.695** | 3.926 |
茎生物量Biomass of stems | 3.053 | 3.053 | 14.432** |
植株生物量Biomass of whole plant | 8.338** | 4.829** | 0.4 |
叶与生物量比Ratio of leaves to biomass of whole plant | 1.008 | 2.723 | 64.274** |
叶柄与生物量比Ratio of petioles to biomass of whole plant | 0.140 | 2.647 | 44.721** |
茎生物量比Ratio of stems to biomass of whole plant | 0.903 | 2.829 | 68.522** |
[1] |
Alexandra R, Michele HN, John JE (2004). Developmental and physiological correlates of leaf size in Hyeronima alchorneoides (Euphorbiaceae) . American Journal of Botany, 91,582-596.
URL PMID |
[2] |
Alpert P, Mooney HA (1986). Resource sharing among ramets in the clonal herb, Fragaria chiloensis. Oecologia, 70,227-233.
DOI URL PMID |
[3] | Alpert P (1996). Nutrient sharing natural clonal fragments of Fragaria chiloensis. Journal of Ecology, 84,395-406. |
[4] | Ashby E (1948). An essay on leaf shape. New Phytologist, 47,153-176. |
[5] |
Augspurger CK, Bartlett EA (2003). Leaf phenology of juvenile vs. adult trees in a temperate deciduous forest. Tree Physiology, 23,517-525.
URL PMID |
[6] | Cain ML (1990). Models of clonal growth in Solidago altissima. Journal of Ecology, 78,27-46. |
[7] | Chen JS (陈劲松), Dong M (董鸣), Yu D (于丹) (2003). The characteristics of stoloniferous herb Fragaria vesca L. ramet population and their variation along an altitudinal gradient in the eastern edge of the Qing-Zang Plateau in China. Acta Ecologica Sinica (生态学报), 23,429-435. (in Chinese with English abstract) |
[8] | Chen S (陈尚), Li ZZ (李自珍), Wang G (王刚) (1997). Advances in researches of growth form of the clonal plant. Chinese Journal of Ecology (生态学杂志), 16(4),59-63. (in Chinese with English abstract) |
[9] | Chen CD (陈昌笃) (2000). The Dujiangyan-Pivot sector of assemblage, differentiation and maintenance of biodiversity in northern part of Hengduan Mountain. Acta Ecologica Sinica (生态学报), 20,28-34. (in Chinese with English abstract) |
[10] | Dale JE (1982). Environmental effects on leaf growth. In: Dale JEed. The Growth of Leaves. Arnold, London,31-41. |
[11] |
Day ME, Greenwood MS, Diaz-Sala C (2002). Age- and size-related trends in woody plant shoot development: regulatory pathways and evidence for genetic control. Tree Physiology, 22,507-513.
DOI URL PMID |
[12] | D'Hertefeldt T, Jónsdóttir IS (1999). Extensive physiological integration in intact clonal systems of Carex arenaria. Journal of Ecology, 87,258-264. |
[13] | de Kroon H, Schieving F (1991). Resource allocation patterns as a function of clonal morphology: a general model applied to a foraging clonal plant. Journal of Ecology, 79,519-530. |
[14] | de Kroon H, Hutchings MJ (1995). Morphological plasticity in clonal plants: the foraging concept reconsidered. Journal of Ecology, 83,143-152. |
[15] | Dong M (董鸣) (1996a). Clonal growth in plants in relation to resource heterogeneity: foraging behavior. Acta Botanica Sinica (植物学报), 38,828-835. (in Chinese with English abstract) |
[16] | Dong M (董鸣) (1996b). Plant clonal growth in heterogeneous habitats: risk-spreading. Acta Phytoecologica Sinica (植物生态学报), 20,543-548. (in Chinese with English abstract) |
[17] | Editor Committee for Flora of Sichuan(四川植物志编辑委员会) (1981). Flora of Sichuan (Vol. 1) (四川植物志(第一卷)). Sichuan People's Press, Chengdu. (in Chinese) |
[18] | Editor Committee of the Chinese Academy of Sciences for Flora of China(中国科学院中国植物志编辑委员会) (1987). Flora of China (Vol. 16, Section 2) (中国植物志(第十六卷第二分册)). Science Press, Beijing. (in Chinese) |
[19] | Fisher JB, Honda H (1977). Computer simulation of branching pattern and geometry in Terminalia (Combretaceae), a tropical tree. Botanical Gazette, 138,377-384. |
[20] |
Gill DS, Amthor JS, Bormann RH (1998). Leaf phenology, photosynthesis, and the persistence of saplings and shrubs in a mature northern hardwood forest. Tree Physiology, 18,281-289.
URL PMID |
[21] | Goodwin PB, Erwee MG (1983). Hormonal influences on leaf growth. In: Dale JE, Milthorpe FLeds. The Growth and Functioning of Leaves. Cambridge University Press, London,207-232. |
[22] | Guo LH (郭力华), Wang L (王立), Liu JX (刘金祥), Yang YF (杨允菲) (2004). A study on photosynthetic physiological characters of vegetative and reproductive tillers of Axonopus compressus. Acta Agrestia Sinica (草地学报), 2,103-106. (in Chinese with English abstract) |
[23] | Harper JL (1985). Modules, Branch, and the Capture of Resources, Population Biology and Evolution of Clonal Organisms. Yale University Press, New Haven,82-94. |
[24] | He BH(何丙辉), Zhong ZC (钟章成) (2003). Effects of nutrient supply on modular growth of branch population Ginkgo biloba. Journal of Southwest Agricultural University(Natural Science Edition) (西南农业大学学报(自然科学版)), 25,475-478. (in Chinese with English abstract) |
[25] | Huang J(黄骥), Pei SJ(裴盛基), Zhang MY(张明宇), Mao J(毛钧), Yang X(杨雪) (2004). Studies on biological characteristics, ecological habit and geographic distribution of Coptis teeta. Acta Botanica Yunnanica (云南植物研究), 26,255-266. (in Chinese with English abstract) |
[26] | Institute of Botany, Chinese Academy of Sciences (中国科学院植物研究所) (1974). Iconographia Cormophytorum Sinicorum (Tomus Ⅲ) (中国高等植物图鉴(第三册)). Science Press, Beijing. (in Chinese) |
[27] | Jiang GM (蒋高明), Dong M (董鸣) (2000). A comparative study on photosynthesis and water use efficiency between clonal and non-clonal pant species along the Northeast China Transect (NECT). Acta Botanica Sinica (植物学报), 42,855-863. (in Chinese with English abstract) |
[28] | Li YX(黎云祥), Chen L(陈利), Du DL(杜道林), Liu YC(刘玉成) (1998). The fraction ration and leader-bud dynamics of Gordonia acuminata. Acta Ecologica Sinica (生态学报), 18,309-314. (in Chinese with English abstract) |
[29] | Li YX(黎云祥), Liu YC(刘玉成) (1996). The neighborhood modular interference effects of seedlings of Gordonia acuminata. Journal of Southwest China Normal University(Natural Science Edition) (西南师范大学学报(自然科学版)), 21,309-314. (in Chinese with English abstract) |
[30] | Li YX(黎云祥), Liu YC(刘玉成), Zhong ZC(钟章成) (1997). Quantitative structure and dynamics of leaf populations of Gordonia acuminata on Jinyun Mountain. Acta Phytoecologica Sinica (植物生态学报), 21,67-76. (in Chinese with English abstract) |
[31] | Lu SW(陆时万), Xu XS(徐祥生), Shen MJ(沈敏键) (1982). Botany (植物学)2nd edn. Higher Education Press, Beijing,153. (in Chinese) |
[32] | Maillette L (1992). Seasonal model of modular growth in plant. Journal of Ecology, 80,123-130. |
[33] | Mogie M, Hutchings MJ (1990). Phylogeny, ontogeny and clonal growth in vascular plant. In: van Groenendael J, de Kroon Heds. Clonal Growth in Plants: Regulation and Function. SPB Academic, The Hague,3-22. |
[34] | Pan RC(潘瑞炽), Dong YD(董愚得), (2001). Plant Physiology (植物生理学)3rd edn. Higher Education Press,Beijing,256-259. (in Chinese) |
[35] | Pearsall WH, Hanby AM (1926). Growth studies. V. Factors affecting the development and form of leaves. Annals of Botany, 40,85-103. |
[36] | Pitelka LF (1985). Physiology and integration of ramets in clonal plants. In: Jackson JBC, Buss LW, Cook REeds. Population Biology and Evolution of Clonal Organisms. ale University Press, London,399-436. |
[37] |
Schmid B (1987). Clonal integration and population structure in perennials: effects of severing rhizome connections. Ecology, 68,2016-2022.
URL PMID |
[38] | Seiwa K (1999a). Changes in leaf phenology are dependent on tree height in Acer mono, a deciduous broad-leaved tree. Annals of Botany, 83,355-361. |
[39] |
Seiwa K (1999b). Ontogenetic changes in leaf phenology of Ulmus davidiana var. japonica, a deciduous broad-leaved tree. Tree Physiology, 19,793-797.
URL PMID |
[40] | Shan BQ(单保庆), Du GZ (杜国祯), Liu ZH (刘振恒) (2000). Clonal growth of Ligularia virgaurea: morphological responses to nutritional variation. Acta Phytoecologica Sinica (植物生态学报), 24,45-51. (in Chinese with English abstract) |
[41] | Terry N, Waldron LJ, Taylor SE (1983). Environmental influences on leaf expansion. In: Dale JE, Milthorpe FLeds. The Growth and Functioning of Leaves. Cambridge University Press, Cambridge.179-205. |
[42] | Thomas SC, Winner WE (2002). Photosynthetic differences between saplings and adult trees: an integration of field results by meta-analysis. Tree Physiology, 22,117-127. |
[43] | Wang YS (王昱生), Li JX (李景信) (1992). Study on growth pattern of Aneurolepidium chinense clonal population. Acta Phytoecologica et Geobotanica Sinica (植物生态学与地植物学学报), 16,224-241. (in Chinese with English abstract) |
[44] | Wang YS (王昱生), Gai XC (盖晓春) (1995). Foraging growth patterns and resource allocation of clonal Leymus chinensis population in the sungnen steppe. Acta Phytoecologica Sinica (植物生态学报), 19,293-301. (in Chinese with English abstract) |
[45] | Wang RZ (王仁忠) (2001). Comparative study on clonal and sexual reproductive traits of Leymus chinensis populations in different habitats. Chinese Journal of Applied Ecology (应用生态学报), 12,379-383. (in Chinese with English abstract) |
[46] | White J (1979). The plant as a metapopulation. Annual Review of Ecology and Systematics, 10,109-145. |
[47] | Yang C (杨持), Yang L (杨理) (1997). Influence of light intensity on differentiation and growth of Leymus chinensis clone. Chinese Journal of Applied Ecology (应用生态学报), 8,83-87. (in Chinese with English abstract) |
[48] | Zhang WY(张炜银), Wang BS(王伯荪), Li MG(李鸣光), Zan QJ(昝启杰), Wang YJ(王勇军) (2002). The branching pattern and biomass of Mikania micrantha shoot modules in Acacia confusa community and Miscanthus sinensis community. Acta Phytoecologica Sinica (植物生态学报), 26,346-350. (in Chinese with English abstract) |
[49] | Zhang YC(张运春), Su ZX(苏智先), Gao XM(高贤明) (2001). Character and research of clonal plant. Journal of Sichuan Teachers College (Natural Science Edition) (四川师范学院学报(自然科学版)), 22,338-343. (in Chinese with English abstract) |
[50] | Zhou SX(周世强), Huang JY(黄金燕) (1997). A study on the clonal population biomass of young Bashania fangiana after natural regeneration. Journal of Bamboo Research (竹子研究汇刊), 16(2),33-39. (in Chinese with English abstract) |
[1] | 王袼, 胡姝娅, 李阳, 陈晓鹏, 李红玉, 董宽虎, 何念鹏, 王常慧. 不同类型草原土壤净氮矿化速率的温度敏感性[J]. 植物生态学报, 2024, 48(4): 523-533. |
[2] | 梁逸娴, 王传宽, 臧妙涵, 上官虹玉, 刘逸潇, 全先奎. 落叶松径向生长和生物量分配对气候变暖的响应[J]. 植物生态学报, 2024, 48(4): 459-468. |
[3] | 黄玲, 王榛, 马泽, 杨发林, 李岚, SEREKPAYEV Nurlan, NOGAYEV Adilbek, 侯扶江. 长期放牧和氮添加对黄土高原典型草原长芒草种群生长的影响[J]. 植物生态学报, 2024, 48(3): 317-330. |
[4] | 耿雪琪, 唐亚坤, 王丽娜, 邓旭, 张泽凌, 周莹. 氮添加增加中国陆生植物生物量并降低其氮利用效率[J]. 植物生态学报, 2024, 48(2): 147-157. |
[5] | 舒韦维, 杨坤, 马俊旭, 闵惠琳, 陈琳, 刘士玲, 黄日逸, 明安刚, 明财道, 田祖为. 氮添加对红锥不同序级细根形态和化学性状的影响[J]. 植物生态学报, 2024, 48(1): 103-112. |
[6] | 马常钦, 黄海龙, 彭政淋, 吴纯泽, 韦庆钰, 贾红涛, 卫星. 水曲柳雌雄株复叶类型及光合功能对不同生境的响应[J]. 植物生态学报, 2023, 47(9): 1287-1297. |
[7] | 李娜, 唐士明, 郭建英, 田茹, 王姗, 胡冰, 罗永红, 徐柱文. 放牧对内蒙古草地植物群落特征影响的meta分析[J]. 植物生态学报, 2023, 47(9): 1256-1269. |
[8] | 赵艳超, 陈立同. 土壤养分对青藏高原高寒草地生物量响应增温的调节作用[J]. 植物生态学报, 2023, 47(8): 1071-1081. |
[9] | 苏炜, 陈平, 吴婷, 刘岳, 宋雨婷, 刘旭军, 刘菊秀. 氮添加与干季延长对降香黄檀幼苗非结构性碳水化合物、养分与生物量的影响[J]. 植物生态学报, 2023, 47(8): 1094-1104. |
[10] | 李冠军, 陈珑, 余雯静, 苏亲桂, 吴承祯, 苏军, 李键. 固体培养内生真菌对土壤盐胁迫下木麻黄幼苗渗透调节和抗氧化系统的影响[J]. 植物生态学报, 2023, 47(6): 804-821. |
[11] | 罗娜娜, 盛茂银, 王霖娇, 石庆龙, 何宇. 长期植被恢复对中国西南喀斯特石漠化土壤活性有机碳组分含量和酶活性的影响[J]. 植物生态学报, 2023, 47(6): 867-881. |
[12] | 杜英东, 袁相洋, 冯兆忠. 不同形态氮对杨树光合特性及生长的影响[J]. 植物生态学报, 2023, 47(3): 348-360. |
[13] | 和璐璐, 张萱, 章毓文, 王晓霞, 刘亚栋, 刘岩, 范子莹, 何远洋, 席本野, 段劼. 辽东山区不同坡向长白落叶松人工林树冠特征与林木生长关系[J]. 植物生态学报, 2023, 47(11): 1523-1539. |
[14] | 刘艳杰, 刘玉龙, 王传宽, 王兴昌. 东北温带森林5个羽状复叶树种叶成本-效益关系比较[J]. 植物生态学报, 2023, 47(11): 1540-1550. |
[15] | 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. |
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