Bulletin of Botanical Research ›› 2020, Vol. 40 ›› Issue (5): 641-647.doi: 10.7525/j.issn.1673-5102.2020.05.001
• Research Report • Next Articles
SHANG Kan-Kan1,3, ZHANG Xi-Jin2,3, SONG Kun2,3
Received:
2019-11-26
Online:
2020-09-05
Published:
2020-07-10
Supported by:
CLC Number:
SHANG Kan-Kan, ZHANG Xi-Jin, SONG Kun. Variation of Stem-leaf Size Relationship of Woody Plants among Different LifeForms in Shanghai Chenshan Botanical Garden[J]. Bulletin of Botanical Research, 2020, 40(5): 641-647.
[1] 章建红,史青茹,许洺山,等.浙江天童木本植物Corner法则的检验:个体密度的影响[J].植物生态学报,2014,38(7):655-664.Zhang J H,Shi Q R,Xu M S,et al.Testing of Corner's rules across woody plants in Tiantong region,Zhejiang Province:effects of individual density[J].Chinese Journal of Plant Ecology,2014,38(7):655-664. [2] 孙梅,田昆,张贇,等.植物叶片功能性状及其环境适应研究[J].植物科学学报,2017,35(6):940-949.Sun M,Tian K,Zhang Y,et al.Research on leaf functional traits and their environmental adaptation[J].Plant Science Journal,2017,35(6):940-949. [3] Enquist B J,West G B,Charnov E L,et al.Allometric scaling of production and life-history variation in vascular plants[J].Nature,1999,401(6756):907-911. [4] West G B,Brown J H,Enquist B J.A general model for the structure and allometry of plant vascular systems[J].Nature,1999,400(6745):664-667. [5] Westoby M,Falster D S,Moles A T,et al.Plant ecological strategies:some leading dimensions of variation between species[J].Annual Review of Ecology and Systematics,2002,33(1):125-159. [6] Corner E J H.The durian theory or the origin of the modern tree[J].Annals of Botany,1949,13(4):367-414. [7] White P S.Corner's rules in eastern deciduous trees:allometry and its implications for the adaptive architecture of trees[J].Bulletin of the Torrey Botanical Club,1983,110(2):203-212. [8] White P S.Evidence that temperate east North American evergreen woody plants follow Corner's rules[J].New Phytologist,1983,95(1):139-145. [9] Ackerly D D,Donoghue M J.Leaf size,sapling allometry,and Corner's rules:phylogeny and correlated evolution in maples(Acer)[J].The American Naturalist,1998,152(6):767-791. [10] Olson M E,Aguirre-Hernàndez R,Rosell J A.Universal foliage-stem scaling across environments and species in dicot trees:plasticity,biomechanics and Corner's rules[J].Ecology Letters,2009,12(3):210-219. [11] Preston K A,Ackerly D D.Hydraulic architecture and the evolution of shoot allometry in contrasting climates[J].American Journal of Botany,2003,90(10):1502-1512. [12] Westoby M,Wright I J.The leaf size-twig size spectrum and its relationship to other important spectra of variation among species[J].Oecologia,2003,135(4):621-628. [13] Sun S C,Jin D M,Shi P L.The leaf size-twig size spectrum of temperate woody species along an altitudinal gradient:an invariant allometric scaling relationship[J].Annals of Botany,2006,97(1):97-107. [14] 刘志国,蔡永立,李恺.亚热带常绿阔叶林植物叶-小枝的异速生长[J].植物生态学报,2008,32(2):363-369.Liu Z G,Cai Y L,Li K.Studies on the leaf size-twig size spectrum of subtropical evergreen broad-leaved woody species[J].Journal of Plant Ecology,2008,32(2):363-369. [15] Pickup M,Westoby M,Basden A.Dry mass costs of deploying leaf area in relation to leaf size[J].Functional Ecology,2005,19(2):88-97. [16] 杨冬梅,毛林灿,彭国全.常绿和落叶阔叶木本植物小枝内生物量分配关系研究:异速生长分析[J].植物研究,2011,31(4):472-477.Yang D M,Mao L C,Peng G Q.Within-twig biomass allocation in evergreen and deciduous broad-leaved species:allometric scaling analyses[J].Bulletin of Botanical Research,2011,31(4):472-477. [17] 李亚男,杨冬梅,孙书存,等.杜鹃花属植物小枝大小对小枝生物量分配及叶面积支持效率的影响:异速生长分析[J].植物生态学报,2008,32(5):1175-1183.Li Y N,Yang D M,Sun S C,et al.Effects of twig size on biomass allocation within twigs and on lamina area supporting efficiency in Rhododendron:allometric scaling analyses[J].Chinese Journal of Plant Ecology,2008,32(5):1175-1183. [18] 祝介东,孟婷婷,倪健,等.不同气候带间成熟林植物叶性状间异速生长关系随功能型的变异[J].植物生态学报,2011,35(7):687-698.Zhu J D,Meng T T,Ni J,et al.Within-leaf allometric relationships of mature forests in different bioclimatic zones vary with plant functional types[J].Chinese Journal of Plant Ecology,2011,35(7):687-698. [19] 史青茹,许洺山,赵延涛,等.浙江天童木本植物Corner法则的检验:微地形的影响[J].植物生态学报,2014,38(7):665-674.Shi Q R,Xu M S,Zhao Y T,et al.Testing of Corner's rules across woody plants in Tiantong region,Zhejiang Province:effects of micro-topography[J].Chinese Journal of Plant Ecology,2014,38(7):665-674. [20] Reich P B,Tjoelker M G,Machado J L,et al.Universal scaling of respiratory metabolism,size and nitrogen in plants[J].Nature,2006,439(7075):457-461. [21] Petit G,Von Arx G,Kiorapostolou N,et al.Tree differences in primary and secondary growth drive convergent scaling in leaf area to sapwood area across Europe[J].New Phytologist,2018,218(4):1383-1392. [22] 刘梦婷,魏新增,江明喜.濒危植物黄梅秤锤树野生与迁地保护种群的果实性状比较[J].植物科学学报,2018,36(3):354-361.Liu M T,Wei X Z,Jiang M X.Comparison of fruit traits between wild and ex situ populations of Sinojackia huangmeiensis[J].Plant Science Journal,2018,36(3):354-361. [23] 彭红玲,方海兰,郝冠军,等.上海辰山植物园规划区水土质量现状[J].东北林业大学学报,2009,37(5):43-47.Peng H L,Fang H L,Hao G J,et al.Soil and surface-water quality in the planning area of Chenshan Botanical Garden,Shanghai[J].Journal of Northeast Forestry University,2009,37(5):43-47. [24] 杨冬梅,占峰,张宏伟.清凉峰不同海拔木本植物小枝内叶大小-数量权衡关系[J].植物生态学报,2012,36(4):281-291.Yang D M,Zhan F,Zhang H W.Trade-off between leaf size and number in current-year twigs of deciduous broad-leaved woody species at different altitudes on Qingliang Mountain,southeastern China[J].Chinese Journal of Plant Ecology,2012,36(4):281-291. [25] 郭明.浙江天童常绿阔叶林木本植物枝叶比例的尺度推移[D].上海:华东师范大学,2011.Guo M.Scaling relationship of twig size to leaf size across hierarchical branches for woody plants in an evergreen broad-leaved forest in Tiantong region,Zhejiang Province[D].Shanghai:East China Normal University,2011. [26] Falster D S,Duursma R A,Ishihara M I,et al.BAAD:a biomass and allometry database for woody plants[J].Ecology,2015,96(5):1445. [27] Anfodillo T,Petit G,Crivellaro A.Axial conduit widening in woody species:a still neglected anatomical pattern[J].IAWA Journal,2013,34(4):352-364. [28] Hacke U G,Sperry J S,Wheeler J K,et al.Scaling of angiosperm xylem structure with safety and efficiency[J].Tree Physiology,2006,26(6):689-701. [29] Hacke U G,Spicer R,Schreiber S G,et al.An ecophysiological and developmental perspective on variation in vessel diameter[J].Plant,Cell and Environment,2017,40(6):831-845. [30] Pitman E J G.A note on normal correlation[J].Biometrika,1939,31(1-2):9-12. [31] Warton D I,Weber N C.Common slope tests for bivariate errors-in-variables models[J].Biometrical Journal,2002,44(2):161-174. [32] Warton D I,Duursma R A,Falster D S,et al.Smatr 3-an R package for estimation and inference about allometric lines[J].Methods in Ecology and Evolution,2012,3(2):257-259. [33] 耿梦娅,陈芳清,吕坤,等.长柄双花木叶性状异速生长关系随发育阶段和海拔梯度的变化[J].广西植物,2019,39(10):1387-1397.Geng M Y,Chen F Q,Lü K,et al.Changes of allometric relationships among leaf traits of Disanthus cercidifolius var.longipes in different ontogenetic stages and altitude gradients[J].Guihaia,2019,39(10):1387-1397. [34] Yan E R,Wang X H,Chang S X,et al.Scaling relationships among twig size,leaf size and leafing intensity in a successional series of subtropical forests[J].Tree Physiology,2013,33(6):609-617. [35] 孙蒙柯,程林,王满堂,等.武夷山常绿阔叶林木本植物小枝生物量分配[J].生态学杂志,2018,37(6):1815-1823.Sun M K,Cheng L,Wang M T,et al.Twig biomass allocation of woody species in evergreen broad-leaf forest,Wuyi Mountain[J].Chinese Journal of Ecology,2018,37(6):1815-1823. [36] Hacke U G,Sperry J S,Pockman W T,et al.Trends in wood density and structure are linked to prevention of xylem implosion by negative pressure[J].Oecologia,2001,126(4):457-461. [37] 渠春梅,韩兴国,苏波,等.云南西双版纳片断化热带雨林植物叶片δ13C值的特点及其对水分利用效率的指示[J].植物学报,2001,43(2):186-192.Qu C M,Han X G,Su B,et al.The characteristics of foliar δ13C values of plants and plant water use efficiency indicated by δ13C values in two fragmented rainforests in Xishuangbanna,Yunnan[J].Acta Botanica Sinica,2001,43(2):186-192. [38] Meng F Q,Cao R,Yang D M,et al.Within-twig leaf distribution patterns differ among plant life-forms in a subtropical Chinese forest[J].Tree Physiology,2013,33(7):753-762. |
[1] | Zhiqi CHEN, Haina ZHANG, Jiali LIU, Xianghui LU, Baocheng YANG. Effects of Nitrogen Addition on Root Growth, Biomass Allocation and Non-structural Carbohydrate Content of Cinnamomum bodinier Seedlings in Rare Earth Tailings [J]. Bulletin of Botanical Research, 2024, 44(1): 86-95. |
[2] | Kenian LINGHU, Shu WANG. Responses of Biomass Allocation to Population Density and Soil Water in Abutilon theophrasti at Different Growth Stages [J]. Bulletin of Botanical Research, 2023, 43(2): 272-280. |
[3] | MA Han-Ze, WANG Cheng-Zhong, LI Ding, FAN Guo-Zhen, HU Yong-Hong, SONG Zhi-Ping. Effects of Growth Environment and Tree Age on Biomass Allocation within Fruit Twigs of Fengdan(Paeonia ostii) [J]. Bulletin of Botanical Research, 2018, 38(2): 201-211. |
[4] | ZHANG Ming, LIU Fu-De, AN Shu-Qing, CAO Xue-Zhang. Leaf Traits of the Saplings of Later Successional Stage Tropical Montane Rain Forest in Hainan Island [J]. Bulletin of Botanical Research, 2017, 37(6): 907-914. |
[5] | GUO Hai-Xia, XU Bo, SHI Fu-Sun, WU Yan. Effects of Shading and Nitrogen Addition on the Growth and C-N Balance of Fritillaria unibracteata [J]. Bulletin of Botanical Research, 2017, 37(5): 738-743. |
[6] | SHU Wen-Jiang, CHAI Sheng-Feng, LI Zhao-Hai, FAN Jin-Shun, TANG Jian-Min, ZHU Shu-Fang, HE Zhi-Hong. Effects of Different Light Intensities on the Growth and Photosynthesis of Symplocos tetragona Seedlings [J]. Bulletin of Botanical Research, 2017, 37(4): 556-562. |
[7] | ZHAO Jing, WANG Xi-Yuan. Allocation Patterns and Allometric Relationships between Above- and Below-ground Biomass of Three Life-form Herbaceous Plants in the Gurbantünggüt Desert [J]. Bulletin of Botanical Research, 2017, 37(2): 304-311. |
[8] | MA Yi-Xin, WANG Yi-Feng, LI Yi-Ying, WANG Wen-Yue, KOU Jing. Correlation between Reproductive Allocation and Elevation of Saussurea graminea in Eastern Margin of the Tibetan Plateau [J]. Bulletin of Botanical Research, 2017, 37(1): 23-30. |
[9] | LI Wen;ZHANG Cheng;WANG Qing-Cheng;HAO Long-Fei;LIU Shuang. Effect of Exponential Fertilization on Growth Dynamic,Biomass Allocation and Photosynthesis of Betula platyphylla Bare-rooted Seedlings [J]. Bulletin of Botanical Research, 2015, 35(3): 391-396. |
[10] | LI Zhi-Bo;LI Ping-Heng;WANG Quan;*;XU Lu;. Allometric Characteristics of Terminal Twigs of Tamarix ramosissima and Haloxylon ammodendron [J]. Bulletin of Botanical Research, 2013, 33(3): 274-281. |
[11] | XUE Si-Lei;WANG Qing-Cheng*;SUN Xin-Xin;ZHANG Ming-Jun. Effects of Shading on the Photosynthetic Characteristics,Growth,and Biomass Allocation in Fraxinus mandshurica and Quercus mongolica [J]. Bulletin of Botanical Research, 2012, 32(3): 354-359. |
[12] | YANG Dong-Mei;MAO Lin-Can;PENG Guo-Quan*. Withintwig Biomass Allocation in Evergreen and Deciduous Broadleaved Species:Allometric Scaling Analyses [J]. Bulletin of Botanical Research, 2011, 31(4): 472-477. |
[13] | LIU Jian-Feng;XIAO Wen-Fa;XIONG Ding-Peng;LEI Jing-Ping*;WANG Peng-Cheng. Comparison on the Physio-ecological Characteristics of Quercus variabilis Seedlings from Various Latitude Sites [J]. Bulletin of Botanical Research, 2011, 31(4): 467-471. |
[14] | WANG Man-Lian;WEI Xiao*;JIANG Yun-Sheng;WEI Ji-Qing;CHAI Sheng-Feng;Qi Xiao-Xue. Effect of Different Soil Conditions on The Growth and Artemisinin Content of Artemisia annua L. Seedlings [J]. Bulletin of Botanical Research, 2010, 30(4): 424-427. |
[15] | NIE Yong;LI Yun-Xiang;*;MA Yong-Hong;QUAN Qiu-Mei;. Comparison of Morphological Characteristics and Biomass Allocation of Module in Medicinal Plants of Epimedium from Sichuan [J]. Bulletin of Botanical Research, 2010, 30(4): 490-495. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||