联系我们
意见反馈

关注公众号

获得最新科研资讯

简历详情
程栋梁
  邮箱   chengdl02@aliyun.com 
TA的实验室:   植物生理生态
论文

Prediction of photosynthetic light‐response curves using traits of the leaf economics spectrum for 75 woody species: effects of leaf habit and sun–shade dichotomy

期刊: American Journal of Botany  2021
作者: Dongliang Cheng,Quanlin Zhong,Dandan Hu,Mantang Wang,Min Lyu,Jun Sun,Xiaoping Chen
DOI:10.1002/ajb2.1629

Convergent nitrogen–phosphorus scaling relationships in different plant organs along an elevational gradient

Abstract A general relationship between the nitrogen (N) and phosphorus (P) content of all plant organs (e.g. leaf, stem, and root) is hypothesized to exist according to whole-plant economics spectrum (PES) theory, but the evidence supporting these expected patterns remains scarce. We measured the N and P content of the leaves, twigs and fine roots of 64 species in three different forest communities along an elevational gradient (evergreen broad-leaved forest, 1319 m a.s.l., coniferous and broad-leaved mixed forest, 1697 m a.s.l., and deciduous forest, 1818 m a.s.l.) in the Wuyishan National Nature Reserve, southeastern China. The scaling relationship between the N and P content and the linear regression relationship between the N:P ratio and N and P content were analysed. The leaf N and P content was significantly higher at the high-elevation site than at the low- or middle-elevation sites (P < 0.001). The N and P content followed a power-law relationship with similar scaling slopes between organs. The N (common slope, 1.13) and P (common slope, 1.03) content isometrically covaried among leaves, twigs and roots. The scaling exponents of the N–P relationship were not significantly different from 1.0 in all organs, with a common slope of 1.08. The scaling constants of N–P decreased significantly (P < 0.05) from the highest value in fine roots (β = 1.25), followed by leaves (β = 1.17), to the lowest value in twigs (β = 0.88). Standardized major axis (SMA) analyses and comparisons of 95 % confidence intervals also showed that the numerical values of the scaling slopes and the scaling constants did not differ regardless of elevation. The N content, but not the P content, accounted for a large proportion of the variation in the N:P ratio in leaves (N:P and N: r2 = 0.31, F = 33.36, P < 0.001) and fine roots (N:P and N: r2 = 0.15, F = 10.65, P < 0.05). In contrast, the N:P ratio was significantly related to both the N and P content in the twigs (N:P and N: r2 = 0.20, F = 17.86, P < 0.001; N:P and P: r2 = 0.34, F = 35.03, P < 0.001, respectively). Our results indicate that different organs of subtropical woody plants share a similar isometric scaling relationship between their N and P content, providing partial support for the PES hypothesis. Moreover, the effects of the N and P content on the N:P ratio differ between metabolic organs (leaves and fine roots) and structural organs (twigs), elucidating the stoichiometric regulatory mechanism of different organs.

期刊: AoB PLANTS  2020
作者: Dongliang Cheng,Quanlin Zhong,Min Lyu,Jun Sun,Man Li,Mantang Wang,Xiaoping Chen
DOI:10.1093/aobpla/plaa021

The Leaf Economics Spectrum Constrains Phenotypic Plasticity Across a Light Gradient

期刊: Frontiers in Plant Science  2020
作者: Dongliang Cheng,Quanlin Zhong,Sean T. Michaletz,Karl J. Niklas,Min Lyu,Mantang Wang,Jun Sun,Xiaoping Chen
DOI:10.3389/fpls.2020.00735

Temperature controls growth of Pinus taiwanensis along an elevational gradient

期刊: Trees  2020
作者: Dongliang Cheng,Quanlin Zhong,Xiaoping Chen,Jun Sun,Jordi Sardans,Josep Peñuelas,Mengke Sun,Min Lyu
DOI:10.1007/s00468-020-02045-z

Application of leaf size and leafing intensity scaling across subtropical trees

期刊: Authorea  2020
作者: Dongliang Cheng,Quan Ling Zhong,Jinlong Li,Mantang Wang,Xiao Chen,Jun Sun
DOI:10.22541/au.158714217.71511943

“Diminishing Returns” in the Scaling between Leaf Area and Twig Size in Three Forest Communities Along an Elevation Gradient of Wuyi Mountain, China

Background and aims: The “diminishing returns” hypothesis postulates that the scaling exponent governing the lamina area versus lamina mass scaling relationships has, on average, a numerical value less than one. Theoretically, a similar scaling relationship may exist at the twig level. However, this possibility has not been explored empirically. Methods: We tested both hypotheses by measuring the lamina area and mass, petiole mass of individual leaves, and the total foliage area and stem mass of individual current-year shoots (twigs) of 64 woody species growing in three characteristic forest community types: (1) Evergreen broad-leaved, (2) mixed coniferous and broad-leaved, and (3) deciduous. Key results: The results demonstrate that lamina area vs. mass and lamina area vs. petiole mass differ significantly among the three forest types at both the individual leaf and twig levels. Nevertheless, the scaling exponents of lamina area vs. mass were <1.0 in each of the three community types, as were the corresponding exponents for lamina area vs. petiole mass, both within and across the three community types. Similar trends were observed at the individual twig level. The numerical values of the scaling exponent for lamina area vs. petiole mass and total foliage area vs. stem mass per twig decreased with increased elevation. Conclusions: These data support the “diminishing returns” hypothesis at both the individual leaf level and at the individual twig level, phenomena that can inform future inquiries into the mechanistic basis of biomass allocation patterns to physiological (leaf) and mechanical (stem) plant organs.

期刊: Forests  2019
作者: Dongliang Cheng,Quanlin Zhong,Mantang Wang,Xiaoping Chen,Min Lyu,Jun Sun,Man Li,Karl Joseph Niklas,Guojie Zhu
DOI:10.3390/f10121138

Stem Diameter (and Not Length) Limits Twig Leaf Biomass

期刊: Frontiers in Plant Science  2019
作者: Dongliang Cheng,Man Li,Quanlin Zhong,Karl J. Niklas,Min Lyu,Mantang Wang,Jun Sun
DOI:10.3389/fpls.2019.00185

Divergent scaling of respiration rates to nitrogen and phosphorus across four woody seedlings between different growing seasons

期刊: Ecology and Evolution  2017
作者: Dongliang Cheng,Quanlin Zhong,Yuan Zheng,Man Li,Fuchun Yang,Jun Sun,Ruirui Fan
DOI:10.1002/ece3.3419

“Diminishing returns” in the scaling of leaf area vs. dry mass in Wuyi Mountain bamboos, Southeast China

期刊: American Journal of Botany  2017
作者: Dongliang Cheng,Mengke Sun,Xiaoping Chen,Man Li,Fuchun Yang,Quanlin Zhong,Karl J. Niklas,Ruirui Fan,Jun Sun
DOI:10.3732/ajb.1700068

A predictive nondestructive model for the covariation of tree height, diameter and stem volume scaling relationships

期刊: Scientific Reports  2016
作者: Dongliang Cheng,Yusheng Yang,Liang Cai,Karl J. Niklas,Quanlin Zhong,Zhongrui Zhang
DOI:10.1038/srep31008

Isometric scaling of above- and below-ground biomass at the individual and community levels in the understorey of a sub-tropical forest

期刊: Annals of Botany  2015
作者: Jianhua Zhang,Yusheng Yang,Yuzhu Ma,Karl J. Niklas,Quanlin Zhong,Dongliang Cheng
DOI:10.1093/aob/mcu238

Convergence of terrestrial plant production across global climate gradients

期刊: Nature  2014
作者: Brian J. Enquist,Andrew J. Kerkhoff,Dongliang Cheng,Sean T. Michaletz
DOI:10.1038/nature13470

Relationships among the Stem, Aboveground and Total Biomass across Chinese Forests

期刊: Journal of Integrative Plant Biology  2007
作者: Chun-Mei Gong,Qing-Long Tang,Tao Li,Gen-Xuan Wang,Dong-Liang Cheng
DOI:10.1111/j.1774-7909.2007.00576.x

Positive Interactions: Crucial Organizers in a Plant Community

期刊: Journal of Integrative Plant Biology  2006
作者: Xiao-Ping Wei,Bao-Ming Chen,Gen-Xuan Wang,Dong-Liang Cheng
DOI:10.1111/j.1744-7909.2006.00128.x

主页访问量:26