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Article

Leaf Bilateral Symmetry and the Scaling of the Perimeter vs. the Surface Area in 15 Vine Species

1
Bamboo Research Institute, College of Biology and the Environment, Nanjing Forestry University, Nanjing 210037, China
2
Tropical Silviculture and Forest Ecology, University of Göttingen, 37077 Göttingen, Germany
3
Institute of Agricultural and Environmental Sciences, Estonian University of Life Sciences, 51006 Tartu, Estonia
4
Estonian Academy of Sciences, 10130 Tallinn, Estonia
5
Centre for Invasion Biology, Department of Mathematical Sciences, Stellenbosch University, Matieland 7602, South Africa
6
Mathematical and Physical Biosciences, African Institute for Mathematical Sciences, Cape Town 7945, South Africa
7
Plant Biology Section, School of Integrative Plant Science, Cornell University, Ithaca, NY 14853, USA
*
Authors to whom correspondence should be addressed.
Forests 2020, 11(2), 246; https://doi.org/10.3390/f11020246
Submission received: 22 December 2019 / Revised: 18 February 2020 / Accepted: 21 February 2020 / Published: 23 February 2020
(This article belongs to the Section Forest Ecophysiology and Biology)

Abstract

The leaves of vines exhibit a high degree of variability in shape, from simple oval to highly dissected palmatifid leaves. However, little is known about the extent of leaf bilateral symmetry in vines, how leaf perimeter scales with leaf surface area, and how this relationship depends on leaf shape. We studied 15 species of vines and calculated (i) the areal ratio (AR) of both sides of the lamina per leaf, (ii) the standardized symmetry index (SI) to estimate the deviation from leaf bilateral symmetry, and (iii) the dissection index (DI) to measure leaf-shape complexity. In addition, we examined whether there is a scaling relationship between leaf perimeter and area for each species. A total of 14 out of 15 species had no significant differences in average ln(AR), and mean ln(AR) approximated zero, indicating that the areas of the two lamina sides tended to be equal. Nevertheless, SI values among the 15 species had significant differences. A statistically strong scaling relationship between leaf perimeter and area was observed for each species, and the scaling exponents of 12 out of 15 species fell in the range of 0.49−0.55. These data show that vines tend to generate a similar number of left- and right-skewed leaves, which might contribute to optimizing light interception. Weaker scaling relationships between leaf perimeter and area were associated with a greater DI and a greater variation in DI. Thus, DI provides a useful measure of the degree of the complexity of leaf outline.
Keywords: allometry; climbing plants; leaf perimeter; leaf shape; power law allometry; climbing plants; leaf perimeter; leaf shape; power law

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MDPI and ACS Style

Shi, P.; Niinemets, Ü.; Hui, C.; Niklas, K.J.; Yu, X.; Hölscher, D. Leaf Bilateral Symmetry and the Scaling of the Perimeter vs. the Surface Area in 15 Vine Species. Forests 2020, 11, 246. https://doi.org/10.3390/f11020246

AMA Style

Shi P, Niinemets Ü, Hui C, Niklas KJ, Yu X, Hölscher D. Leaf Bilateral Symmetry and the Scaling of the Perimeter vs. the Surface Area in 15 Vine Species. Forests. 2020; 11(2):246. https://doi.org/10.3390/f11020246

Chicago/Turabian Style

Shi, Peijian, Ülo Niinemets, Cang Hui, Karl J. Niklas, Xiaojing Yu, and Dirk Hölscher. 2020. "Leaf Bilateral Symmetry and the Scaling of the Perimeter vs. the Surface Area in 15 Vine Species" Forests 11, no. 2: 246. https://doi.org/10.3390/f11020246

APA Style

Shi, P., Niinemets, Ü., Hui, C., Niklas, K. J., Yu, X., & Hölscher, D. (2020). Leaf Bilateral Symmetry and the Scaling of the Perimeter vs. the Surface Area in 15 Vine Species. Forests, 11(2), 246. https://doi.org/10.3390/f11020246

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