vix.ing · top · new · best · stats · spec

The filling law: a general framework for leaf shape diversity and its consequences on folded leaves

2010/03/24 by Etienne Couturier, Couturier, Etienne, Sylvain Courrech du Pont +3
Biochemistry, Genetics and Molecular Biology · Physics and Astronomy · #Adaptation and Self-Organizing Systems (nlin.AO) #FOS: Biological sciences #FOS: Physical sciences #Tissues and Organs (q-bio.TO) #nlin.AO #q-bio.TO

paper · pdf · doi:10.48550/arxiv.1003.4756

27 p., 28 fig., article

arxiv created 2010/10/07 · arxiv updated 2010/10/11

Abstract

Leaves are packed in a bud in different ways, being flat, enrolled, or folded, but always filling the whole bud volume. This « filling law » has many consequences, in particular on the shape of growing folded leaves. This is shown here for different types of folding and packing. The folded volume is always part of an ellipsoid, with the veins on the outside rounded face, and the lamina margin on an adaxial plane or axis. The veins on the abaxial side protect the more fragile lamina. The first general consequence of the folds is the presence of symmetries on the leaf shape, but also quantitative relationships between lobes and sinus sizes. For particular geometries, the leaf lamina can be limited by lateral veins, creating spoon-like lobes, or transverse cuts, creating asymmetrical wavy perimeters. A change in the packing between cultivars induces the corresponding change in the leaf shape. Each particular case shows how pervasive are the geometrical consequences of the filling law.

Related