Institute of Biology II, Albert-Ludwigs-University of Freiburg, Schänzlestrasse 1, D-79104 Freiburg, Germany.
Physics of Biological Organization, Max Planck Institute for Dynamics and Self-Organization, Am Fassberg 17, D-37077 Göttingen, Germany.
J Exp Bot. 2021 Feb 24;72(4):1151-1165. doi: 10.1093/jxb/eraa501.
Our current understanding of vein development in leaves is based on canalization of the plant hormone auxin into self-reinforcing streams which determine the sites of vascular cell differentiation. By comparison, how auxin biosynthesis affects leaf vein patterning is less well understood. Here, after observing that inhibiting polar auxin transport rescues the sparse leaf vein phenotype in auxin biosynthesis mutants, we propose that the processes of auxin biosynthesis and cellular auxin efflux work in concert during vein development. By using computational modeling, we show that localized auxin maxima are able to interact with mechanical forces generated by the morphological constraints which are imposed during early primordium development. This interaction is able to explain four fundamental characteristics of midvein morphology in a growing leaf: (i) distal cell division; (ii) coordinated cell elongation; (iii) a midvein positioned in the center of the primordium; and (iv) a midvein which is distally branched. Domains of auxin biosynthetic enzyme expression are not positioned by auxin canalization, as they are observed before auxin efflux proteins polarize. This suggests that the site-specific accumulation of auxin, as regulated by the balanced action of cellular auxin efflux and local auxin biosynthesis, is crucial for leaf vein formation.
我们目前对叶片中静脉发育的理解是基于植物激素生长素的 canalization(管道化),进入自我强化的流,决定了血管细胞分化的部位。相比之下,生长素生物合成如何影响叶片脉纹模式的理解就不那么清楚了。在这里,我们观察到抑制极性生长素运输可以挽救生长素生物合成突变体中稀疏的叶脉表型,我们提出生长素生物合成和细胞生长素外排的过程在脉纹发育过程中协同作用。通过使用计算建模,我们表明局部生长素最大值能够与在早期原基发育过程中产生的形态限制所产生的机械力相互作用。这种相互作用能够解释生长叶片中叶中脉形态的四个基本特征:(i)远端细胞分裂;(ii)协调的细胞伸长;(iii)原基中心的中脉;和(iv)中脉的远端分支。生长素生物合成酶表达的域不是由生长素 canalization 定位的,因为它们在生长素外排蛋白极化之前就被观察到了。这表明,细胞生长素外排和局部生长素生物合成平衡作用调节的生长素的特异性积累,对叶片脉纹的形成至关重要。