Annual Plant Reviews Online 2018
DOI: 10.1002/9781119312994.apr0164
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Leaf Architecture: Regulation of Leaf Position, Shape and Internal Structure

Abstract: The sections in this article areIntroductionPhyllotaxisLeaf InitiationDevelopment of Leaf SymmetryDevelopment of Simple Leaf ArchitectureDevelopment of Compound Leaf ArchitectureLeaf ExpansionDevelopment of Internal Leaf ArchitectureConcluding Remarks

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Cited by 2 publications
(4 citation statements)
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“…The establishment of primary PD during leaf development occurs between cells of the same lineage, that is, cells that are derived from a single mother cell and share a common division cell wall. Such lineages can be easily observed, and the fate of their cells traced, within SAMs; in angiosperms, they include the superficial cell layer L1, the subsuperficial layer L2, and the bulk of meristematic cells in the center of SAMs designated as layer L3 (Kang and Dengler, 2018 ). PD at L1/L2 and L2/L3 boundaries are obligatorily secondary (Evkaikina et al, 2014 ).…”
Section: Discussionmentioning
confidence: 99%
See 1 more Smart Citation
“…The establishment of primary PD during leaf development occurs between cells of the same lineage, that is, cells that are derived from a single mother cell and share a common division cell wall. Such lineages can be easily observed, and the fate of their cells traced, within SAMs; in angiosperms, they include the superficial cell layer L1, the subsuperficial layer L2, and the bulk of meristematic cells in the center of SAMs designated as layer L3 (Kang and Dengler, 2018 ). PD at L1/L2 and L2/L3 boundaries are obligatorily secondary (Evkaikina et al, 2014 ).…”
Section: Discussionmentioning
confidence: 99%
“…Barley and potato represent apoplastic phloem loaders (Riesmeier et al, 1994;Botha and Cross, 1997), while in A. meridionalis and A. barclaiana, phloem loading has a strong symplastic component (Voitsekhovskaja et al, 2006(Voitsekhovskaja et al, , 2009. We considered PD between leaf epidermis and mesophyll as secondary because epidermis and mesophyll originate from different cell lineages corresponding to the L1 and L2 layers, respectively in the leaf primordium (Satina and Blakeslee, 1941;Kang and Dengler, 2018). Moreover, in shoot apices of both A. meridionalis and A. barclaiana, the one-layered tunica of the meristem continuous with the protoderm of leaf primordia can be clearly distinguished, suggesting that like in many other species, cells of this layer represent an independent cell lineage also in A. meridionalis and A. barclaiana (Supplementary Figure 1).…”
Section: Introductionmentioning
confidence: 99%
“…AtSHR is essential for ground tissue radial patterning of both the root endodermis and the starch sheath in the hypocotyl/inflorescence stem. Yet, the genetic regulation of BS formation and differentiation may be modified in Arabidopsis leaves, possibly due to their dorsoventral symmetry and the bicollateral organization of veins (Kang & Dengler, 2005). In maize, a mutation in Zmshr1 caused perturbation of leaf vascular patterning, especially in intermediate and minor veins, as indicated by an incomplete BS and extra mesophyll cells (Slewinski et al ., 2014).…”
Section: Shr Expression In the Bundle Sheath Depends On Its Procambia...mentioning
confidence: 99%
“…Within the root apical meristem, coordinated asymmetric and symmetric divisions of initial daughter cells form concentric cylinders of the epidermis, ground tissue (cortex and endodermis), and pericycle (Dolan et al ., 1993; Benfey & Scheres, 2000). In the shoot apical meristem, vein development occurs via the acquisition of procambial identity from ground tissue cells (Kang & Dengler, 2005).…”
Section: Introductionmentioning
confidence: 99%