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1 edge-shaped tissues called auricles, and the ligule, an epidermally derived fringe.
2 bsence of liguleless1 (Ig1) gene expression, ligule and auricle are not formed, and the blade-sheath
3                                    The maize ligule and auricle are structures on the maize leaf that
4 ction in narrowing the region from which the ligule and auricle develop in a typical maize leaf.
5 two genes known to be uniquely necessary for ligule and auricle development.
6 re affected before the first visible sign of ligule and auricle formation.
7                                          The ligule and auricle mark the boundary between distal blad
8                                  Specialized ligule and auricle structures form at the blade-sheath b
9 unction specifies the precise position where ligule and auricle will develop.
10 ations change the shape and position of both ligule and auricle, thus disturbing the overall pattern
11 ifferentiate into the specialized tissues of ligule and auricle.
12  like members of the Kn1 family, affects the ligule and auricle.
13 mutation, liguleless2-reference (lg2-R), the ligule and auricles are often absent or positioned incor
14 he junction between blade and sheath are the ligule and auricles, both of which are absent in the rec
15  defined boundary even in the absence of the ligule and auricles.
16                                          The ligule and the associated auricle are dispensable struct
17           Recessive liguleless1 mutants lack ligules and auricles and have upright leaves.
18 igule displacement, sheath-like with ectopic ligule, and auricle-like.
19 he blade-sheath boundary disruption, shorter ligule, and disrupted auricle morphology of RNAi lines r
20  separated by a linear epidermal fringe, the ligule, and two wedge-like structures, the auricles.
21 e), sheath-like with ectopic ligule (ectopic ligule), auricle-like, macro-hairless blade and wild-typ
22 sed of, in proximal to distal order, sheath, ligule, auricle and blade.
23 ting lg1 and lg2 play different roles in the ligule-auricle induction mechanism.
24 project at an angle from the stem, while the ligule comprises an epidermally derived fringe.
25  sector classes: wild type, sheath-like with ligule displacement, sheath-like with ectopic ligule, an
26 gule (sheath-like), sheath-like with ectopic ligule (ectopic ligule), auricle-like, macro-hairless bl
27 1, we reveal LG1 accumulation at the site of ligule formation and in the axil of developing tassel br
28                A surprising number of these "ligule genes" have also been shown to function during le
29  axis of wild-type leaf primordia undergoing ligule initiation and compared transcript accumulation i
30 an undifferentiated leaf base just above the ligule into highly specialized mesophyll cells (MCs) and
31 g3-O) transforms the leaf blade, auricle and ligule into sheath around the midrib region.
32 pe and tassel architecture, and suggests the ligule is a boundary similar to that at the base of late
33                                    The maize ligule is an adaxial membranous structure on the leaf th
34 r indirectly) to transmit and receive a make-ligule-make-auricle inductive signal.
35 was highest in the basal-most 3 cm above the ligule of an approximately 50-cm growing adult leaf.
36 branch initiation are redeployed to regulate ligule outgrowth from leaf primordia.
37 adoption of the sheath-like phenotype at the ligule position (a proximal cell fate), whereas later Lg
38 Most aspects of the Gn1-R phenotype, such as ligule position, inhibition of auricle development, and
39 s LG2 mRNA expression in meristem/developing ligule regions.
40 ypes in the leaf: sheath-like with displaced ligule (sheath-like), sheath-like with ectopic ligule (e
41 rentiation as well as the development of the ligule, which separates the distal blade and proximal sh

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