Protophloem differentiation in early Arabidopsis thaliana development

被引:57
作者
Bauby, Helene
Divol, Fanchon
Truernit, Elisabeth
Grandjean, Olivier
Palauqui, Jean-Christophe
机构
[1] INRA, Ctr Versailles, Inst Jean Pierre Bourgin, Biol Cellulaire Lab, F-78026 Versailles, France
[2] INRA, Ctr Versailles, Inst Jean Pierre Bourgin, F-78026 Versailles, France
关键词
phloem; differentiation; development; vascular tissue; Arabidopsis;
D O I
10.1093/pcp/pcl045
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
During Arabidopsis embryogenesis, procambial cells undergo coordinated, asymmetric cell divisions, giving rise to vascular precursor cells (protophloem and protoxylem precursors). After germination, these cells terminally differentiate into specialized conducting cells, referred to as protophloem and protoxylem cells. Few readily identifiable markers of the onset of specification and differentiation are available, hampering the molecular genetic analysis of protophloem development. Confocal microscopy was used to investigate the patterning and differentiation of phloem cells during early plant development. Longitudinal divisions of phloem initials allowed the identification of protophloem precursor cells and adjacent metaphloem initials along the length of the plant. During germination, protophloem differentiation was observed at two independent locations, in the cotyledons and the hypocotyl. In both locations, differentiation was concomitant with cell elongation. We identified five gene-trap lines (PD1-PD5) with marker gene expression in immature protophloem elements. The spatio-temporal marker expression pattern of the lines divides them into two groups. The early specification markers PD4 and PD5 were expressed in developing organs before procambium formation and then became restricted to phloem initial cells. The protophloem precursor markers PD1-PD3 were expressed in differentiating protophloem cells at different stages of their development. All markers were expressed transiently and iteratively during the differentiation of protophloem in newly formed organs. Flanking genes were identified for four out of five gene-trap insertion lines. The possible function of these genes with respect to phloem differentiation is discussed.
引用
收藏
页码:97 / 109
页数:13
相关论文
共 35 条
[1]   Role of cytokinin and auxin in shaping root architecture: Regulating vascular differentiation, lateral root initiation, root apical dominance and root gravitropism [J].
Aloni, R ;
Aloni, E ;
Langhans, M ;
Ullrich, CI .
ANNALS OF BOTANY, 2006, 97 (05) :883-893
[2]   Gradual shifts in sites of free-auxin production during leaf-primordium development and their role in vascular differentiation and leaf morphogenesis in Arabidopsis [J].
Aloni, R ;
Schwalm, K ;
Langhans, M ;
Ullrich, CI .
PLANTA, 2003, 216 (05) :841-853
[3]   Foliar and axial aspects of vascular differentiation: Hypotheses and evidence [J].
Aloni, R .
JOURNAL OF PLANT GROWTH REGULATION, 2001, 20 (01) :22-34
[4]  
Baima S, 1995, DEVELOPMENT, V121, P4171
[5]   Apical organization and maturation of the cortex and vascular cylinder in Arabidopsis thaliana (Brassicaceae) roots [J].
Baum, SF ;
Dubrovsky, JG ;
Rost, TL .
AMERICAN JOURNAL OF BOTANY, 2002, 89 (06) :908-920
[6]  
BECHTOLD N, 1993, CR ACAD SCI III-VIE, V316, P1194
[7]   Vascular continuity and auxin signals [J].
Berleth, T ;
Mattsson, J ;
Hardtke, CS .
TRENDS IN PLANT SCIENCE, 2000, 5 (09) :387-393
[8]   APL regulates vascular tissue identity in Arabidopsis [J].
Bonke, M ;
Thitamadee, S ;
Mähönen, AP ;
Hauser, MT ;
Helariutta, Y .
NATURE, 2003, 426 (6963) :181-186
[9]   An aniline blue staining procedure for confocal microscopy and 3D imaging of normal and perturbed cellular phenotypes in mature Arabidopsis embryos [J].
Bougourd, S ;
Marrison, J ;
Haseloff, J .
PLANT JOURNAL, 2000, 24 (04) :543-550
[10]   Characterization of the plant-specific BREVIS RADIX gene family reveals limited genetic redundancy despite high sequence conservation [J].
Briggs, GC ;
Mouchel, CF ;
Hardtke, CS .
PLANT PHYSIOLOGY, 2006, 140 (04) :1306-1316