Demura T, Fukuda H
Biological Institute, Faculty of Science, Tohoku University, Sendai, Japan.
Plant Cell. 1994 Jul;6(7):967-81. doi: 10.1105/tpc.6.7.967.
We have isolated three cDNA clones (TED2, TED3, and TED4) for genes expressed preferentially in cells that redifferentiate into tracheary elements from mesophyll cells isolated from leaves of Zinnia elegans. Sequence analyses of TED clones revealed that TED2 encodes a hydrophobic polypeptide with a significant similarity to the guinea pig lens-specific protein (zeta-crystallin) and that the deduced polypeptide of TED3 may be a novel cell wall protein. In situ hybridization of the TED probes with young Zinnia seedlings showed that expression of the three TED genes was restricted to vascular cells and regulated in a temporal and spatial manner during vascular development. TED3 transcripts were localized specifically to a few cells that are to differentiate or are differentiating into tracheary elements in all organs examined. TED4 transcripts were present mainly in the immature primary xylem both of cotyledons and of the boundary region between the root and hypocotyl and in the procambium of roots. In contrast, TED2 transcripts accumulated not only in immature primary xylem cells but also in immature phloem cells both in roots and in the boundary region between the root and hypocotyl. In addition, TED2 transcripts were expressed in the procambium cells of roots. In cotyledons, TED2 transcripts did not accumulate in xylem or phloem cells but only in two regions that might form a new vein just outside the phloem of the main leaf vein. Taken together, our findings indicate that TED2, TED3, and TED4 can be novel and efficient markers for development of the vascular system.
我们从百日草叶片中分离出叶肉细胞,这些细胞可再分化形成管状分子。我们已分离出三个cDNA克隆(TED2、TED3和TED4),它们所对应的基因在这些细胞中优先表达。对TED克隆的序列分析显示,TED2编码一种疏水多肽,与豚鼠晶状体特异性蛋白(ζ-晶状体蛋白)有显著相似性,且TED3推导的多肽可能是一种新型细胞壁蛋白。用TED探针与百日草幼苗进行原位杂交表明,这三个TED基因的表达局限于维管细胞,并在维管发育过程中受到时空调控。在所有检测的器官中,TED3转录本特异性定位于少数即将分化或正在分化为管状分子的细胞。TED4转录本主要存在于子叶以及根与下胚轴边界区域的未成熟初生木质部中,以及根的原形成层中。相比之下,TED2转录本不仅在根和根与下胚轴边界区域的未成熟初生木质部细胞中积累,还在未成熟韧皮部细胞中积累。此外,TED2转录本在根的原形成层细胞中表达。在子叶中,TED2转录本不在木质部或韧皮部细胞中积累,而是仅在主叶脉韧皮部外侧可能形成新叶脉的两个区域中积累。综上所述,我们的研究结果表明,TED2、TED3和TED4可能是维管系统发育的新型高效标记。