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A RING Domain Gene Is Expressed in Different Cell Types of Leaf Trace Stem and Juvenile Bundles in the Stem Vascular System of Zinnia

机译:RING域基因在百日草的茎血管系统中的不同类型的叶片茎干和幼虫丛中表达。

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摘要

The in vitro zinnia (Zinnia elegans) mesophyll cell system, in which leaf mesophyll cells are induced to transdifferentiate into tracheary elements with high synchrony, has become an established model for studying xylogenesis. The architecture of the stem vascular system of zinnia cv Envy contains three anatomically distinct vascular bundles at different stages of development. Juvenile vascular strands of the subapical region develop into mature vascular strands with leaf trace segments and stem segments. Characteristic patterns of gene expression in juvenile, leaf trace, and stem bundles are revealed by a molecular marker, a RING domain-encoding gene, ZeRH2.1, originally isolated from a zinnia cDNA library derived from differentiating in vitro cultures. Using RNA in situ hybridization, we show that ZeRH2.1 is expressed preferentially in two specific cell types in mature zinnia stems. In leaf trace bundles, ZeRH2.1 transcript is abundant in xylem parenchyma cells, while in stem bundles it is abundant in phloem companion cells. Both of these cell types show wall ingrowths characteristic of transfer cells. In addition, ZeRH2.1 transcript is abundant in some phloem cells of juvenile bundles and in leaf palisade parenchyma. The complex and developmentally regulated expression pattern of ZeRH2.1 reveals heterogeneity in the vascular anatomy of the zinnia stem. We discuss a potential function for this gene in intercellular transport processes.
机译:体外百日草(Zinnia elegans)叶肉细胞系统,其中以高同步性诱导叶片叶肉细胞转分化为气管元件,已成为研究木糖异生的成熟模型。百日草(Chinnia cv Envy)的干血管系统的体系结构包含三个在发育不同阶段的解剖学上不同的血管束。根尖下区域的少年维管束发育成具有叶片痕迹段和茎段的成熟维管束。分子标记,一个RING域编码基因ZeRH2.1,最初是从分化体外培养物中得到的百日草cDNA库中分离出来的,揭示了幼虫,叶迹和茎束中基因表达的特征模式。使用RNA原位杂交,我们显示ZeRH2.1在成熟的百日草茎中的两种特定细胞类型中优先表达。在叶迹束中,木质部薄壁细胞中ZeRH2.1转录物丰富,而在茎束中,韧皮部陪伴细胞中ZeRH2.1转录物丰富。这两种细胞类型均显示转移细胞的壁向内生长特征。此外,ZeRH2.1转录本在一些幼年的韧皮部细胞和叶栅栏薄壁组织中含量丰富。 ZeRH2.1的复杂且受发育调控的表达模式揭示了百日草茎血管解剖结构的异质性。我们讨论了该基因在细胞间转运过程中的潜在功能。

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