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通过mRNA差异显示鉴定出的番茄体外形态发生新潜在标记

New potential markers of in vitro tomato morphogenesis identified by mRNA differential display.

作者信息

Torelli A, Soragni E, Bolchi A, Petrucco S, Ottonello S, Branca C

机构信息

Department of Evolutionary and Functional Biology, University of Parma, Italy.

出版信息

Plant Mol Biol. 1996 Dec;32(5):891-900. doi: 10.1007/BF00020486.

Abstract

The identification of plant genes involved in early phases of in vitro morphogenesis can not only contribute to our understanding of the processes underlying growth regulator-controlled determination, but also provide novel markers for evaluating the outcome of in vitro regeneration experiments. To search for such genes and to monitor changes in gene expression accompanying in vitro regeneration, we have adapted the mRNA differential display technique to the comparative analysis of a model system of tomato cotyledons that can be driven selectively toward either shoot or callus formation by means of previously determined growth regulator supplementations. Hormone-independent transcriptional modulation (mainly down-regulation) has been found to be the most common event, indicating that a non-specific reprogramming of gene expression quantitatively predominates during the early phases of in vitro culture. However, cDNA fragments representative of genes that are either down-regulated or induced in a programme-specific manner could also be identified, and two of them (G35, G36) were further characterized. One of these cDNA fragments, G35, corresponds to an mRNA that is down-regulated much earlier in callus- (day 2) than in shoot-determined explants (day 6). The other, G36, identifies an mRNA that is transiently expressed in shoot-determined explants only, well before any macroscopic signs of differentiation become apparent, and thus exhibits typical features of a morphogenetic marker.

摘要

鉴定参与体外形态发生早期阶段的植物基因,不仅有助于我们理解生长调节剂控制的决定过程的潜在机制,还能为评估体外再生实验的结果提供新的标记。为了寻找此类基因并监测伴随体外再生的基因表达变化,我们将mRNA差异显示技术应用于番茄子叶模型系统的比较分析,该模型系统可通过预先确定的生长调节剂补充,选择性地诱导形成芽或愈伤组织。已发现激素非依赖性转录调节(主要是下调)是最常见的事件,这表明在体外培养早期,基因表达的非特异性重编程在数量上占主导地位。然而,也可以鉴定出以程序特异性方式下调或诱导的基因的cDNA片段,其中两个(G35、G36)被进一步表征。这些cDNA片段之一,G35,对应于一种mRNA,其在愈伤组织中(第2天)比在芽决定的外植体中(第6天)更早被下调。另一个,G36,鉴定出一种仅在芽决定的外植体中短暂表达的mRNA,早在任何宏观分化迹象出现之前,因此表现出形态发生标记的典型特征。

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