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小叶脉韧皮部中保守调控程序的功能与系统发育分析

Functional and phylogenetic analyses of a conserved regulatory program in the phloem of minor veins.

作者信息

Ayre Brian G, Blair Jaime E, Turgeon Robert

机构信息

Department of Plant Biology, Cornell University, Ithaca, New York 14853, USA.

出版信息

Plant Physiol. 2003 Nov;133(3):1229-39. doi: 10.1104/pp.103.027714. Epub 2003 Oct 2.

Abstract

The minor-vein phloem of mature leaves is developmentally and physiologically distinct from the phloem in the rest of the vascular system. Phloem loading of transport sugars occurs in the minor veins, and consistent with this, galactinol synthase is expressed in the minor veins of melon (Cucumis melo) as part of the symplastic-loading mechanism that operates in this species. A galactinol synthase promoter from melon drives gene expression in the minor-vein companion cells of both transgenic tobacco (Nicotiana tabacum) and Arabidopsis. Neither of these plants use galactinol in the phloem-loading process, implying that the promoter responds to a minor-vein-specific regulatory cascade that is highly conserved across a broad range of eudicotyledons. Detailed analysis of this promoter by truncation and mutagenesis identified three closely coupled sequences that unambiguously modulate tissue specificity. These sequences cooperate in a combinatorial fashion: two promote expression throughout the vascular system of the plant, whereas the third functions to repress expression in the larger bundles. In a complementary approach, phylogenetic footprinting was used to obtain single-nucleotide resolution of conserved sites in orthologous promoters from diverse members of the Cucurbitaceae. This comparative analysis confirmed the importance of the closely coupled sites but also revealed other highly conserved sequences that may modulate promoter strength or contribute to expression patterns outside of the phloem. The conservation of this regulatory design among species that phloem load by different mechanisms supports a model for organismal development in which tissues and cell types are controlled by relatively ancient and conserved paradigms but expression of genes influencing final form and function are relatively plastic.

摘要

成熟叶片的小叶脉韧皮部在发育和生理上与维管系统其他部分的韧皮部不同。运输糖的韧皮部装载发生在小叶脉中,与此一致的是,半乳糖醇合酶在甜瓜(黄瓜)的小叶脉中表达,作为该物种中起作用的共质体装载机制的一部分。来自甜瓜的半乳糖醇合酶启动子驱动转基因烟草(烟草)和拟南芥小叶脉伴胞中的基因表达。这两种植物在韧皮部装载过程中都不使用半乳糖醇,这意味着该启动子对广泛的双子叶植物中高度保守的小叶脉特异性调控级联反应作出响应。通过截短和诱变对该启动子进行详细分析,确定了三个紧密相连的序列,这些序列明确地调节组织特异性。这些序列以组合方式协同作用:两个促进植物整个维管系统中的表达,而第三个则起到抑制较大维管束中表达的作用。在一种互补方法中,系统发育足迹法用于获得葫芦科不同成员直系同源启动子中保守位点的单核苷酸分辨率。这种比较分析证实了紧密相连位点的重要性,但也揭示了其他高度保守的序列,这些序列可能调节启动子强度或影响韧皮部以外的表达模式。通过不同机制进行韧皮部装载的物种之间这种调控设计的保守性支持了一种生物体发育模型,其中组织和细胞类型由相对古老和保守的模式控制,但影响最终形态和功能的基因表达相对具有可塑性。

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