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The Arabidopsis thaliana dhdps gene encoding dihydrodipicolinate synthase, key enzyme of lysine biosynthesis, is expressed in a cell-specific manner

机译:以细胞特异性方式表达编码拟南芥赖氨酸生物合成关键酶二氢二吡啶甲酸合酶的拟南芥dhdps基因

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摘要

Lysine synthesis in prokaryotes, some phycomycetes and higher plants starts with the condensation of L-aspartate-b-semialdehyde (L-ASA) and pyruvate into dihydrodipicolinic acid. The enzyme that catalyses this step, dihydrodipicolinate synthase (DHDPS), is inhibited by the end-product lysine and is therefore thought to have a regulatory control on lysine synthesis. We have cloned and sequenced an Arabidopsis thaliana DNA fragment containing 900 bases upstream of the dhdps coding sequence. A transcriptional fusion of this fragment with the beta -glucuronidase reporter gene (uidA, Gus) was used to study the transcription properties of this promoter fragment (DS). No lysine-induced repression on transcription could be detected. Expression of DS-Gus activity in transformed Arabidopsis thaliana and Nicotiana tabacum was found to be cell type-specific. In the vegetative parts of the plant, GUS activity was located in meristems and young vasculature of roots, in vasculature of stem and leaves and in the meristems of young shoots. In flowers, high expression was found in the carpels, style, stigma, developing embryos, tapetum of young anthers and pollen. We demonstrated that the Arabidopsis DS promoter can direct its cell type-specific expression in a heterologous plant, Nicotiana tabacum. The importance of transcriptional regulation of the dhdps gene, and in more general genes involved in amino acid biosynthesis, is discussed.
机译:原核生物,某些藻类植物和高等植物中赖氨酸的合成始于L-天门冬氨酸-b-半醛(L-ASA)和丙酮酸缩合为二氢二吡啶甲酸。催化此步骤的酶二氢二吡啶甲酸合酶(DHDPS)被终产物赖氨酸抑制,因此被认为对赖氨酸合成具有调控作用。我们已经克隆并测序了拟南芥DNA片段,该片段在dhdps编码序列上游包含900个碱基。该片段与β-葡糖醛酸糖苷酶报道基因(uidA,Gus)的转录融合被用于研究该启动子片段(DS)的转录特性。无法检测到赖氨酸诱导的转录抑制。发现DS-Gus活性在转化的拟南芥和烟草中的表达是细胞类型特异性的。在植物的营养部位,GUS活性位于根的分生组织和年轻脉管系统中,茎和叶的脉管系统中以及幼芽的分生组织中。在花中,在心皮,花柱,柱头,发育中的胚芽,幼小花药的绒毡层和花粉中发现了高表达。我们证明了拟南芥DS启动子可以指导其在异源植物烟草中的细胞类型特异性表达。讨论了dhdps基因以及更常见的氨基酸生物合成基因转录调控的重要性。

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