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拟南芥N-乙酰鸟氨酸脱乙酰酶通过线性途径控制鸟氨酸生物合成,并对多胺水平产生下游影响。

The Arabidopsis N-Acetylornithine Deacetylase Controls Ornithine Biosynthesis via a Linear Pathway with Downstream Effects on Polyamine Levels.

作者信息

Molesini Barbara, Zanzoni Serena, Mennella Giuseppe, Francese Gianluca, Losa Alessia, L Rotino Giuseppe, Pandolfini Tiziana

机构信息

Department of Biotechnology, University of Verona, Verona, Italy.

Consiglio per la ricerca in agricoltura e l'analisi dell'economia agraria, Centro di Ricerca per l'Orticoltura, Pontecagnano-Faiano (Salerno), Italy.

出版信息

Plant Cell Physiol. 2017 Jan 1;58(1):130-144. doi: 10.1093/pcp/pcw167.

Abstract

Arabidopsis thaliana At4g17830 codes for a protein showing sequence similarity with the Escherichia coli N-acetylornithine deacetylase (EcArgE), an enzyme implicated in the linear ornithine (Orn) biosynthetic pathway. In plants, N-acetylornithine deacetylase (NAOD) activity has yet to be demonstrated; however, At4g17830-silenced and mutant (atnaod) plants display an impaired reproductive phenotype and altered foliar levels of Orn and polyamines (PAs). Here, we showed the direct connection between At4g17830 function and Orn biosynthesis, demonstrating biochemically that At4g17830 codes for a NAOD. These results are the first experimental proof that Orn can be produced in Arabidopsis via a linear pathway. In this study, to identify the role of AtNAOD in reproductive organs, we carried out a transcriptomic analysis on atnaod mutant and wild-type flowers. In the atnaod mutant, the most relevant effects were the reduced expression of cysteine-rich peptide-coding genes, known to regulate male-female cross-talk during reproduction, and variation in the expression of genes involved in nitrogen:carbon (N:C) status. The atnaod mutant also exhibited increased levels of sucrose and altered sensitivity to glucose. We hypothesize that AtNAOD participates in Orn and PA homeostasis, contributing to maintain an optimal N:C balance during reproductive development.

摘要

拟南芥At4g17830编码一种蛋白质,该蛋白质与大肠杆菌N - 乙酰鸟氨酸脱乙酰酶(EcArgE)具有序列相似性,EcArgE是一种参与线性鸟氨酸(Orn)生物合成途径的酶。在植物中,N - 乙酰鸟氨酸脱乙酰酶(NAOD)的活性尚未得到证实;然而,At4g17830基因沉默和突变的(atnaod)植物表现出生殖表型受损以及叶片中鸟氨酸和多胺(PAs)水平改变。在这里,我们展示了At4g17830功能与鸟氨酸生物合成之间的直接联系,通过生化实验证明At4g17830编码一种NAOD。这些结果是鸟氨酸可通过线性途径在拟南芥中产生的首个实验证据。在本研究中,为了确定AtNAOD在生殖器官中的作用,我们对atnaod突变体和野生型花朵进行了转录组分析。在atnaod突变体中,最显著的影响是富含半胱氨酸肽编码基因的表达降低,这些基因已知在生殖过程中调节雌雄相互作用,以及参与氮:碳(N:C)状态的基因表达发生变化。atnaod突变体还表现出蔗糖水平升高以及对葡萄糖的敏感性改变。我们推测AtNAOD参与鸟氨酸和多胺的稳态,有助于在生殖发育过程中维持最佳的N:C平衡。

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