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来自拟南芥的一种营养贮藏蛋白基因的表达受铜、衰老和臭氧的调控。

Expression of a vegetative-storage-protein gene from Arabidopsis is regulated by copper, senescence and ozone.

作者信息

Mira Helena, Martínez Noemí, Peñarrubia Lola

机构信息

Departament de Bioquímica i Biologia Molecular, Universitat de València, Dr Moliner 50, Burjassot, 46100, Spain.

出版信息

Planta. 2002 Apr;214(6):939-46. doi: 10.1007/s00425-001-0706-0. Epub 2002 Jan 9.

Abstract

Emerging data suggest that the mechanisms regulating plant copper homeostasis could be implicated in stress and senescence signal transduction pathways. To gain insight into copper-modulated patterns of gene expression, copper-treated Arabidopsis thaliana (L.) Heynh. plants were analysed by mRNA differential display. The experimental conditions were selected using aggregation of ribulose-1,5-bisphosphate carboxylase-oxygenase (Rubisco) as a molecular sensor to monitor copper-induced oxidative stress. Two copper-induced messengers encoding a vegetative storage protein (VSP2) were isolated by this technique. Both clones differed in the length of their 3'-untranslated region according to the presence of two polyadenylation signals in this region. VSP2 expression was further studied under natural senescence and various conditions causing oxidative stress, such as ozone exposure, paraquat and H2O2 treatments. The expression of other messengers related to copper homeostasis and detoxification processes was followed in parallel to that of VSP2. Here, we describe specific gene-expression responses to copper treatment, and present arguments connecting copper homeostasis, senescence and antioxidative responses in plants. Our results are consistent with the role of VSPs as temporary nitrogen-storage proteins which accumulate if nutrients are abundant, either in developing organs or in cotyledons and mature leaves subjected to generalized protein mobilization, such as those conditions created under severe oxidative stress.

摘要

新出现的数据表明,调节植物铜稳态的机制可能与胁迫和衰老信号转导途径有关。为了深入了解铜调节的基因表达模式,对经铜处理的拟南芥植株进行了mRNA差异显示分析。实验条件的选择以1,5-二磷酸核酮糖羧化酶加氧酶(Rubisco)的聚集作为分子传感器,以监测铜诱导的氧化应激。通过该技术分离出两个编码营养贮藏蛋白(VSP2)的铜诱导信使。根据该区域中两个聚腺苷酸化信号的存在情况,两个克隆的3'非翻译区长度不同。在自然衰老以及各种导致氧化应激的条件下,如臭氧暴露、百草枯和过氧化氢处理,进一步研究了VSP2的表达。与VSP2的表达平行地跟踪了其他与铜稳态和解毒过程相关的信使的表达。在此,我们描述了对铜处理的特定基因表达反应,并提出了将植物中铜稳态、衰老和抗氧化反应联系起来的论据。我们的结果与VSPs作为临时氮贮藏蛋白的作用一致,即在营养丰富时,VSPs会在发育中的器官或经历普遍蛋白质动员的子叶和成熟叶片中积累,例如在严重氧化应激下产生的那些条件。

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