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马铃薯叶片中线粒体甲酸脱氢酶的应激诱导

Stress Induction of Mitochondrial Formate Dehydrogenase in Potato Leaves.

作者信息

Hourton-Cabassa C, Ambard-Bretteville F, Moreau F, Rémy R, Francs-Small CC

机构信息

Institut de Biotechnologie des Plantes, Centre National de la Recherche Scientifique-Equipe en Restructuration 569 Université Paris-Sud, Bâtiment 630, F-91405 Orsay cedex, France (C.H.-C., F.A.-B., R.R., C.C.d.F.-S.)

出版信息

Plant Physiol. 1998 Feb 1;116(2):627-35. doi: 10.1104/pp.116.2.627.

DOI:10.1104/pp.116.2.627
PMID:9490763
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC35120/
Abstract

In higher plants formate dehydrogenase (FDH, EC 1.2.1.2.) is a mitochondrial, NAD-dependent enzyme. We previously reported that in potato (Solanum tuberosum L.) FDH expression is high in tubers but low in green leaves. Here we show that in isolated tuber mitochondria FDH is involved in formate-dependent O2 uptake coupled to ATP synthesis. The effects of various environmental and chemical factors on FDH expression in leaves were tested using the mitochondrial serine hydroxymethyltransferase as a control. The abundance of FDH transcripts is strongly increased under various stresses, whereas serine hydroxymethyltransferase transcripts decline. The application of formate to leaves strongly enhances FDH expression, suggesting that it might be the signal for FDH induction. Our experiments using glycolytic products suggest that glycolysis may play an important role in formate synthesis in leaves in the dark and during hypoxia, and in tubers. Of particular interest is the dramatic accumulation of FDH transcripts after spraying methanol on leaves, as this compound is known to increase the yields of C3 plants. In addition, although the steady-state levels of FDH transcript increase very quickly in response to stress, protein accumulation is much slower, but can eventually reach the same levels in leaves as in tubers.

摘要

在高等植物中,甲酸脱氢酶(FDH,EC 1.2.1.2.)是一种依赖于线粒体和NAD的酶。我们之前报道过,在马铃薯(Solanum tuberosum L.)中,FDH在块茎中的表达较高,而在绿叶中的表达较低。在此我们表明,在分离出的块茎线粒体中,FDH参与与ATP合成偶联的依赖于甲酸的氧气摄取。使用线粒体丝氨酸羟甲基转移酶作为对照,测试了各种环境和化学因素对叶片中FDH表达的影响。在各种胁迫下,FDH转录本的丰度显著增加,而丝氨酸羟甲基转移酶转录本则下降。向叶片施用甲酸强烈增强FDH表达,这表明它可能是FDH诱导的信号。我们使用糖酵解产物进行的实验表明,糖酵解可能在黑暗和缺氧条件下叶片以及块茎中的甲酸合成中发挥重要作用。特别值得关注的是,在向叶片喷洒甲醇后,FDH转录本急剧积累,因为已知这种化合物可提高C3植物的产量。此外,尽管FDH转录本的稳态水平响应胁迫迅速增加,但蛋白质积累要慢得多,但最终叶片中的蛋白质水平可与块茎中的达到相同水平。

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