Meisner Anke K, Saffert Alexander, Schreier Peter, Schön Astrid
Institute of Pharmacy and Food Chemistry, University of Würzburg, Würzburg, Germany.
J Plant Physiol. 2009 Mar 1;166(4):333-43. doi: 10.1016/j.jplph.2008.05.009. Epub 2008 Aug 28.
alpha-Dioxygenases are expressed in plants in response to biotic and abiotic stress. They catalyze the enantioselective 2-hydroperoxidation of long-chain fatty acids, the initial step of the alpha-oxidation pathway of fatty acids in plants. In this study, the complete cDNA of an alpha-dioxygenase from germinating pea seeds (Pisum sativum) is presented. The deduced amino acid sequence establishes that the enzyme belongs to the recently characterized family of alpha-dioxygenating enzymes in plants. We also present the first systematic study on the expression of alpha-dioxygenase in germinating and developing pea plants. During germination, alpha-dioxygenase mRNA accumulates in the cotyledons and the embryonic axis of pea seeds de novo. In developing pea plants, the transcript is detected almost exclusively in roots. The accumulation of alpha-dioxygenase protein parallels transcript accumulation in that it is abundant in germinating as well as young plant tissue, and correlates with loss of mRNA during plant maturation. alpha-Dioxygenase enzymatic activity in plant extracts is highest in cotyledons during imbibition. In the embryonic axis and roots of developing plants comparable activity levels are observed, whereas in shoots little alpha-oxidation activity is detected. With this contribution, we present information on the temporal and spatial expression of alpha-dioxygenase during plant germination and development, supporting the hypothesis that the alpha-oxidation pathway of fatty acids plays a role during plant developmental processes.
α-双加氧酶在植物中表达以响应生物和非生物胁迫。它们催化长链脂肪酸的对映选择性2-氢过氧化反应,这是植物脂肪酸α-氧化途径的起始步骤。在本研究中,展示了来自发芽豌豆种子(豌豆)的α-双加氧酶的完整cDNA。推导的氨基酸序列表明该酶属于植物中最近鉴定的α-双加氧酶家族。我们还首次对发芽和发育中的豌豆植株中α-双加氧酶的表达进行了系统研究。在发芽过程中,α-双加氧酶mRNA在豌豆种子的子叶和胚轴中从头积累。在发育中的豌豆植株中,转录本几乎仅在根中检测到。α-双加氧酶蛋白的积累与转录本积累平行,即在发芽以及幼嫩植物组织中含量丰富,并且与植物成熟过程中mRNA的减少相关。植物提取物中的α-双加氧酶活性在吸胀期间的子叶中最高。在发育中的植物的胚轴和根中观察到相当的活性水平,而在茎中几乎检测不到α-氧化活性。通过本研究,我们提供了关于α-双加氧酶在植物发芽和发育过程中的时空表达信息,支持脂肪酸α-氧化途径在植物发育过程中起作用的假说。