[Metabolic control of seed germination].

J. Catusse, J. Strub, C. Job, A. van Dorsselaer, D. Job
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引用次数: 1

Abstract

We have used proteomics to better characterize germination and early seedling vigor in sugarbeet. Our strategy includes (1) construction of proteome reference maps for dry and germinating seeds of a high-vigor reference seed lot; (2) investigation of the specific tissue accumulation of proteins (root, cotyledon, perisperm); (3) investigation of changes in protein expression profiles detected in the reference seed lot subjected to different vigor-modifying treatments, e.g. aging and/or priming. More than 1 000 sugarbeet seed proteins have been identified by LC/MS-MS mass spectrometry (albumins, globulins and glutelins have been analyzed separately). Due to the conservation of protein sequences and the quality of MS sequencing (more than 10 000 peptide sequences have been obtained), the success rate of protein identification was on the average of 80%. This is to our knowledge the best detailed proteome analysis ever carried out in seeds. The data allowed us to build a detailed metabolic chart of the sugarbeet seed, generating new insights into the molecular mechanisms determining the development of a new seedling. Also, the proteome of a seed-storage tissue as the perisperm is described for the first time.
[种子萌发的代谢控制]。
我们利用蛋白质组学来更好地表征甜菜的发芽和早苗活力。我们的策略包括:(1)构建高活力参考种子组的干种子和萌发种子的蛋白质组参考图谱;(2)蛋白质特异性组织积累(根、子叶、外胚层)的研究;(3)研究在不同活力修饰处理(如老化和/或启动)下,参考种子中检测到的蛋白质表达谱的变化。用LC/MS-MS质谱法鉴定了1000多种甜菜种子蛋白(分别分析了白蛋白、球蛋白和麸质蛋白)。由于蛋白质序列的保守性和MS测序的质量(已获得超过10000个肽序列),蛋白质鉴定的成功率平均为80%。据我们所知,这是迄今为止在种子中进行的最详细的蛋白质组分析。这些数据使我们能够建立甜菜种子的详细代谢图表,对决定新幼苗发育的分子机制产生新的见解。此外,本文还首次描述了作为外种皮的种子贮藏组织的蛋白质组。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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