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玉米(Zea mays L.)茎生不定根起始的蛋白质组学分析。

Proteomic analysis of shoot-borne root initiation in maize (Zea mays L.).

作者信息

Sauer Michaela, Jakob Andreas, Nordheim Alfred, Hochholdinger Frank

机构信息

ZMBP, Center for Plant Molecular Biology, Department of General Genetics, University of Tuebingen, Tuebingen, Germany.

出版信息

Proteomics. 2006 Apr;6(8):2530-41. doi: 10.1002/pmic.200500564.

Abstract

Postembryonically formed shoot-borne roots make up the major backbone of the adult maize root stock. In this study the abundant soluble proteins of the first node (coleoptilar node) of wild-type and mutant rtcs seedlings, which do not initiate crown roots, were compared at two early stages of crown root formation. In Coomassie Bluestained 2-D gels, representing soluble proteins of coleoptilar nodes 5 and 10 days after germination, 146 and 203 proteins were detected, respectively. Five differentially accumulated proteins (> two-fold change; t-test: 95% significance) were identified in 5-day-old and 14 differentially accumulated proteins in 10-day-old coleoptilar nodes of wild-type versus rtcs. All 19 differentially accumulated proteins were identified via ESI MS/MS mass spectrometry. Five differentially accumulated proteins, including a regulatory G-protein and a putative auxin-binding protein, were further analyzed at the RNA expression level. These experiments confirmed differential gene expression and revealed subtle developmental regulation of these genes during early coleoptilar node development. This study represents the first proteomic analysis of shoot-borne root initiation in cereals and will contribute to a better understanding of the molecular basis of this developmental process unique to cereals.

摘要

胚后形成的茎生根构成了成年玉米根系的主要骨干。在本研究中,对野生型和突变体rtcs幼苗第一节(胚芽鞘节)中丰富的可溶性蛋白质进行了比较,这些幼苗不形成冠根,比较是在冠根形成的两个早期阶段进行的。在考马斯亮蓝染色的二维凝胶中,分别检测到了发芽后5天和10天胚芽鞘节的可溶性蛋白质,分别为146种和203种。在野生型与rtcs的5日龄胚芽鞘节中鉴定出5种差异积累蛋白(变化超过两倍;t检验:95%显著性),在10日龄胚芽鞘节中鉴定出14种差异积累蛋白。所有19种差异积累蛋白均通过电喷雾串联质谱(ESI MS/MS)鉴定。包括一种调节性G蛋白和一种假定的生长素结合蛋白在内的5种差异积累蛋白在RNA表达水平上进一步分析。这些实验证实了基因表达的差异,并揭示了这些基因在早期胚芽鞘节发育过程中的微妙发育调控。本研究是对谷物中茎生根起始的首次蛋白质组学分析,将有助于更好地理解谷物特有的这一发育过程的分子基础。

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