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桉树木材形成过程中优先表达基因的鉴定

Identification of genes preferentially expressed during wood formation in Eucalyptus.

作者信息

Paux Etienne, Tamasloukht M'Barek, Ladouce Nathalie, Sivadon Pierre, Grima-Pettenati Jacqueline

机构信息

UMR UPS/CNRS 5546, Pôle de Biotechnologies Végétales, 24 chemin de Borde Rouge, BP17, Auzeville Tolosane, 31326 Castanet Tolosan, France.

出版信息

Plant Mol Biol. 2004 May;55(2):263-80. doi: 10.1007/s11103-004-0621-4.

Abstract

Wood is the most abundant biological resource on earth and it is also an important raw material for a major global industry with rapidly increasing demand. The genus Eucalyptus includes the most widely used tree species for industrial plantation, mainly for making pulp and paper. With the aim of identifying major genes involved in wood formation in Eucalyptus , we have developed a targeted approach of functional genomics based on the isolation of xylem preferentially expressed genes by subtractive PCR. Transcript profiling using cDNA arrays and analysis of variance (ANOVA) were used to identify differentially expressed ESTs between secondary xylem and leaves. Real-time RT-PCR was performed to confirm the differential expression of representative EST. Of 224 independent EST sequences obtained, 81% were preferentially expressed in xylem. One-third of the ESTs exhibiting homologies with proteins of known function fell into two main classes highlighting the importance of the auxin signalling through ubiquitin-dependent proteolysis on one hand, and of the enzymes involved in cell wall biosynthesis and remodelling, on the other. The functions of the genes represented by the remaining 61% of ESTs should be of great interest for future research. This systematic analysis of genes involved in wood formation in Eucalyptus provides valuable insights into the molecular mechanisms involved in secondary xylem differentiation as well as new candidate-genes for wood quality improvement.

摘要

木材是地球上最为丰富的生物资源,也是全球一个需求迅速增长的主要产业的重要原材料。桉属植物包含了工业人工林中使用最广泛的树种,主要用于制浆造纸。为了鉴定参与桉树木材形成的主要基因,我们基于通过消减PCR分离木质部优先表达基因,开发了一种靶向功能基因组学方法。使用cDNA阵列进行转录谱分析和方差分析(ANOVA),以鉴定次生木质部和叶片之间差异表达的EST。进行实时RT-PCR以确认代表性EST的差异表达。在获得的224个独立EST序列中,81%在木质部中优先表达。与已知功能蛋白质具有同源性的EST中有三分之一分为两个主要类别,一方面突出了通过泛素依赖性蛋白水解的生长素信号传导的重要性,另一方面突出了参与细胞壁生物合成和重塑的酶的重要性。其余61%的EST所代表的基因功能对于未来研究应具有极大的意义。这种对桉树木材形成相关基因的系统分析,为次生木质部分化所涉及的分子机制以及木材质量改良的新候选基因提供了有价值的见解。

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