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Gene structure and molecular analysis of the laccase-like multicopper oxidase (LMCO) gene family in Arabidopsis thaliana

机译:拟南芥漆酶样多铜氧化酶(LMCO)基因家族的基因结构和分子分析

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摘要

Completed genome sequences have made it clear that multicopper oxidases related to laccase are widely distributed as multigene families in higher plants. Laccase-like multicopper oxidase (LMCO) sequences culled from GenBank and the Arabidopsis thaliana genome, as well as those from several newly cloned genes, were used to construct a gene phylogeny that clearly divided plant LMCOs into six distinct classes, at least three of which predate the evolutionary divergence of angiosperms and gymnosperms. Alignments of the predicted amino acid sequences highlighted regions of variable sequence flanked by the highly conserved copper-binding domains that characterize members of this enzyme family. All of the predicted proteins contained apparent signal sequences. The expression of 13 of the 17 LMCO genes in A. thaliana was assessed in different tissues at various stages of development using RT-PCR. A diversity of expression patterns was demonstrated with some genes being expressed in a constitutive fashion, while others were only expressed in specific tissues at a particular stage of development. Only a few of the LMCO genes were expressed in a pattern that could be considered consistent with a major role for these enzymes in lignin deposition. These results are discussed in the context of other potential physiological functions for plant LMCOs, such as iron metabolism and wound healing.
机译:完整的基因组序列已明确表明,与漆酶有关的多铜氧化酶作为多基因家族广泛分布于高等植物中。从GenBank和拟南芥基因组中选出的漆酶样多铜氧化酶(LMCO)序列,以及从几个新克隆的基因中选出的序列,被用于构建基因系统发育,将植物LMCO清楚地分为六类,其中至少三类早于被子植物和裸子植物的进化差异。预测的氨基酸序列的比对突出显示了可变序列的区域,其侧翼是表征该酶家族成员的高度保守的铜结合域。所有预测的蛋白质均包含明显的信号序列。使用RT-PCR在不同发育阶段的不同组织中评估了拟南芥中17种LMCO基因中13种的表达。证明了多种表达模式,其中一些基因以组成型方式表达,而另一些仅在特定发育阶段的特定组织中表达。 LMCO基因中只有少数表达的模式与这些酶在木质素沉积中的主要作用一致。这些结果是在植物LMCO的其他潜在生理功能(如铁代谢和伤口愈合)的背景下讨论的。

著录项

  • 来源
    《Planta》 |2005年第5期|619-636|共18页
  • 作者单位

    Daniel B. Warnell School of Forest Resources University of GeorgiaDepartment of Energy-Plant Research Laboratory Michigan State University;

    Department of Genetics University of Georgia;

    Daniel B. Warnell School of Forest Resources University of Georgia;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Iron metabolism; Laccase; Lignification; Phylogeny;

    机译:铁代谢;漆酶;木质化;系统发育;

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