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The laccase multigene family in Arabidopsis thaliana: towards addressing the mystery of their gene function(s)

机译:拟南芥漆酶多基因家族:解决其基因功能的奥秘

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摘要

While laccases, multi-copper glycoprotein oxidases, are often able to catalyze oxidation of a broad range of substrates, such as phenols and amines in vitro, their precise physiological/biochemical roles in higher plants remain largely unclear, e.g., Arabidopsis thaliana contains 17 laccases with only 1 having a known physiological function. To begin to explore their roles in planta, spatial and temporal expression patterns of Arabidopsis laccases were compared and contrasted in different tissues at various development stages using RT-PCR and promoter-GUS fusions. Various cell-specific expressions were noted where specific laccases were uniquely expressed, such as LAC4 in interfascicular fibers and seed coat columella, LAC7 in hydathodes and root hairs, LAC8 in pollen grains and phloem, and LAC15 in seed coat cell walls. Such specific cell-type expression patterns provide new leads and/or strategies into determining their precise physiological/biochemical roles. In addition, there was an apparent redundancy of gene expression patterns for several laccases across a wide variety of tissues, lignified and non-lignified, perhaps indicative of overlapping function(s). Preliminary evidence, based on bioinformatics analyses, suggests that most laccases may also be tightly regulated at both transcriptional (antisense transcripts, histone and DNA methylation) and posttranscriptional (microRNAs) levels of gene expression.
机译:尽管漆酶(多铜糖蛋白氧化酶)通常能够在体外催化多种底物(如酚和胺)的氧化,但它们在高等植物中的确切生理/生化作用仍不清楚,例如拟南芥中含有17种漆酶。只有1个具有已知的生理功能。为了开始探索它们在植物中的作用,使用RT-PCR和启动子-GUS融合,比较了拟南芥漆酶在不同发育阶段在不同组织中的时空表达模式。注意到在独特漆酶被独特表达的情况下出现了多种细胞特异性表达,例如束间纤维和种皮小柱中的LAC4,水生动物和根毛中的LAC7,花粉粒和韧皮部中的LAC8,种皮细胞壁中的LAC15。这种特定的细胞类型表达模式为确定其确切的生理/生化作用提供了新的线索和/或策略。另外,木质和非木质化的多种漆酶在多种组织中的基因表达模式存在明显的冗余,可能表明功能重叠。根据生物信息学分析的初步证据表明,大多数漆酶在基因表达的转录(反义转录,组蛋白和DNA甲基化)和转录后(微RNA)水平上也可能受到严格调控。

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