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Molecular diversity of phospholipase D in angiosperms

机译:被子植物中磷脂酶D的分子多样性

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Background The phospholipase D (PLD) family has been identified in plants by recent molecular studies, fostered by the emerging importance of plant PLDs in stress physiology and signal transduction. However, the presence of multiple isoforms limits the power of conventional biochemical and pharmacological approaches, and calls for a wider application of genetic methodology. Results Taking advantage of sequence data available in public databases, we attempted to provide a prerequisite for such an approach. We made a complete inventory of the Arabidopsis thaliana PLD family, which was found to comprise 12 distinct genes. The current nomenclature of Arabidopsis PLDs was refined and expanded to include five newly described genes. To assess the degree of plant PLD diversity beyond Arabidopsis we explored data from rice (including the genome draft by Monsanto) as well as cDNA and EST sequences from several other plants. Our analysis revealed two major PLD subfamilies in plants. The first, designated C2-PLD, is characterised by presence of the C2 domain and comprises previously known plant PLDs as well as new isoforms with possibly unusual features-catalytically inactive or independent on Ca2+. The second subfamily (denoted PXPH-PLD) is novel in plants but is related to animal and fungal enzymes possessing the PX and PH domains. Conclusions The evolutionary dynamics, and inter-specific diversity, of plant PLDs inferred from our phylogenetic analysis, call for more plant species to be employed in PLD research. This will enable us to obtain generally valid conclusions.
机译:背景技术最近,由于植物PLD在逆境生理和信号转导中的重要性日益增强,最近的分子研究已在植物中鉴定出磷脂酶D(PLD)家族。但是,多种同工型的存在限制了常规生化和药理学方法的功能,并要求更广泛地应用遗传学方法。结果利用公共数据库中可用的序列数据,我们尝试提供这种方法的先决条件。我们对拟南芥PLD家族进行了完整的清点,发现其包含12个不同的基因。拟南芥PLDs的当前命名法已得到完善和扩展,以包括五个新描述的基因。为了评估拟南芥以外植物PLD多样性的程度,我们探索了水稻数据(包括孟山都公司的基因组草图)以及其他几种植物的cDNA和EST序列。我们的分析揭示了植物中两个主要的PLD亚科。第一个命名为C2-PLD,其特征是存在C2结构域,并包含先前已知的植物PLD以及具有可能异常特征的新同工型,即催化无活性或独立于Ca 2 + 。第二个亚科(称为PXPH-PLD)在植物中是新颖的,但与具有PX和PH结构域的动物和真菌酶有关。结论根据我们的系统进化分析推断,植物PLD的进化动力学和种间多样性要求在PLD研究中采用更多的植物物种。这将使我们能够获得普遍有效的结论。

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