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The potato-specific apyrase is apoplastically localized and has influence on gene expression, growth, and development

机译:马铃薯特定的腺苷三磷酸脱磷酸酶在质外体中定位并且对基因表达,生长和发育有影响

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Apyrases hydrolyze nucleoside triphosphates and diphosphates and are found in all eukaryotes and a few prokaryotes. Although their enzymatic properties have been well characterized, relatively little is known regarding their subcellular localization and physiological function in plants. In this study, we used reverse genetic and biochemical approaches to investigate the role of potato (Solanum tuberosum)-specific apyrase. Silencing of the apyrase gene family with RNA interference constructs under the control of the constitutive 35S promoter led to a strong decrease in apyrase activity to below 10% of the wild-type level. This decreased activity led to phenotypic changes in the transgenic lines, including a general retardation in growth, an increase in tuber number per plant, and differences in tuber morphology. Silencing of apyrase under the control of a tuber-specific promoter led to similar changes in tuber morphology; however, there were no direct effects of apyrase inhibition on tuber metabolism. DNA microarrays revealed that decreased expression of apyrase leads to increased levels of transcripts coding for cell wall proteins involved in growth and genes involved in energy transfer and starch synthesis. To place these results in context, we determined the subcellular localization of the potato-specific apyrase. Using a combination of approaches, we were able to demonstrate that this enzyme is localized to the apoplast. We describe the evidence that underlies both this fact and that potato-specific apyrase has a crucial role in regulating growth and development.
机译:没食子酸酯水解三磷酸核苷和二磷酸核苷,并存在于所有真核生物和一些原核生物中。尽管已经很好地表征了它们的酶学性质,但是关于它们在植物中的亚细胞定位和生理功能却知之甚少。在这项研究中,我们使用了逆向遗传和生化方法来研究马铃薯(马铃薯)特异性腺苷三磷酸双磷酸酶的作用。在组成型35S启动子的控制下,用RNA干扰构建体沉默了腺苷三磷酸酶基因家族,导致腺苷三磷酸酶活性强烈降低至野生型水平的10%以下。活性的降低导致转基因品系的表型改变,包括生长的普遍延迟,每株植物块茎数量的增加以及块茎形态的差异。在块茎特异性启动子的控制下沉默腺苷三磷酸腺苷导致块茎形态发生类似变化。但是,腺苷三磷酸双磷酸酶抑制对块茎代谢没有直接影响。 DNA微阵列显示,腺苷三磷酸酶表达的降低导致编码参与生长的细胞壁蛋白以及参与能量转移和淀粉合成的基因的转录本水平升高。为了将这些结果放在上下文中,我们确定了马铃薯特异性腺苷三磷酸双磷酸酶的亚细胞定位。使用多种方法的结合,我们能够证明该酶定位于质外体。我们描述了这一事实以及马铃薯特有的腺苷三磷酸双磷酸酶在调节生长和发育中起关键作用的证据。

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