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拟南芥紫色酸性磷酸酶 AtPAP10、AtPAP12 和 AtPAP26 的比较遗传分析为它们在植物适应磷饥饿中的作用提供了新的见解。

Comparative genetic analysis of Arabidopsis purple acid phosphatases AtPAP10, AtPAP12, and AtPAP26 provides new insights into their roles in plant adaptation to phosphate deprivation.

机构信息

MOE Key Laboratory of Bioinformatics, Center for Plant Biology, School of Life Sciences, Tsinghua University, Beijing, 100084, China.

出版信息

J Integr Plant Biol. 2014 Mar;56(3):299-314. doi: 10.1111/jipb.12184.

DOI:10.1111/jipb.12184
PMID:24528675
Abstract

Induction and secretion of acid phosphatases (APases) is thought to be an adaptive mechanism that helps plants survive and grow under phosphate (Pi) deprivation. In Arabidopsis, there are 29 purple acid phosphatase (AtPAP) genes. To systematically investigate the roles of different AtPAPs, we first identified knockout or knock-down T-DNA lines for all 29 AtPAP genes. Using these atpap mutants combined with in-gel and quantitative APase enzyme assays, we demonstrated that AtPAP12 and AtPAP26 are two major intracellular and secreted APases in Arabidopsis while AtPAP10 is mainly a secreted APase. On Pi-deficient (P-) medium or P- medium supplemented with the organophosphates ADP and fructose-6-phosphate (Fru-6-P), growth of atpap10 was significantly reduced whereas growth of atpap12 was only moderately reduced, and growth of atpap26 was nearly equal to that of the wild type (WT). Overexpression of the AtPAP12 or AtPAP26 gene, however, caused plants to grow better on P- or P- medium supplemented with ADP or Fru-6-P. Interestingly, Pi levels are essentially the same for the WT and overexpressing lines, although these two types of plants have significantly different growth phenotypes. These results suggest that the APases may have other roles besides enhancing internal Pi recycling or releasing Pi from external organophosphates for plant uptake.

摘要

酸性磷酸酶(APases)的诱导和分泌被认为是一种适应性机制,可以帮助植物在磷(Pi)缺乏的情况下生存和生长。在拟南芥中,有 29 个紫色酸性磷酸酶(AtPAP)基因。为了系统研究不同 AtPAP 的作用,我们首先鉴定了所有 29 个 AtPAP 基因的 T-DNA 敲除或敲低株系。利用这些 atpap 突变体,结合凝胶内和定量 APase 酶分析,我们证明 AtPAP12 和 AtPAP26 是拟南芥中两种主要的细胞内和分泌型 APases,而 AtPAP10 主要是一种分泌型 APase。在缺磷(P-)培养基或补充有机磷 ADP 和果糖-6-磷酸(Fru-6-P)的 P-培养基上,atpap10 的生长受到显著抑制,而 atpap12 的生长仅受到中度抑制,atpap26 的生长几乎与野生型(WT)相同。然而,AtPAP12 或 AtPAP26 基因的过表达导致植物在补充 ADP 或 Fru-6-P 的 P-或 P-培养基上生长得更好。有趣的是,尽管这两种类型的植物具有明显不同的生长表型,但 WT 和过表达系的 Pi 水平基本相同。这些结果表明,APases 除了增强内部 Pi 循环或从外部有机磷中释放 Pi 以供植物吸收之外,可能还有其他作用。

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