]*>","")" /> Comparative genetic analysis of <i>Arabidopsis</i> purple acid phosphatases AtPAP10, AtPAP12, and AtPAP26 provides new insights into their roles in plant adaptation to phosphate deprivation

J Integr Plant Biol ›› 2014, Vol. 56 ›› Issue (3): 299-314.DOI: 10.1111/jipb.12184

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

Liangsheng Wang, Shan Lu, Ye Zhang, Zheng Li, Xiaoqiu Du and Dong Liu*   

  • 收稿日期:2014-01-28 接受日期:2014-02-09 出版日期:2014-03-01 发布日期:2014-02-15

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

Liangsheng Wang, Shan Lu, Ye Zhang, Zheng Li, Xiaoqiu Du and Dong Liu*   

  1. MOE Key Laboratory of Bioinformatics, Center for Plant Biology, School of Life Sciences, Tsinghua University, Beijing, China
  • Received:2014-01-28 Accepted:2014-02-09 Online:2014-03-01 Published:2014-02-15
  • About author:*Correspondence: E-mail: liu-d@tsinghua.edu.cn

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.

Wang L, Lu S, Zhang Y, Li Z, Du X, Liu D (2014) Comparative genetic analysis of Arabidopsis purple acid phosphatases AtPAP10, AtPAP12, and AtPAP26 provides new insights into their roles in plant adaptation to phosphate deprivation. J Integr Plant Biol 56: 299–314. doi: 10.1111/jipb.12184

Key words: Phosphate starvation responses, Acid phosphatase activity, atpap mutants, AtPAP overexpression, Tolerance to phosphate deprivation

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