4.7 Article

A purple acid phosphatase plays a role in nodule formation and nitrogen fixation in Astragalus sinicus

Journal

PLANT MOLECULAR BIOLOGY
Volume 88, Issue 6, Pages 515-529

Publisher

SPRINGER
DOI: 10.1007/s11103-015-0323-0

Keywords

AsPPD1; Purple acid phosphatase; Astragalus sinicus; Nodule formation; Nitrogen fixation

Funding

  1. National Natural Science Foundation of China [31000115, 31371549, 31460056]
  2. Major State Basic Research Development Program of China (973 Program) [2010CB126502]
  3. State Key Laboratory of Agricultural Microbiology [AMLKF200909]

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The AsPPD1 gene from Astragalus sinicus encodes a purple acid phosphatase. To address the functions of AsPPD1 in legume-rhizobium symbiosis, its expression patterns, enzyme activity, subcellular localization, and phenotypes associated with its over-expression and RNA interference (RNAi) were investigated. The expression of AsPPD1 was up-regulated in roots and nodules after inoculation with rhizobia. Phosphate starvation reduced the levels of AsPPD1 transcripts in roots while increased those levels in nodules. We confirmed the acid phosphatase and phosphodiesterase activities of recombinant AsPPD1 purified from Pichia pastoris, and demonstrated its ability to hydrolyze ADP and ATP in vitro. Subcellular localization showed that AsPPD1 located on the plasma membranes in hairy roots and on the symbiosomes membranes in root nodules. Over-expression of AsPPD1 in hairy roots inhibited nodulation, while its silencing resulted in nodules early senescence and significantly decreased nitrogenase activity. Furthermore, HPLC measurement showed that AsPPD1 overexpression affects the ADP levels in the infected roots and nodules, AsPPD1 silencing affects the ratio of ATP/ADP and the energy charge in nodules, and quantitative observation demonstrated the changes of AsPPD1 transcripts level affected nodule primordia formation. Taken together, it is speculated that AsPPD1 contributes to symbiotic ADP levels and energy charge control, and this is required for effective nodule organogenesis and nitrogen fixation.

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