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PMID: 11319031 Published · ppublish English Comparative Study Journal Article Research Support, Non-U.S. Gov't

Extracellular secretion of Aspergillus phytase from Arabidopsis roots enables plants to obtain phosphorus from phytate.

The Plant journal : for cell and molecular biology ·Vol. 25 ·No. 6 ·2001-03-00 ·Pages 641-9

Richardson AE, Hadobas PA, Hayes JE

Abstract

Phosphorus (P) deficiency in soil is a major constraint for agricultural production worldwide. Despite this, most soils contain significant amounts of total soil P that occurs in inorganic and organic fractions and accumulates with phosphorus fertilization. A major component of soil organic phosphorus occurs as phytate. We show that when grown in agar under sterile conditions, Arabidopsis thaliana plants are able to obtain phosphorus from a range of organic phosphorus substrates that would be expected to occur in soil, but have only limited ability to obtain phosphorus directly from phytate. In wild-type plants, phytase constituted less than 0.8% of the total acid phosphomonoesterase activity of root extracts and was not detectable as an extracellular enzyme. By comparison, the growth and phosphorus nutrition of Arabidopsis plants supplied with phytate was improved significantly when the phytase gene (phyA) from Aspergillus niger was introduced. The Aspergillus phytase was only effective when secreted as an extracellular enzyme by inclusion of the signal peptide sequence from the carrot extensin (ex) gene. A 20-fold increase in total root phytase activity in transgenic lines expressing ex::phyA resulted in improved phosphorus nutrition, such that the growth and phosphorus content of the plants was equivalent to control plants supplied with inorganic phosphate. These results show that extracellular phytase activity of plant roots is a significant factor in the utilization of phosphorus from phytate and indicate that opportunity exists for using gene technology to improve the ability of plants to utilize accumulated forms of soil organic phosphorus.

MeSH Terms
6-Phytase/genetics,metabolism Arabidopsis/enzymology,genetics,growth & development Aspergillus niger/enzymology,genetics DNA, Fungal Extracellular Space Genes, Fungal Genes, Plant Molecular Sequence Data Phosphoric Monoester Hydrolases/metabolism Phosphorus/metabolism Phytic Acid/metabolism Plant Proteins Plant Roots/genetics,physiology Plants, Genetically Modified/growth & development Signal Transduction
Chemicals
DNA, Fungal Plant Proteins Phosphorus Phytic Acid Phosphoric Monoester Hydrolases 6-Phytase
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Richardson A E
CSIRO, Plant Industry, GPO Box 1600, Canberra ACT 2601, Australia. alan.richardson@pi.csiro.au
Hadobas P A
Hayes J E
Article Info
Journal
The Plant journal : for cell and molecular biology
Abbr.
Plant J
ISSN
0960-7412
Published
2001-03-00
Pages
641-9
Language
English
Region
England
NLM ID
9207397
Subset
IM
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AF353576
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