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Generation of phytate-free seeds in Arabidopsis through disruption of inositol polyphosphate kinases.


ABSTRACT: Phytate (inositol hexakisphosphate, IP6) is a regulator of intracellular signaling, a highly abundant animal antinutrient, and a phosphate store in plant seeds. Here, we report a requirement for inositol polyphosphate kinases, AtIPK1 and AtIPK2beta, for the later steps of phytate synthesis in Arabidopsis thaliana. Coincident disruption of these kinases nearly ablates seed phytate without accumulation of phytate precursors, increases seed-free phosphate by 10-fold, and has normal seed yield. Additionally, we find a requirement for inositol tetrakisphosphate (IP4)/inositol pentakisphosphate (IP5) 2-kinase activity in phosphate sensing and root hair elongation. Our results define a commercially viable strategy for the genetic engineering of phytate-free grain and provide insights into the role of inositol polyphosphate kinases in phosphate signaling biology.

SUBMITTER: Stevenson-Paulik J 

PROVIDER: S-EPMC1194928 | biostudies-literature | 2005 Aug

REPOSITORIES: biostudies-literature

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Generation of phytate-free seeds in Arabidopsis through disruption of inositol polyphosphate kinases.

Stevenson-Paulik Jill J   Bastidas Robert J RJ   Chiou Shean-Tai ST   Frye Roy A RA   York John D JD  

Proceedings of the National Academy of Sciences of the United States of America 20050817 35


Phytate (inositol hexakisphosphate, IP6) is a regulator of intracellular signaling, a highly abundant animal antinutrient, and a phosphate store in plant seeds. Here, we report a requirement for inositol polyphosphate kinases, AtIPK1 and AtIPK2beta, for the later steps of phytate synthesis in Arabidopsis thaliana. Coincident disruption of these kinases nearly ablates seed phytate without accumulation of phytate precursors, increases seed-free phosphate by 10-fold, and has normal seed yield. Addi  ...[more]

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