Publication:
Most of ADP-glucose linked to starch biosynthesis occurs outside the chloroplast in source leaves

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Date

2004

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Publisher

National Academy of Sciences
Acceso abierto / Sarbide irekia
Artículo / Artikulua
Versión publicada / Argitaratu den bertsioa

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Abstract

Sucrose and starch are end products of two segregated gluconeogenic pathways, and their production takes place in the cytosol and chloroplast of green leaves, respectively. According to this view, the plastidial ADP glucose (ADPG) pyrophosphorylase (AGP) is the sole enzyme catalyzing the synthesis of the starch precursor molecule ADPG. However, a growing body of evidences indicates that starch formation involves the import of cytosolic ADPG to the chloroplast. This evidence is consistent with the idea that synthesis of the ADPG linked to starch biosynthesis takes place in the cytosol by means of sucrose synthase, whereas AGP channels the glucose units derived from the starch breakdown. To test this hypothesis, we first investigated the subcellular localization of ADPG. Toward this end, we constructed transgenic potato plants that expressed the ADPG-cleaving adenosine diphosphate sugar pyrophosphatase (ASPP) from Escherichia coli either in the chloroplast or in the cytosol. Source leaves from plants expressing ASPP in the chloroplast exhibited reduced starch and normal ADPG content as compared with control plants. Most importantly however, leaves from plants expressing ASPP in the cytosol showed a large reduction of the levels of both ADPG and starch, whereas hexose phosphates increased as compared with control plants. No pleiotropic changes in photosynthetic parameters and maximum catalytic activities of enzymes closely linked to starch and sucrose metabolism could be detected in the leaves expressing ASPP in the cytosol. The overall results show that, essentially similar to cereal endosperms, most of the ADPG linked to starch biosynthesis in source leaves occurs in the cytosol.

Keywords

ADP-glucose, Starch biosynthesis, Cytosol, Chloroplast

Department

IdAB. Instituto de Agrobiotecnología / Agrobioteknologiako Institutua

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Funding entities

This work was supported by Comisión Interministerial de Ciencia y Tecnología and Fondo Europeo de Desarrollo Regional Grant BIO2001-1080 and the Government of Nafarroa. A.M.V. was supported by the Spanish Ministry of Culture and Education for financial support. M.T.M.-Z. was supported by a predoctoral fellowship from the Spanish Ministry of Culture and Education.

© 2004 by The National Academy of Sciences of the USA

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