» Articles » PMID: 8220487

Expression of an Arabidopsis Sucrose Synthase Gene Indicates a Role in Metabolization of Sucrose Both During Phloem Loading and in Sink Organs

Overview
Journal Plant J
Date 1993 Aug 1
PMID 8220487
Citations 61
Authors
Affiliations
Soon will be listed here.
Abstract

Sucrose synthase, an important enzyme in carbohydrate metabolism, catalyzes the reversible conversion of sucrose and UDP to UDP-glucose and fructose in vitro. To investigate the in vivo function of sucrose synthase, both the gene (Asus1) and a corresponding cDNA from roots of Arabidopsis were isolated. The Asus1 gene has homologies of 67-72% to sucrose synthase genes from other species. Histochemical GUS analysis of Arabidopsis and tobacco plants transformed with a 1.5 kb Asus1 promoter fragment transcriptionally fused to the beta-glucuronidase reporter gene showed that the Asus1 gene is expressed in the phloem of leaves, and in roots. Induction is found under conditions of limited ATP supply and increased demand for translocation of carbohydrates such as anaerobic or cold treatment. During anaerobiosis the increase in RNA level leads to increased sucrose synthase activity in roots. The expression pattern and regulation of the gene suggest that sucrose synthase is involved in the supply of energy for phloem loading in source tissues, and in metabolization of sucrose in sink tissues after unloading.

Citing Articles

An Arabidopsis Prolyl 4 Hydroxylase Is Involved in the Low Oxygen Response.

Konkina A, Klepadlo M, Lakehal A, Zein Z, Krokida A, Botros M Front Plant Sci. 2021; 12:637352.

PMID: 33790927 PMC: 8006943. DOI: 10.3389/fpls.2021.637352.


Vernalization Alters Sink and Source Identities and Reverses Phloem Translocation from Taproots to Shoots in Sugar Beet.

Rodrigues C, Mudsam C, Keller I, Zierer W, Czarnecki O, Corral J Plant Cell. 2020; 32(10):3206-3223.

PMID: 32769131 PMC: 7534467. DOI: 10.1105/tpc.20.00072.


Arabidopsis sucrose synthase localization indicates a primary role in sucrose translocation in phloem.

Yao D, Gonzales-Vigil E, Mansfield S J Exp Bot. 2019; 71(6):1858-1869.

PMID: 31805187 PMC: 7242074. DOI: 10.1093/jxb/erz539.


Multiple steps of leaf thickening during sun-leaf formation in Arabidopsis.

Hoshino R, Yoshida Y, Tsukaya H Plant J. 2019; 100(4):738-753.

PMID: 31350790 PMC: 6900135. DOI: 10.1111/tpj.14467.


An Overview of Sucrose Synthases in Plants.

Stein O, Granot D Front Plant Sci. 2019; 10:95.

PMID: 30800137 PMC: 6375876. DOI: 10.3389/fpls.2019.00095.