Title
Characterization of three members of the ACC synthase gene family in Solanum tuberosum L.
Date Issued
01 July 1995
Access level
metadata only access
Resource Type
journal article
Author(s)
Van Caeneghem W.
Gielen J.
Richard L.
Van Montagu M.
Van Der Straeten D.
Universiteit Gent
Publisher(s)
Springer-Verlag
Abstract
Two genomic clones corresponding to three members of the 1-aminocyclopropane-1-carboxylic acid (ACC) synthase gene family in potato (Solanum tuberosum L.) have been isolated and sequenced. Two highly homologous genes, ST-ACS1 A and ST-ACS1 B, transcribed in opposite directions were found in an 8.9 kb region. Their coding sequences are interrupted by two introns at identical positions. Their closest relative in tomato is the LE-ACS3 gene. The third gene in potato, ST-ACS2, was found in a 4 kb region and shows a gene structure similar to that of the tomato LE-ACS4 gene and to the mung bean VR-ACS4 and VR-ACS5 genes. Based on its lack of significant homology to the tomato gene family and its closeness to the VR-ACS4 and VR-ACS5 genes, we propose that LE-ACS7 represents an additional isoform in the tomato genome. Moreover, in a phylogenetic comparison of known ACC synthases, the ST-ACS2 isoform was grouped in a separate lineage together with the mung bean VR-ACS4 and VR-ACS5, and the moth orchid DS-ACS1A and DS-ACS1B gene products. Expression of the three potato genes was studied by reverse transcription-polymerase chain reaction on total RNA. The twin genes are positively regulated by indole-3-acetic acid in hypocotyls and expression is modulated by wounding in the leaves. The third gene is responsive to ethylene and wounding mainly in tubers. The roles of these three genes and of other members of the ACC synthase gene family in vegetative processes of potato such as tuberization, dormancy, and sprouting have yet to be determined. © 1995 Springer-Verlag.
Start page
496
End page
508
Volume
246
Issue
4
Language
English
OCDE Knowledge area
Genética, Herencia Tecnología de modificación genética
Scopus EID
2-s2.0-0028967351
PubMed ID
Source
MGG Molecular & General Genetics
ISSN of the container
16174623
Sources of information: Directorio de Producción Científica Scopus