Proceedings of the National Academy of Sciences · 2000 · 187 citations · 34 references
The ability to synthesize high molecular weight inulin was transferred to potato plants via constitutive expression of the 1-SST (sucrose:sucrose 1-fructosyltransferase) and the 1-FFT (fructan: fructan 1-fructosyltransferase) genes of globe artichoke (Cynara scolymus). The fructan pattern of tubers from transgenic potato plants represents the full spectrum of inulin molecules present in artichoke roots as shown by high-performance anion exchange chromatography, as well as size exclusion chromatography. These results demonstrate in planta that the enzymes sucrose:sucrose 1-fructosyltransferase and fructan:fructan 1-fructosyltransferase are sufficient to synthesize inulin molecules of all chain lengths naturally occurring in a given plant species. Inulin made up 5% of the dry weight of transgenic tubers, and a low level of fructan production also was observed in fully expanded leaves. Although inulin accumulation did not influence the sucrose concentration in leaves or tubers, a reduction in starch content occurred in transgenic tubers, indicating that inulin synthesis did not increase the storage capacity of the tubers.
34
Binary<i>Agrobacterium</i>vectors for plant transformation
Michael Bevan · Nucleic Acids Research · 1984 · 2.2K citations · Full text
Bernd Müller‐Röber, Uwe Sonnewald, Lothar Willmitzer · The EMBO Journal · 1992 · 494 citations
Biology, Plant Biology, Biosynthesis +11
Nucleotide sequence of cauliflower mosaic virus DNA
A. Franck, H. Guilley, G. Jonard et al. · Cell · 1980 · 475 citations