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Stable Accumulation of Modified 2S Albumin Seed Storage Proteins with Higher Methionine Contents in Transgenic Plants
Author(s) -
A. de Clercq,
M. Vandewiele,
J. van Damme,
Philippe Guerche,
Marc Van Montagu,
J. Vandekerhove,
E. Krebbers
Publication year - 1990
Publication title -
plant physiology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 3.554
H-Index - 312
eISSN - 1532-2548
pISSN - 0032-0889
DOI - 10.1104/pp.94.3.970
Subject(s) - methionine , arabidopsis , brassica , storage protein , biology , prolamin , transgene , gene , genetically modified crops , complementary dna , albumin , biochemistry , botany , amino acid , mutant
We present the results of two sets of experiments designed to express high methionine proteins in transgenic seeds in three different plant species. In the first approach, two chimeric genes were constructed in which parts of the Arabidopsis 2S albumin gene 1 (AT2S1) were fused at different positions to a Brazil nut 2S albumin cDNA clone. Brazil nut 2S albumin was found to accumulate stably in transgenic Arabidopsis, Brassica napus, and tobacco seeds. In the second approach, methionine-enriched AT2S1 genes were constructed by deleting sequences encoding a region of the protein which is not highly conserved among 2S albumins of different species and replacing them with methioninerich sequences. Introduction of the modified AT2S1 genes into three different plant species resulted in the accumulation of the methionine-enriched 2S albumins in all three species at levels reaching 1 to 2% of the total high salt-extractable seed protein.

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