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  • 1
    ISSN: 1573-5028
    Keywords: Gluconeogenesis ; glyoxylate cycle ; malate synthase ; seed germination ; transgene expression
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology
    Notes: Abstract The cucumber malate synthase (MS) gene, including 1856 bp of 5′ non-trnascribed sequence, has been transferred into Petunia (Mitchell) and Nicotiana plumbaginifolia plants using an Agrobacterium binary vector. The transferred gene is found in variable copy number in different transformants, and is stably transmitted in each case as a single Mendelian character. Transgene mRNA accumulates in the seedling during the first three days of germination, then declines in amount as the cotyledons emerge from the seed. The decline is more pronounced in light-grown seedlings than in dark-grown seedlings. Expression of the MS transgene is also detected at a low level in petals of transformed Petunia plants. In these respects the pattern of MS gene expression is similar in cucumber and in trnasformed plants, showing that the transferred DNA fragment contains a functional MS gene. A 1076 bp fragment of 5′ sequence was linked to the β-glucuronidase reporter gene and transferred into Nicotiana, where it was shown to direct temporal and spatial patterns of expression similar to that of the complete MS gene. However, histochemical localisation of β-glucuronidase activity demonstrated that the chimaeric gene is expressed not only in cotyledons of transgenic plants, but also in endosperm and some hypocotyl cells during early germination. The relevance of these findings to the control of malate synthase gene expression is discussed.
    Type of Medium: Electronic Resource
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  • 2
    Electronic Resource
    Electronic Resource
    Springer
    Plant molecular biology 13 (1989), S. 673-684 
    ISSN: 1573-5028
    Keywords: malate synthase ; gene structure ; glyoxylate cycle ; glyoxysomes ; Cucumis sativus
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology
    Notes: Abstract The complete sequences of a full-length cDNA clone and a genomic clone encoding the Cucumis sativus glyoxysomal enzyme malate synthase, have been determined. The sequences have enabled us to identify putative control regions at the 5′ end of the gene, three introns, and possible alternative polyadenylation sites at the 3′ end. The deduced amino acid sequence predicts a polypeptide of 64961 molecular weight, which has 48% identity with that of Escherichia coli. Comparison of the sequence of malate synthase from cucumber with that from E. coli and with other glyoxysomal and peroxisomal enzymes, shows that a conserved C-terminal tripeptide is a common feature of those enzymes imported into microbodies.
    Type of Medium: Electronic Resource
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