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  • 1
    Electronic Resource
    Electronic Resource
    Springer
    Development genes and evolution 207 (1997), S. 186-193 
    ISSN: 1432-041X
    Keywords: Key words Conserved protein domains ; Developmental expression pattern ; Drosophila embryo ; Krüppel ; Muscle development
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology
    Notes: Abstract  Krüppel (Kr), a member of the gap class of Drosophila segmentation genes, encodes a zinc finger-type transcription factor. After blastoderm formation, Kr is expressed in various spatially and temporally restricted patterns of the developing embryo, including a subset of muscle precursors. By virtue of Krüppel in vitro binding sites, we identified a putative Kr target gene, termed KrT95D. It encodes a novel protein which contains evolutionarily conserved regions. KrT95D is expressed in spatially restricted patterns throughout embryogenesis. Kr and KrT95D expression overlap in several locations including muscle precursor cells, the tip cell of the Malpighian tubules and the ventral midline cells of the central nervous system. Results from the analysis of the KrT95D expression pattern in Kr loss-of-fuction and Kr gain-of-function embryos suggest that Kr activity is not essential for KrT95D expression in most locations of the embryo, except in the muscle precursors VO5.
    Type of Medium: Electronic Resource
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  • 2
    ISSN: 1432-2242
    Keywords: Triticum ; Allopolyploidy ; Mitochondrial DNA ; Somatic tissue culture ; Chondriome variability
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology
    Notes: Abstract Southern-blot hybridizations of total DNA to mitochondrial DNA (mtDNA) probes were used to investigate the extent of mtDNA variability in cultures derived from immature embryos of diploid (Triticum monococcum, genomic formula: AA, T. tauschii, genomic formula: DD), allotetraploid (T. durum cv “Creso”, genomic formula: AABB), and allohexaploid (T. aestivum, genomic formula: AABBDD) wheat species. Similar distinct changes in mtDNA organization were observed in in vitro cultures of the derived tetraploid and the hexaploid species with related genomes. The tetraploid and hexaploid species share the B genome and mtDNA variability in in vitro culture is known to be under nuclear control. These results suggest that a study of B genome diploids and other polyploid combinations would now shed light on whether or not mtDNA variability in tissue cultures is under B-genome control.
    Type of Medium: Electronic Resource
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