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  • 1
    ISSN: 1432-0983
    Keywords: Triticum aestivum ; Plant mitochondrial DNA ; Ribosomal genes ; Sequence rearrangements
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology
    Notes: Summary The nucleotide sequence of the wheat mitochondrial 26S ribosomal RNA gene and flanking regions was determined and compared with mitochondrial 26S rRNA genes from maize and Oenothera. All three genes exhibit a high degree of homology except within two variable regions. When the plant mitochondrial 26S rRNA genes are compared with Escherichia coli 23S rRNA and chloroplast 23S and 4.5S rRNA genes, a third variable region is apparent close to the 3′ end of the gene. The 5′ and 3′ ends of the wheat mitochondrial gene were determined by S1 nuclease mapping. Computer analysis of the wheat mitochondrial gene revealed several small sequences present either in the 5′ region of the 26S rRNA gene or in the 18S rRNA gene.
    Type of Medium: Electronic Resource
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  • 2
    ISSN: 1432-0983
    Keywords: Organellar genomes ; tRNA genes ; Wheat ; Maize
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology
    Notes: Summary We have used bean mitochondrial (mt) and chloroplast (cp) tRNATrp as probes to locate the corresponding genes on the mt and cp genomes of wheat and we have determined the nucleotide sequences of the wheat mt and cp tRNATrp genes and of the flanking regions. Sequence comparisons show that the wheat mt and cp tRNATrp genes are 97% homologous. On the wheat cp DNA, a tRNA Pro UGG gene was found 139 by upstream of the cp tRNATrp gene. On the wheat mt DNA, a sequence of 23 nucleotides completely homologous with the 3' end of this cp tRNAPro gene was found 136 by upstream of the rut tRNATrp gene, but there is only 38% homology between cp and mt wheat genomes in the intergenic regions. The overall organization of this region in the chloroplast genome (a tRNATrp gene separated by about 140 by from a tRNAPro gene) is also found in the mitochondrial genome, suggesting that this mitochondrial fragment might have originated from a chloroplast DNA insertion. A comparison of the genes and of the intergenic regions located between the tRNATrp gene and the tRNAPro (or partial tRNAPro) gene shows that there is an almost complete conservation of these sequences in the mitochondrial DNA of wheat and maize, whereas wheat mt and cp intergenic regions show more sequence divergence. Wheat mt tRNATrp gene is encoded by the main mt genome (accounted for by the master chromosome) but, in the case of maize mitochondria, this gene was found to be encoded by the 2.3 kb linear plasmid, indicating that this plasmid is not dispensable in maize mitochondria.
    Type of Medium: Electronic Resource
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  • 3
    ISSN: 1432-0983
    Keywords: Triticum aestivum ; Tissue culture ; Mitochondrial DNA ; Genomic variability
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology
    Notes: Summary Wheat mitochondria) DNA has been isolated from callus cultures initiated from both immature embryos and the corresponding parental cultivar. A Sall restriction pattern study has shown that the organization of callus culture mitochondria) DNA underwent extensive change, characterized by either the disappearance or the decrease in the relative stoichiometry of several restriction bands. Hybridization of labelled mitochondrial fragments obtained from a recombinant cosmid library to Southern blots of callus and parental line restricted mitochondria) DNAs has shown that a fraction of the mitochondria) genome was lost in callus cultures. Data from a Sall + HindIII restriction map of a defined part of the wheat mitochondria) genome concerned with some of these variations strongly suggest that the observed variations correspond to the disappearance of at least one mitochondria) DNA subgenomic molecule in callus cultures.
    Type of Medium: Electronic Resource
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  • 4
    ISSN: 1432-0983
    Keywords: Plant mitochondrial DNA ; Repeated sequences ; Ribosomal RNA genes ; Site-specific recombination
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology
    Notes: Summary Analysis of cloned SalI fragments coding for the 26S rRNA in wheat mitochondria (Triticumaestivum L.) shows that the 26S gene is contained within the same basic structural unit RS (which is about 6.6 kbp long). This repeated sequence is flanked by four different sequences I, II, III, IV in the orientations: I-RS-III, I-RS-IV, II-RS-III and II-RS-IV. This organization of the 26S gene, similar to the organization found for the 5S and 18S gene, suggests again that reciprocal intra-and/or intermolecular recombination occurs within these repeated sequences. S1 mapping and R loop mapping indicate that the 26S gene is about 3.5 kbp and has no intron.
    Type of Medium: Electronic Resource
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  • 5
    ISSN: 1432-0983
    Keywords: Cytoplasmic male sterility ; Hehanthus annuus ; mt-DNA ; Sunflower
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology
    Notes: Summary Mitochondrial DNA from etiolated seedling of male-fertile (F) and male-sterile (S) sunflower (Helianthus annuus L.) has been investigated for the first time in an isogenic couple HA89. 1. The mt-DNAs isolated from the S and F cytoplasms give a sharp and symmetrical band at 1.706 g/ml in an analytical CsCI gradient ultracentrifugation. 2. In polyacrylamide gel it is found that mitochondria from F cytoplasm contain a Low-Molecular-Weight (LMW) mt-DNA molecule of 1.45 Kilobase-pairs (kb) in addition to the major mt-DNA. On the contrary, mitochondria from S cytoplasm contain no LMW molecule. Treatments with DNAse, RNAse and Nuclease S1 show that this LMW mt-DNA molecule consists of a supercoiled circular DNA. The length and form of the LMW molecule are confirmed by electron microscopy observations. 3. The mt-DNAs from S and F cytoplasms have also been investigated using restriction endonuclease digestions (Sa11, Xho1, Bg11). The electrophoresis of the resulting fragments reveals several differences between the S and F cytoplasm. It is not known whether the differences observed between F and S mt-DNA are correlated with the cytoplasmic male sterility phenotype.
    Type of Medium: Electronic Resource
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