The Experts below are selected from a list of 282 Experts worldwide ranked by ideXlab platform

C.f.m. Groenendijk - One of the best experts on this subject based on the ideXlab platform.

  • Mitochondrial DNA variation within P-type cytoplasmic male sterility of Plantago lanceolata L.
    Heredity, 1997
    Co-Authors: C.f.m. Groenendijk, J.m. Sandbrink, J. Van Brederode, J.j.m. Van Damme
    Abstract:

    Mitochondrial DNA variation within P-type cytoplasmic male sterility of Plantago lanceolata L.

  • Mitochondrial DNA variation within P-type cytoplasmic male sterility of Plantago lanceolata L.
    Heredity, 1997
    Co-Authors: C.f.m. Groenendijk, J.m. Sandbrink, J. Van Brederode, Jos M M Van Damme
    Abstract:

    MtDNA restriction fragment polymorphisms were found between cytoplasmic male-sterility types P and R of Plantago lanceolata with the homologous probe pPl311 and maize mtDNA fragments derived from the regions of atp1, cox1 and cox2. No mtDNA differences were observed between male-sterile and restored plants with the same cytoplasmic type. The consistency of the polymorphisms was studied in 83 plants from 24 natural populations in the Netherlands. Within the R-cytoplasm no mtDNA polymorphisms were found, whereas seven variant mtDNA RFLP patterns were observed within the P-cytoplasm using pPl311. We also report on a putative new cytoplasmic male-sterility type, which showed a unique RFLP pattern supporting its distinct status. [KEYWORDS: cytoplasmic male sterility; gynodioecy; mtDNA variation; Plantago lanceolata Thymus-vulgaris l; natural-populations; maize; polymorphism; gynodioecy; maritima; subunit; genome; gene; inheritance

J.j.m. Van Damme - One of the best experts on this subject based on the ideXlab platform.

J. Van Brederode - One of the best experts on this subject based on the ideXlab platform.

  • Mitochondrial DNA variation within P-type cytoplasmic male sterility of Plantago lanceolata L.
    Heredity, 1997
    Co-Authors: C.f.m. Groenendijk, J.m. Sandbrink, J. Van Brederode, J.j.m. Van Damme
    Abstract:

    Mitochondrial DNA variation within P-type cytoplasmic male sterility of Plantago lanceolata L.

  • Mitochondrial DNA variation within P-type cytoplasmic male sterility of Plantago lanceolata L.
    Heredity, 1997
    Co-Authors: C.f.m. Groenendijk, J.m. Sandbrink, J. Van Brederode, Jos M M Van Damme
    Abstract:

    MtDNA restriction fragment polymorphisms were found between cytoplasmic male-sterility types P and R of Plantago lanceolata with the homologous probe pPl311 and maize mtDNA fragments derived from the regions of atp1, cox1 and cox2. No mtDNA differences were observed between male-sterile and restored plants with the same cytoplasmic type. The consistency of the polymorphisms was studied in 83 plants from 24 natural populations in the Netherlands. Within the R-cytoplasm no mtDNA polymorphisms were found, whereas seven variant mtDNA RFLP patterns were observed within the P-cytoplasm using pPl311. We also report on a putative new cytoplasmic male-sterility type, which showed a unique RFLP pattern supporting its distinct status. [KEYWORDS: cytoplasmic male sterility; gynodioecy; mtDNA variation; Plantago lanceolata Thymus-vulgaris l; natural-populations; maize; polymorphism; gynodioecy; maritima; subunit; genome; gene; inheritance

J.m. Sandbrink - One of the best experts on this subject based on the ideXlab platform.

  • Mitochondrial DNA variation within P-type cytoplasmic male sterility of Plantago lanceolata L.
    Heredity, 1997
    Co-Authors: C.f.m. Groenendijk, J.m. Sandbrink, J. Van Brederode, J.j.m. Van Damme
    Abstract:

    Mitochondrial DNA variation within P-type cytoplasmic male sterility of Plantago lanceolata L.

  • Mitochondrial DNA variation within P-type cytoplasmic male sterility of Plantago lanceolata L.
    Heredity, 1997
    Co-Authors: C.f.m. Groenendijk, J.m. Sandbrink, J. Van Brederode, Jos M M Van Damme
    Abstract:

    MtDNA restriction fragment polymorphisms were found between cytoplasmic male-sterility types P and R of Plantago lanceolata with the homologous probe pPl311 and maize mtDNA fragments derived from the regions of atp1, cox1 and cox2. No mtDNA differences were observed between male-sterile and restored plants with the same cytoplasmic type. The consistency of the polymorphisms was studied in 83 plants from 24 natural populations in the Netherlands. Within the R-cytoplasm no mtDNA polymorphisms were found, whereas seven variant mtDNA RFLP patterns were observed within the P-cytoplasm using pPl311. We also report on a putative new cytoplasmic male-sterility type, which showed a unique RFLP pattern supporting its distinct status. [KEYWORDS: cytoplasmic male sterility; gynodioecy; mtDNA variation; Plantago lanceolata Thymus-vulgaris l; natural-populations; maize; polymorphism; gynodioecy; maritima; subunit; genome; gene; inheritance

Jos M M Van Damme - One of the best experts on this subject based on the ideXlab platform.

  • Mitochondrial DNA variation within P-type cytoplasmic male sterility of Plantago lanceolata L.
    Heredity, 1997
    Co-Authors: C.f.m. Groenendijk, J.m. Sandbrink, J. Van Brederode, Jos M M Van Damme
    Abstract:

    MtDNA restriction fragment polymorphisms were found between cytoplasmic male-sterility types P and R of Plantago lanceolata with the homologous probe pPl311 and maize mtDNA fragments derived from the regions of atp1, cox1 and cox2. No mtDNA differences were observed between male-sterile and restored plants with the same cytoplasmic type. The consistency of the polymorphisms was studied in 83 plants from 24 natural populations in the Netherlands. Within the R-cytoplasm no mtDNA polymorphisms were found, whereas seven variant mtDNA RFLP patterns were observed within the P-cytoplasm using pPl311. We also report on a putative new cytoplasmic male-sterility type, which showed a unique RFLP pattern supporting its distinct status. [KEYWORDS: cytoplasmic male sterility; gynodioecy; mtDNA variation; Plantago lanceolata Thymus-vulgaris l; natural-populations; maize; polymorphism; gynodioecy; maritima; subunit; genome; gene; inheritance