A series of strains of the homozygous species Oenothera grandiflora (characterized by the genome BB and plastome III) were combined with plastome IV from O. parviflora (BC-IV) by means of appropriate crosses. An incompatibility between genome B and plastome IV is expressed in the haplo- and diplophase: (1) B-IV pollen, though normally developed, is largely inactive. The extent of the inactivation varies between different strains and shows a seasonal fluctuation as determined by seed set in outcrossing and selfing experiments. (2) In most of the strains lethality of BB-IV embryos is the rule, leading to empty seeds. This can be ameliorated by including another plastome in the zygotes and developing embryos on account of the biparental plasti...
In the majority of angiospermous species the plastids are excluded from the generative or sperm cell...
As a photosynthetic organelle and as the site of several important biosynthetic pathways, the chloro...
Most flowering plants exhibit maternal plastid inheritance. In Zantedeschia, however, biparental is ...
Abstract. A series of strains of the homozygous species Oenothera grandiflora (characterized by the ...
A unique combination of genetic features and a rich stock of information make the flowering plant ge...
Many Oenothera species are complete translocation heterozygotes and arose by hybridization. Since co...
The flowering plant genus Oenothera is uniquely suited for studying molecular mechanisms of speciati...
A unique combination of genetic features and a rich stock of information make the flowering plant ge...
The flowering plant genus Oenothera is uniquely suited for studying molecular mechanisms of speciati...
Oenothera villaricae Dietrich and Oe. picensis Dietrich, complete translocation heterozygotes, are f...
In most genera combinations of plastomes and genomes function to form normal plants, irrespective of...
Genetic incompatibility between the cytoplasm and the nucleus is thought to be a major factor in spe...
Although organelle inheritance is predominantly maternal across animals and plants, biparental chlor...
In this thesis I studied cause and effect of Cyto Nuclear Incompatibility (CNI) induced speciation i...
Photosynthesis is the hallmark of plant evolution; the vast majority of plants are autotrophic and r...
In the majority of angiospermous species the plastids are excluded from the generative or sperm cell...
As a photosynthetic organelle and as the site of several important biosynthetic pathways, the chloro...
Most flowering plants exhibit maternal plastid inheritance. In Zantedeschia, however, biparental is ...
Abstract. A series of strains of the homozygous species Oenothera grandiflora (characterized by the ...
A unique combination of genetic features and a rich stock of information make the flowering plant ge...
Many Oenothera species are complete translocation heterozygotes and arose by hybridization. Since co...
The flowering plant genus Oenothera is uniquely suited for studying molecular mechanisms of speciati...
A unique combination of genetic features and a rich stock of information make the flowering plant ge...
The flowering plant genus Oenothera is uniquely suited for studying molecular mechanisms of speciati...
Oenothera villaricae Dietrich and Oe. picensis Dietrich, complete translocation heterozygotes, are f...
In most genera combinations of plastomes and genomes function to form normal plants, irrespective of...
Genetic incompatibility between the cytoplasm and the nucleus is thought to be a major factor in spe...
Although organelle inheritance is predominantly maternal across animals and plants, biparental chlor...
In this thesis I studied cause and effect of Cyto Nuclear Incompatibility (CNI) induced speciation i...
Photosynthesis is the hallmark of plant evolution; the vast majority of plants are autotrophic and r...
In the majority of angiospermous species the plastids are excluded from the generative or sperm cell...
As a photosynthetic organelle and as the site of several important biosynthetic pathways, the chloro...
Most flowering plants exhibit maternal plastid inheritance. In Zantedeschia, however, biparental is ...