“Interference” is a major force governing the patterning of meiotic crossovers. A leading model describing how interference influences crossover patterning is the beam-film model, a mechanical model based on the accumulation and redistribution of crossover-promoting “stress” along the chromosome axis. We use the beam-film model in conjunction with a large Arabidopsis reciprocal backcross data set to gain “mechanistic” insights into the differences between male and female meiosis, and crossover patterning. Beam-film modeling suggests that the underlying mechanics of crossover patterning and interference are identical in the two sexes, with the large difference in recombination rates and distributions able to be entirely explained by the shor...
New evidence suggests that the model plant Arabidopsis has two biochemically distinct pathways that ...
During meiosis, homologous chromosomes undergo crossover recombination, which creates genetic divers...
Meiotic crossovers reshuffle genetic material and are essential for accurate chromosome segregation....
“Interference” is a major force governing the patterning of meiotic crossovers. A leading model desc...
The crossover distribution in meiotic tetrads of Arabidopsis thaliana differs from those previously ...
For most organisms, crossovers forming during meiosis exhibit crossover interference – nearby crosso...
Plants, like all sexually reproducing organisms, create genetic variability by reshuffling parental ...
In most species, crossovers (COs) are essential for the accurate segregation of homologous chromosom...
In most eukaryotes, crossovers are not independently distributed along the length of a chromosome. I...
Crossovers involve the reciprocal exchange of large fragments of genetic material between homologous...
In most species, crossovers (COs) are essential for the accurate segregation of homologous chromosom...
SummaryBackground: Crossovers are essential for the completion of meiosis. Recently, two pathways of...
During meiosis homologous chromosomes undergo crossover recombination. Sequence differences between ...
Meiotic recombination results in the heritable rearrangement of DNA, primarily through reciprocal ex...
Homologous recombination is an integral part of meiosis and is essential for generating crossovers t...
New evidence suggests that the model plant Arabidopsis has two biochemically distinct pathways that ...
During meiosis, homologous chromosomes undergo crossover recombination, which creates genetic divers...
Meiotic crossovers reshuffle genetic material and are essential for accurate chromosome segregation....
“Interference” is a major force governing the patterning of meiotic crossovers. A leading model desc...
The crossover distribution in meiotic tetrads of Arabidopsis thaliana differs from those previously ...
For most organisms, crossovers forming during meiosis exhibit crossover interference – nearby crosso...
Plants, like all sexually reproducing organisms, create genetic variability by reshuffling parental ...
In most species, crossovers (COs) are essential for the accurate segregation of homologous chromosom...
In most eukaryotes, crossovers are not independently distributed along the length of a chromosome. I...
Crossovers involve the reciprocal exchange of large fragments of genetic material between homologous...
In most species, crossovers (COs) are essential for the accurate segregation of homologous chromosom...
SummaryBackground: Crossovers are essential for the completion of meiosis. Recently, two pathways of...
During meiosis homologous chromosomes undergo crossover recombination. Sequence differences between ...
Meiotic recombination results in the heritable rearrangement of DNA, primarily through reciprocal ex...
Homologous recombination is an integral part of meiosis and is essential for generating crossovers t...
New evidence suggests that the model plant Arabidopsis has two biochemically distinct pathways that ...
During meiosis, homologous chromosomes undergo crossover recombination, which creates genetic divers...
Meiotic crossovers reshuffle genetic material and are essential for accurate chromosome segregation....