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ZYP1 is required for obligate cross-over formation and cross-over interference in Arabidopsis

The synaptonemal complex is a tripartite proteinaceous ultrastructure that forms between homologous chromosomes during prophase I of meiosis in the majority of eukaryotes. It is characterized by the coordinated installation of transverse filament proteins between two lateral elements and is required...

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Autores principales: France, Martin G., Enderle, Janina, Röhrig, Sarah, Puchta, Holger, Franklin, F. Chris H., Higgins, James D.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8040812/
https://www.ncbi.nlm.nih.gov/pubmed/33782125
http://dx.doi.org/10.1073/pnas.2021671118
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author France, Martin G.
Enderle, Janina
Röhrig, Sarah
Puchta, Holger
Franklin, F. Chris H.
Higgins, James D.
author_facet France, Martin G.
Enderle, Janina
Röhrig, Sarah
Puchta, Holger
Franklin, F. Chris H.
Higgins, James D.
author_sort France, Martin G.
collection PubMed
description The synaptonemal complex is a tripartite proteinaceous ultrastructure that forms between homologous chromosomes during prophase I of meiosis in the majority of eukaryotes. It is characterized by the coordinated installation of transverse filament proteins between two lateral elements and is required for wild-type levels of crossing over and meiotic progression. We have generated null mutants of the duplicated Arabidopsis transverse filament genes zyp1a and zyp1b using a combination of T-DNA insertional mutants and targeted CRISPR/Cas mutagenesis. Cytological and genetic analysis of the zyp1 null mutants reveals loss of the obligate chiasma, an increase in recombination map length by 1.3- to 1.7-fold and a virtual absence of cross-over (CO) interference, determined by a significant increase in the number of double COs. At diplotene, the numbers of HEI10 foci, a marker for Class I interference-sensitive COs, are twofold greater in the zyp1 mutant compared to wild type. The increase in recombination in zyp1 does not appear to be due to the Class II interference-insensitive COs as chiasmata were reduced by ∼52% in msh5/zyp1 compared to msh5. These data suggest that ZYP1 limits the formation of closely spaced Class I COs in Arabidopsis. Our data indicate that installation of ZYP1 occurs at ASY1-labeled axial bridges and that loss of the protein disrupts progressive coalignment of the chromosome axes.
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spelling pubmed-80408122021-04-20 ZYP1 is required for obligate cross-over formation and cross-over interference in Arabidopsis France, Martin G. Enderle, Janina Röhrig, Sarah Puchta, Holger Franklin, F. Chris H. Higgins, James D. Proc Natl Acad Sci U S A Biological Sciences The synaptonemal complex is a tripartite proteinaceous ultrastructure that forms between homologous chromosomes during prophase I of meiosis in the majority of eukaryotes. It is characterized by the coordinated installation of transverse filament proteins between two lateral elements and is required for wild-type levels of crossing over and meiotic progression. We have generated null mutants of the duplicated Arabidopsis transverse filament genes zyp1a and zyp1b using a combination of T-DNA insertional mutants and targeted CRISPR/Cas mutagenesis. Cytological and genetic analysis of the zyp1 null mutants reveals loss of the obligate chiasma, an increase in recombination map length by 1.3- to 1.7-fold and a virtual absence of cross-over (CO) interference, determined by a significant increase in the number of double COs. At diplotene, the numbers of HEI10 foci, a marker for Class I interference-sensitive COs, are twofold greater in the zyp1 mutant compared to wild type. The increase in recombination in zyp1 does not appear to be due to the Class II interference-insensitive COs as chiasmata were reduced by ∼52% in msh5/zyp1 compared to msh5. These data suggest that ZYP1 limits the formation of closely spaced Class I COs in Arabidopsis. Our data indicate that installation of ZYP1 occurs at ASY1-labeled axial bridges and that loss of the protein disrupts progressive coalignment of the chromosome axes. National Academy of Sciences 2021-04-06 2021-03-29 /pmc/articles/PMC8040812/ /pubmed/33782125 http://dx.doi.org/10.1073/pnas.2021671118 Text en Copyright © 2021 the Author(s). Published by PNAS. https://creativecommons.org/licenses/by/4.0/This open access article is distributed under Creative Commons Attribution License 4.0 (CC BY) (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Biological Sciences
France, Martin G.
Enderle, Janina
Röhrig, Sarah
Puchta, Holger
Franklin, F. Chris H.
Higgins, James D.
ZYP1 is required for obligate cross-over formation and cross-over interference in Arabidopsis
title ZYP1 is required for obligate cross-over formation and cross-over interference in Arabidopsis
title_full ZYP1 is required for obligate cross-over formation and cross-over interference in Arabidopsis
title_fullStr ZYP1 is required for obligate cross-over formation and cross-over interference in Arabidopsis
title_full_unstemmed ZYP1 is required for obligate cross-over formation and cross-over interference in Arabidopsis
title_short ZYP1 is required for obligate cross-over formation and cross-over interference in Arabidopsis
title_sort zyp1 is required for obligate cross-over formation and cross-over interference in arabidopsis
topic Biological Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8040812/
https://www.ncbi.nlm.nih.gov/pubmed/33782125
http://dx.doi.org/10.1073/pnas.2021671118
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