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High Throughput Sequencing Reveals Alterations in the Recombination Signatures with Diminishing Spo11 Activity

Spo11 is the topoisomerase-like enzyme responsible for the induction of the meiosis-specific double strand breaks (DSBs), which initiates the recombination events responsible for proper chromosome segregation. Nineteen PCR-induced alleles of SPO11 were identified and characterized genetically and cy...

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Autores principales: Rockmill, Beth, Lefrançois, Philippe, Voelkel-Meiman, Karen, Oke, Ashwini, Roeder, G. Shirleen, Fung, Jennifer C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3814317/
https://www.ncbi.nlm.nih.gov/pubmed/24204324
http://dx.doi.org/10.1371/journal.pgen.1003932
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author Rockmill, Beth
Lefrançois, Philippe
Voelkel-Meiman, Karen
Oke, Ashwini
Roeder, G. Shirleen
Fung, Jennifer C.
author_facet Rockmill, Beth
Lefrançois, Philippe
Voelkel-Meiman, Karen
Oke, Ashwini
Roeder, G. Shirleen
Fung, Jennifer C.
author_sort Rockmill, Beth
collection PubMed
description Spo11 is the topoisomerase-like enzyme responsible for the induction of the meiosis-specific double strand breaks (DSBs), which initiates the recombination events responsible for proper chromosome segregation. Nineteen PCR-induced alleles of SPO11 were identified and characterized genetically and cytologically. Recombination, spore viability and synaptonemal complex (SC) formation were decreased to varying extents in these mutants. Arrest by ndt80 restored these events in two severe hypomorphic mutants, suggesting that ndt80-arrested nuclei are capable of extended DSB activity. While crossing-over, spore viability and synaptonemal complex (SC) formation defects correlated, the extent of such defects was not predictive of the level of heteroallelic gene conversions (prototrophs) exhibited by each mutant. High throughput sequencing of tetrads from spo11 hypomorphs revealed that gene conversion tracts associated with COs are significantly longer and gene conversion tracts unassociated with COs are significantly shorter than in wild type. By modeling the extent of these tract changes, we could account for the discrepancy in genetic measurements of prototrophy and crossover association. These findings provide an explanation for the unexpectedly low prototroph levels exhibited by spo11 hypomorphs and have important implications for genetic studies that assume an unbiased recovery of prototrophs, such as measurements of CO homeostasis. Our genetic and physical data support previous observations of DSB-limited meioses, in which COs are disproportionally maintained over NCOs (CO homeostasis).
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spelling pubmed-38143172013-11-07 High Throughput Sequencing Reveals Alterations in the Recombination Signatures with Diminishing Spo11 Activity Rockmill, Beth Lefrançois, Philippe Voelkel-Meiman, Karen Oke, Ashwini Roeder, G. Shirleen Fung, Jennifer C. PLoS Genet Research Article Spo11 is the topoisomerase-like enzyme responsible for the induction of the meiosis-specific double strand breaks (DSBs), which initiates the recombination events responsible for proper chromosome segregation. Nineteen PCR-induced alleles of SPO11 were identified and characterized genetically and cytologically. Recombination, spore viability and synaptonemal complex (SC) formation were decreased to varying extents in these mutants. Arrest by ndt80 restored these events in two severe hypomorphic mutants, suggesting that ndt80-arrested nuclei are capable of extended DSB activity. While crossing-over, spore viability and synaptonemal complex (SC) formation defects correlated, the extent of such defects was not predictive of the level of heteroallelic gene conversions (prototrophs) exhibited by each mutant. High throughput sequencing of tetrads from spo11 hypomorphs revealed that gene conversion tracts associated with COs are significantly longer and gene conversion tracts unassociated with COs are significantly shorter than in wild type. By modeling the extent of these tract changes, we could account for the discrepancy in genetic measurements of prototrophy and crossover association. These findings provide an explanation for the unexpectedly low prototroph levels exhibited by spo11 hypomorphs and have important implications for genetic studies that assume an unbiased recovery of prototrophs, such as measurements of CO homeostasis. Our genetic and physical data support previous observations of DSB-limited meioses, in which COs are disproportionally maintained over NCOs (CO homeostasis). Public Library of Science 2013-10-31 /pmc/articles/PMC3814317/ /pubmed/24204324 http://dx.doi.org/10.1371/journal.pgen.1003932 Text en © 2013 Rockmill et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Rockmill, Beth
Lefrançois, Philippe
Voelkel-Meiman, Karen
Oke, Ashwini
Roeder, G. Shirleen
Fung, Jennifer C.
High Throughput Sequencing Reveals Alterations in the Recombination Signatures with Diminishing Spo11 Activity
title High Throughput Sequencing Reveals Alterations in the Recombination Signatures with Diminishing Spo11 Activity
title_full High Throughput Sequencing Reveals Alterations in the Recombination Signatures with Diminishing Spo11 Activity
title_fullStr High Throughput Sequencing Reveals Alterations in the Recombination Signatures with Diminishing Spo11 Activity
title_full_unstemmed High Throughput Sequencing Reveals Alterations in the Recombination Signatures with Diminishing Spo11 Activity
title_short High Throughput Sequencing Reveals Alterations in the Recombination Signatures with Diminishing Spo11 Activity
title_sort high throughput sequencing reveals alterations in the recombination signatures with diminishing spo11 activity
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3814317/
https://www.ncbi.nlm.nih.gov/pubmed/24204324
http://dx.doi.org/10.1371/journal.pgen.1003932
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