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Magnesium Increases Homoeologous Crossover Frequency During Meiosis in ZIP4 (Ph1 Gene) Mutant Wheat-Wild Relative Hybrids

Wild relatives provide an important source of useful traits in wheat breeding. Wheat and wild relative hybrids have been widely used in breeding programs to introduce such traits into wheat. However, successful introgression is limited by the low frequency of homoeologous crossover (CO) between whea...

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Autores principales: Rey, María-Dolores, Martín, Azahara C., Smedley, Mark, Hayta, Sadiye, Harwood, Wendy, Shaw, Peter, Moore, Graham
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5920029/
https://www.ncbi.nlm.nih.gov/pubmed/29731763
http://dx.doi.org/10.3389/fpls.2018.00509
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author Rey, María-Dolores
Martín, Azahara C.
Smedley, Mark
Hayta, Sadiye
Harwood, Wendy
Shaw, Peter
Moore, Graham
author_facet Rey, María-Dolores
Martín, Azahara C.
Smedley, Mark
Hayta, Sadiye
Harwood, Wendy
Shaw, Peter
Moore, Graham
author_sort Rey, María-Dolores
collection PubMed
description Wild relatives provide an important source of useful traits in wheat breeding. Wheat and wild relative hybrids have been widely used in breeding programs to introduce such traits into wheat. However, successful introgression is limited by the low frequency of homoeologous crossover (CO) between wheat and wild relative chromosomes. Hybrids between wheat carrying a 70 Mb deletion on chromosome 5B (ph1b) and wild relatives, have been exploited to increase the level of homoeologous CO, allowing chromosome exchange between their chromosomes. In ph1b-rye hybrids, CO number increases from a mean of 1 CO to 7 COs per cell. CO number can be further increased up to a mean of 12 COs per cell in these ph1b hybrids by treating the plants with Hoagland solution. More recently, it was shown that the major meiotic crossover gene ZIP4 on chromosome 5B (TaZIP4-B2) within the 70 Mb deletion, was responsible for the restriction of homoeologous COs in wheat-wild relative hybrids, confirming the ph1b phenotype as a complete Tazip4-B2 deletion mutant (Tazip4-B2 ph1b). In this study, we have identified the particular Hoagland solution constituent responsible for the increased chiasma frequency in Tazip4-B2 ph1b mutant-rye hybrids and extended the analysis to Tazip4-B2 TILLING and CRISPR mutant-Ae variabilis hybrids. Chiasma frequency at meiotic metaphase I, in the absence of each Hoagland solution macronutrient (NH(4) H(2)PO(4), KNO(3), Ca (NO(3))2·4H(2)O or Mg SO(4)·7H(2)O) was analyzed. A significant decrease in homoeologous CO frequency was observed when the Mg(2+) ion was absent. A significant increase of homoeologous CO frequency was observed in all analyzed hybrids, when plants were irrigated with a 1 mM Mg(2+) solution. These observations suggest a role for magnesium supplementation in improving the success of genetic material introgression from wild relatives into wheat.
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spelling pubmed-59200292018-05-04 Magnesium Increases Homoeologous Crossover Frequency During Meiosis in ZIP4 (Ph1 Gene) Mutant Wheat-Wild Relative Hybrids Rey, María-Dolores Martín, Azahara C. Smedley, Mark Hayta, Sadiye Harwood, Wendy Shaw, Peter Moore, Graham Front Plant Sci Plant Science Wild relatives provide an important source of useful traits in wheat breeding. Wheat and wild relative hybrids have been widely used in breeding programs to introduce such traits into wheat. However, successful introgression is limited by the low frequency of homoeologous crossover (CO) between wheat and wild relative chromosomes. Hybrids between wheat carrying a 70 Mb deletion on chromosome 5B (ph1b) and wild relatives, have been exploited to increase the level of homoeologous CO, allowing chromosome exchange between their chromosomes. In ph1b-rye hybrids, CO number increases from a mean of 1 CO to 7 COs per cell. CO number can be further increased up to a mean of 12 COs per cell in these ph1b hybrids by treating the plants with Hoagland solution. More recently, it was shown that the major meiotic crossover gene ZIP4 on chromosome 5B (TaZIP4-B2) within the 70 Mb deletion, was responsible for the restriction of homoeologous COs in wheat-wild relative hybrids, confirming the ph1b phenotype as a complete Tazip4-B2 deletion mutant (Tazip4-B2 ph1b). In this study, we have identified the particular Hoagland solution constituent responsible for the increased chiasma frequency in Tazip4-B2 ph1b mutant-rye hybrids and extended the analysis to Tazip4-B2 TILLING and CRISPR mutant-Ae variabilis hybrids. Chiasma frequency at meiotic metaphase I, in the absence of each Hoagland solution macronutrient (NH(4) H(2)PO(4), KNO(3), Ca (NO(3))2·4H(2)O or Mg SO(4)·7H(2)O) was analyzed. A significant decrease in homoeologous CO frequency was observed when the Mg(2+) ion was absent. A significant increase of homoeologous CO frequency was observed in all analyzed hybrids, when plants were irrigated with a 1 mM Mg(2+) solution. These observations suggest a role for magnesium supplementation in improving the success of genetic material introgression from wild relatives into wheat. Frontiers Media S.A. 2018-04-20 /pmc/articles/PMC5920029/ /pubmed/29731763 http://dx.doi.org/10.3389/fpls.2018.00509 Text en Copyright © 2018 Rey, Martín, Smedley, Hayta, Harwood, Shaw and Moore. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Plant Science
Rey, María-Dolores
Martín, Azahara C.
Smedley, Mark
Hayta, Sadiye
Harwood, Wendy
Shaw, Peter
Moore, Graham
Magnesium Increases Homoeologous Crossover Frequency During Meiosis in ZIP4 (Ph1 Gene) Mutant Wheat-Wild Relative Hybrids
title Magnesium Increases Homoeologous Crossover Frequency During Meiosis in ZIP4 (Ph1 Gene) Mutant Wheat-Wild Relative Hybrids
title_full Magnesium Increases Homoeologous Crossover Frequency During Meiosis in ZIP4 (Ph1 Gene) Mutant Wheat-Wild Relative Hybrids
title_fullStr Magnesium Increases Homoeologous Crossover Frequency During Meiosis in ZIP4 (Ph1 Gene) Mutant Wheat-Wild Relative Hybrids
title_full_unstemmed Magnesium Increases Homoeologous Crossover Frequency During Meiosis in ZIP4 (Ph1 Gene) Mutant Wheat-Wild Relative Hybrids
title_short Magnesium Increases Homoeologous Crossover Frequency During Meiosis in ZIP4 (Ph1 Gene) Mutant Wheat-Wild Relative Hybrids
title_sort magnesium increases homoeologous crossover frequency during meiosis in zip4 (ph1 gene) mutant wheat-wild relative hybrids
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5920029/
https://www.ncbi.nlm.nih.gov/pubmed/29731763
http://dx.doi.org/10.3389/fpls.2018.00509
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