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Generation of Asynaptic Mutants in Potato by Disrupting StDMC1 Gene Using RNA Interference Approach

Fixing the genomic composition and multiplication through true potato seed (TPS) is an important challenge in autotetraploid potato. Disrupted meiotic cDNA (DMC1) is a meiotic gene that plays a central role in DNA recombination through crossing over in meiosis. Using the Arabidopsis DMC1 (AtDMC1) ge...

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Autores principales: Kumar, Ashwani, Siddappa, Sundaresha, Bhardwaj, Vinay, Dalamu, Singh, Baljeet, Sharma, Neha, Dipta, Bhawna, Kumar, Vinod, Goutam, Umesh, Sood, Salej
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9861435/
https://www.ncbi.nlm.nih.gov/pubmed/36676123
http://dx.doi.org/10.3390/life13010174
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author Kumar, Ashwani
Siddappa, Sundaresha
Bhardwaj, Vinay
Dalamu,
Singh, Baljeet
Sharma, Neha
Dipta, Bhawna
Kumar, Vinod
Goutam, Umesh
Sood, Salej
author_facet Kumar, Ashwani
Siddappa, Sundaresha
Bhardwaj, Vinay
Dalamu,
Singh, Baljeet
Sharma, Neha
Dipta, Bhawna
Kumar, Vinod
Goutam, Umesh
Sood, Salej
author_sort Kumar, Ashwani
collection PubMed
description Fixing the genomic composition and multiplication through true potato seed (TPS) is an important challenge in autotetraploid potato. Disrupted meiotic cDNA (DMC1) is a meiotic gene that plays a central role in DNA recombination through crossing over in meiosis. Using the Arabidopsis DMC1 (AtDMC1) gene sequence, we retrieved Solanum tuberosum DMC1(StDMC1) from the diploid potato genome, and subsequently, sense and antisense regions of the StDMC1 gene were amplified in potato cv. Kufri Jyoti. The sense and antisense fragments were confirmed by Sanger-sequencing and cloned in the pRI101 vector. Agrobacterium-mediated transformation of the RNAi construct resulted in 44% transformation efficiency, and a total of 137 mutant lines were obtained. These mutant lines were further validated through pollen viability testing, and selected lines were used for gene expression analysis. The acetocarmine-based pollen staining showed reduced pollen viability ranging from 14 to 21% in four DMC1 mutant lines (DMC4-37, DMC4-41, DMC6-20, and DMC6-21), as compared to the Kufri Jyoti control plants, which on average exhibited 78% pollen viability. The phenotypic data was supported by the reduced expression of the StDMC1 gene in these four mutant lines compared to the control Kufri Jyoti. The results confirmed the generation of StDMC1 knockdown lines. This is the first report of StDMC1 mutant line generation in tetraploid potatoes and will be a step forward in generating non-recombinant mutants through sexual reproduction in potatoes.
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spelling pubmed-98614352023-01-22 Generation of Asynaptic Mutants in Potato by Disrupting StDMC1 Gene Using RNA Interference Approach Kumar, Ashwani Siddappa, Sundaresha Bhardwaj, Vinay Dalamu, Singh, Baljeet Sharma, Neha Dipta, Bhawna Kumar, Vinod Goutam, Umesh Sood, Salej Life (Basel) Article Fixing the genomic composition and multiplication through true potato seed (TPS) is an important challenge in autotetraploid potato. Disrupted meiotic cDNA (DMC1) is a meiotic gene that plays a central role in DNA recombination through crossing over in meiosis. Using the Arabidopsis DMC1 (AtDMC1) gene sequence, we retrieved Solanum tuberosum DMC1(StDMC1) from the diploid potato genome, and subsequently, sense and antisense regions of the StDMC1 gene were amplified in potato cv. Kufri Jyoti. The sense and antisense fragments were confirmed by Sanger-sequencing and cloned in the pRI101 vector. Agrobacterium-mediated transformation of the RNAi construct resulted in 44% transformation efficiency, and a total of 137 mutant lines were obtained. These mutant lines were further validated through pollen viability testing, and selected lines were used for gene expression analysis. The acetocarmine-based pollen staining showed reduced pollen viability ranging from 14 to 21% in four DMC1 mutant lines (DMC4-37, DMC4-41, DMC6-20, and DMC6-21), as compared to the Kufri Jyoti control plants, which on average exhibited 78% pollen viability. The phenotypic data was supported by the reduced expression of the StDMC1 gene in these four mutant lines compared to the control Kufri Jyoti. The results confirmed the generation of StDMC1 knockdown lines. This is the first report of StDMC1 mutant line generation in tetraploid potatoes and will be a step forward in generating non-recombinant mutants through sexual reproduction in potatoes. MDPI 2023-01-06 /pmc/articles/PMC9861435/ /pubmed/36676123 http://dx.doi.org/10.3390/life13010174 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Kumar, Ashwani
Siddappa, Sundaresha
Bhardwaj, Vinay
Dalamu,
Singh, Baljeet
Sharma, Neha
Dipta, Bhawna
Kumar, Vinod
Goutam, Umesh
Sood, Salej
Generation of Asynaptic Mutants in Potato by Disrupting StDMC1 Gene Using RNA Interference Approach
title Generation of Asynaptic Mutants in Potato by Disrupting StDMC1 Gene Using RNA Interference Approach
title_full Generation of Asynaptic Mutants in Potato by Disrupting StDMC1 Gene Using RNA Interference Approach
title_fullStr Generation of Asynaptic Mutants in Potato by Disrupting StDMC1 Gene Using RNA Interference Approach
title_full_unstemmed Generation of Asynaptic Mutants in Potato by Disrupting StDMC1 Gene Using RNA Interference Approach
title_short Generation of Asynaptic Mutants in Potato by Disrupting StDMC1 Gene Using RNA Interference Approach
title_sort generation of asynaptic mutants in potato by disrupting stdmc1 gene using rna interference approach
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9861435/
https://www.ncbi.nlm.nih.gov/pubmed/36676123
http://dx.doi.org/10.3390/life13010174
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