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The transcriptomic (RNA-Sequencing) datasets collected in the course of floral induction in Chenopodium ficifolium 459

The transition from vegetative growth to reproduction is the essential commitment in plant life. It is triggered by environmental cues (day length, temperature, nutrients) and regulated by the very complex signaling gene network and by phytohormones. The control of flowering is well understood in Ar...

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Autores principales: Gutierrez-Larruscain, David, Krüger, Manuela, Abeyawardana, Oushadee A.J., Belz, Claudia, Dobrev, Petre I., Vaňková, Radomíra, Eliášová, Kateřina, Vondráková, Zuzana, Juříček, Miloslav, Štorchová, Helena
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9167849/
https://www.ncbi.nlm.nih.gov/pubmed/35677628
http://dx.doi.org/10.1016/j.dib.2022.108333
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author Gutierrez-Larruscain, David
Krüger, Manuela
Abeyawardana, Oushadee A.J.
Belz, Claudia
Dobrev, Petre I.
Vaňková, Radomíra
Eliášová, Kateřina
Vondráková, Zuzana
Juříček, Miloslav
Štorchová, Helena
author_facet Gutierrez-Larruscain, David
Krüger, Manuela
Abeyawardana, Oushadee A.J.
Belz, Claudia
Dobrev, Petre I.
Vaňková, Radomíra
Eliášová, Kateřina
Vondráková, Zuzana
Juříček, Miloslav
Štorchová, Helena
author_sort Gutierrez-Larruscain, David
collection PubMed
description The transition from vegetative growth to reproduction is the essential commitment in plant life. It is triggered by environmental cues (day length, temperature, nutrients) and regulated by the very complex signaling gene network and by phytohormones. The control of flowering is well understood in Arabidopsis thaliana and in some crops, much less is known about the other angiosperms. We performed the detailed transcriptomic survey of the course of floral induction in seedlings of Chenopodium ficifolium accession 459, a close relative of the important crop Chenopodium quinoa. It flowers earlier under short days (6 hours light) than under long days (18 hours light). Plants were sampled at the age 14, 18, 21 and 24 days in the morning and afternoon, both at long and short day, for RNA-Sequencing, and also for phytohormone analyses. We employed Illumina NovaSeq6000 platform to generate raw reads, which were cleaned and mapped against the de novo constructed transcriptome of C. ficifolium. The global gene expression levels between long and short days were pairwise compared at each time points. We identified differentially expressed genes associated with floral induction in C. ficifolium 459. Particular attention was paid to the genes responsible for phytohormone metabolism and signaling. The datasets produced by this project contributed to better understanding of the regulation of growth and development in the genus Chenopodium.
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spelling pubmed-91678492022-06-07 The transcriptomic (RNA-Sequencing) datasets collected in the course of floral induction in Chenopodium ficifolium 459 Gutierrez-Larruscain, David Krüger, Manuela Abeyawardana, Oushadee A.J. Belz, Claudia Dobrev, Petre I. Vaňková, Radomíra Eliášová, Kateřina Vondráková, Zuzana Juříček, Miloslav Štorchová, Helena Data Brief Data Article The transition from vegetative growth to reproduction is the essential commitment in plant life. It is triggered by environmental cues (day length, temperature, nutrients) and regulated by the very complex signaling gene network and by phytohormones. The control of flowering is well understood in Arabidopsis thaliana and in some crops, much less is known about the other angiosperms. We performed the detailed transcriptomic survey of the course of floral induction in seedlings of Chenopodium ficifolium accession 459, a close relative of the important crop Chenopodium quinoa. It flowers earlier under short days (6 hours light) than under long days (18 hours light). Plants were sampled at the age 14, 18, 21 and 24 days in the morning and afternoon, both at long and short day, for RNA-Sequencing, and also for phytohormone analyses. We employed Illumina NovaSeq6000 platform to generate raw reads, which were cleaned and mapped against the de novo constructed transcriptome of C. ficifolium. The global gene expression levels between long and short days were pairwise compared at each time points. We identified differentially expressed genes associated with floral induction in C. ficifolium 459. Particular attention was paid to the genes responsible for phytohormone metabolism and signaling. The datasets produced by this project contributed to better understanding of the regulation of growth and development in the genus Chenopodium. Elsevier 2022-05-29 /pmc/articles/PMC9167849/ /pubmed/35677628 http://dx.doi.org/10.1016/j.dib.2022.108333 Text en © 2022 The Author(s). Published by Elsevier Inc. https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Data Article
Gutierrez-Larruscain, David
Krüger, Manuela
Abeyawardana, Oushadee A.J.
Belz, Claudia
Dobrev, Petre I.
Vaňková, Radomíra
Eliášová, Kateřina
Vondráková, Zuzana
Juříček, Miloslav
Štorchová, Helena
The transcriptomic (RNA-Sequencing) datasets collected in the course of floral induction in Chenopodium ficifolium 459
title The transcriptomic (RNA-Sequencing) datasets collected in the course of floral induction in Chenopodium ficifolium 459
title_full The transcriptomic (RNA-Sequencing) datasets collected in the course of floral induction in Chenopodium ficifolium 459
title_fullStr The transcriptomic (RNA-Sequencing) datasets collected in the course of floral induction in Chenopodium ficifolium 459
title_full_unstemmed The transcriptomic (RNA-Sequencing) datasets collected in the course of floral induction in Chenopodium ficifolium 459
title_short The transcriptomic (RNA-Sequencing) datasets collected in the course of floral induction in Chenopodium ficifolium 459
title_sort transcriptomic (rna-sequencing) datasets collected in the course of floral induction in chenopodium ficifolium 459
topic Data Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9167849/
https://www.ncbi.nlm.nih.gov/pubmed/35677628
http://dx.doi.org/10.1016/j.dib.2022.108333
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