<i>MtWOX2</i> and <i>MtWOX9-1</i> Effects on the Embryogenic Callus Transcriptome in <i>Medicago truncatula</i>

WOX family transcription factors are well-known regulators of plant development, controlling cell proliferation and differentiation in diverse organs and tissues. Several <i>WOX</i> genes have been shown to participate in regeneration processes which take place in plant cell cultures in...

Full description

Bibliographic Details
Main Authors: Elizaveta Y. Krasnoperova, Varvara E. Tvorogova, Kirill V. Smirnov, Elena P. Efremova, Elina A. Potsenkovskaia, Anastasia M. Artemiuk, Zakhar S. Konstantinov, Veronika Y. Simonova, Anna V. Brynchikova, Daria V. Yakovleva, Daria B. Pavlova, Ludmila A. Lutova
Format: Article
Language:English
Published: MDPI AG 2023-12-01
Series:Plants
Subjects:
Online Access:https://www.mdpi.com/2223-7747/13/1/102
_version_ 1797358245217566720
author Elizaveta Y. Krasnoperova
Varvara E. Tvorogova
Kirill V. Smirnov
Elena P. Efremova
Elina A. Potsenkovskaia
Anastasia M. Artemiuk
Zakhar S. Konstantinov
Veronika Y. Simonova
Anna V. Brynchikova
Daria V. Yakovleva
Daria B. Pavlova
Ludmila A. Lutova
author_facet Elizaveta Y. Krasnoperova
Varvara E. Tvorogova
Kirill V. Smirnov
Elena P. Efremova
Elina A. Potsenkovskaia
Anastasia M. Artemiuk
Zakhar S. Konstantinov
Veronika Y. Simonova
Anna V. Brynchikova
Daria V. Yakovleva
Daria B. Pavlova
Ludmila A. Lutova
author_sort Elizaveta Y. Krasnoperova
collection DOAJ
description WOX family transcription factors are well-known regulators of plant development, controlling cell proliferation and differentiation in diverse organs and tissues. Several <i>WOX</i> genes have been shown to participate in regeneration processes which take place in plant cell cultures in vitro, but the effects of most of them on tissue culture development have not been discovered yet. In this study, we evaluated the effects of <i>MtWOX2</i> gene overexpression on the embryogenic callus development and transcriptomic state in <i>Medicago truncatula</i>. According to our results, overexpression of <i>MtWOX2</i> leads to an increase in callus weight. Furthermore, transcriptomic changes in <i>MtWOX2</i> overexpressing calli are, to a large extent, opposite to the changes caused by overexpression of <i>MtWOX9-1</i>, a somatic embryogenesis stimulator. These results add new information about the mechanisms of interaction between different <i>WOX</i> genes and can be useful for the search of new regeneration regulators.
first_indexed 2024-03-08T14:59:05Z
format Article
id doaj.art-27a52d104ba74832ac2e8cb3475af325
institution Directory Open Access Journal
issn 2223-7747
language English
last_indexed 2024-03-08T14:59:05Z
publishDate 2023-12-01
publisher MDPI AG
record_format Article
series Plants
spelling doaj.art-27a52d104ba74832ac2e8cb3475af3252024-01-10T15:06:17ZengMDPI AGPlants2223-77472023-12-0113110210.3390/plants13010102<i>MtWOX2</i> and <i>MtWOX9-1</i> Effects on the Embryogenic Callus Transcriptome in <i>Medicago truncatula</i>Elizaveta Y. Krasnoperova0Varvara E. Tvorogova1Kirill V. Smirnov2Elena P. Efremova3Elina A. Potsenkovskaia4Anastasia M. Artemiuk5Zakhar S. Konstantinov6Veronika Y. Simonova7Anna V. Brynchikova8Daria V. Yakovleva9Daria B. Pavlova10Ludmila A. Lutova11Department of Genetics and Biotechnology, Saint Petersburg State University, 7/9 Universitetskaya Emb, 199034 St. Petersburg, RussiaDepartment of Genetics and Biotechnology, Saint Petersburg State University, 7/9 Universitetskaya Emb, 199034 St. Petersburg, RussiaAll-Russia Research Institute for Agricultural Microbiology, Podbelsky Chausse 3, Pushkin, 196608 St. Petersburg, RussiaDepartment of Genetics and Biotechnology, Saint Petersburg State University, 7/9 Universitetskaya Emb, 199034 St. Petersburg, RussiaDepartment of Genetics and Biotechnology, Saint Petersburg State University, 7/9 Universitetskaya Emb, 199034 St. Petersburg, RussiaDepartment of Genetics and Biotechnology, Saint Petersburg State University, 7/9 Universitetskaya Emb, 199034 St. Petersburg, RussiaPlant Biology and Biotechnology Department, Sirius University of Science and Technology, 1 Olympic Avenue, 354340 Sochi, RussiaPlant Biology and Biotechnology Department, Sirius University of Science and Technology, 1 Olympic Avenue, 354340 Sochi, RussiaPlant Biology and Biotechnology Department, Sirius University of Science and Technology, 1 Olympic Avenue, 354340 Sochi, RussiaDepartment of Genetics and Biotechnology, Saint Petersburg State University, 7/9 Universitetskaya Emb, 199034 St. Petersburg, RussiaDepartment of Genetics and Biotechnology, Saint Petersburg State University, 7/9 Universitetskaya Emb, 199034 St. Petersburg, RussiaDepartment of Genetics and Biotechnology, Saint Petersburg State University, 7/9 Universitetskaya Emb, 199034 St. Petersburg, RussiaWOX family transcription factors are well-known regulators of plant development, controlling cell proliferation and differentiation in diverse organs and tissues. Several <i>WOX</i> genes have been shown to participate in regeneration processes which take place in plant cell cultures in vitro, but the effects of most of them on tissue culture development have not been discovered yet. In this study, we evaluated the effects of <i>MtWOX2</i> gene overexpression on the embryogenic callus development and transcriptomic state in <i>Medicago truncatula</i>. According to our results, overexpression of <i>MtWOX2</i> leads to an increase in callus weight. Furthermore, transcriptomic changes in <i>MtWOX2</i> overexpressing calli are, to a large extent, opposite to the changes caused by overexpression of <i>MtWOX9-1</i>, a somatic embryogenesis stimulator. These results add new information about the mechanisms of interaction between different <i>WOX</i> genes and can be useful for the search of new regeneration regulators.https://www.mdpi.com/2223-7747/13/1/102transcription factorsWOXcallussomatic embryogenesis
spellingShingle Elizaveta Y. Krasnoperova
Varvara E. Tvorogova
Kirill V. Smirnov
Elena P. Efremova
Elina A. Potsenkovskaia
Anastasia M. Artemiuk
Zakhar S. Konstantinov
Veronika Y. Simonova
Anna V. Brynchikova
Daria V. Yakovleva
Daria B. Pavlova
Ludmila A. Lutova
<i>MtWOX2</i> and <i>MtWOX9-1</i> Effects on the Embryogenic Callus Transcriptome in <i>Medicago truncatula</i>
Plants
transcription factors
WOX
callus
somatic embryogenesis
title <i>MtWOX2</i> and <i>MtWOX9-1</i> Effects on the Embryogenic Callus Transcriptome in <i>Medicago truncatula</i>
title_full <i>MtWOX2</i> and <i>MtWOX9-1</i> Effects on the Embryogenic Callus Transcriptome in <i>Medicago truncatula</i>
title_fullStr <i>MtWOX2</i> and <i>MtWOX9-1</i> Effects on the Embryogenic Callus Transcriptome in <i>Medicago truncatula</i>
title_full_unstemmed <i>MtWOX2</i> and <i>MtWOX9-1</i> Effects on the Embryogenic Callus Transcriptome in <i>Medicago truncatula</i>
title_short <i>MtWOX2</i> and <i>MtWOX9-1</i> Effects on the Embryogenic Callus Transcriptome in <i>Medicago truncatula</i>
title_sort i mtwox2 i and i mtwox9 1 i effects on the embryogenic callus transcriptome in i medicago truncatula i
topic transcription factors
WOX
callus
somatic embryogenesis
url https://www.mdpi.com/2223-7747/13/1/102
work_keys_str_mv AT elizavetaykrasnoperova imtwox2iandimtwox91ieffectsontheembryogeniccallustranscriptomeinimedicagotruncatulai
AT varvaraetvorogova imtwox2iandimtwox91ieffectsontheembryogeniccallustranscriptomeinimedicagotruncatulai
AT kirillvsmirnov imtwox2iandimtwox91ieffectsontheembryogeniccallustranscriptomeinimedicagotruncatulai
AT elenapefremova imtwox2iandimtwox91ieffectsontheembryogeniccallustranscriptomeinimedicagotruncatulai
AT elinaapotsenkovskaia imtwox2iandimtwox91ieffectsontheembryogeniccallustranscriptomeinimedicagotruncatulai
AT anastasiamartemiuk imtwox2iandimtwox91ieffectsontheembryogeniccallustranscriptomeinimedicagotruncatulai
AT zakharskonstantinov imtwox2iandimtwox91ieffectsontheembryogeniccallustranscriptomeinimedicagotruncatulai
AT veronikaysimonova imtwox2iandimtwox91ieffectsontheembryogeniccallustranscriptomeinimedicagotruncatulai
AT annavbrynchikova imtwox2iandimtwox91ieffectsontheembryogeniccallustranscriptomeinimedicagotruncatulai
AT dariavyakovleva imtwox2iandimtwox91ieffectsontheembryogeniccallustranscriptomeinimedicagotruncatulai
AT dariabpavlova imtwox2iandimtwox91ieffectsontheembryogeniccallustranscriptomeinimedicagotruncatulai
AT ludmilaalutova imtwox2iandimtwox91ieffectsontheembryogeniccallustranscriptomeinimedicagotruncatulai