Changes in the Activity of the CLE41/PXY/WOX Signaling Pathway in the Birch Cambial Zone under Different Xylogenesis Patterns

The balance between cell proliferation and differentiation into other cell types is crucial for meristem indeterminacy, and both growth aspects are under genetic control. The peptide-receptor signaling module regulates the activity of the cambial stem cells and the differentiation of their derivativ...

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Published in:Plants
Main Authors: Natalia A. Galibina, Yulia L. Moshchenskaya, Tatiana V. Tarelkina, Olga V. Chirva, Kseniya M. Nikerova, Aleksandra A. Serkova, Ludmila I. Semenova, Diana S. Ivanova
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Language:English
Published: Multidisciplinary Digital Publishing Institute 2022
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Online Access:https://doi.org/10.3390/plants11131727
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author Natalia A. Galibina
Yulia L. Moshchenskaya
Tatiana V. Tarelkina
Olga V. Chirva
Kseniya M. Nikerova
Aleksandra A. Serkova
Ludmila I. Semenova
Diana S. Ivanova
author_facet Natalia A. Galibina
Yulia L. Moshchenskaya
Tatiana V. Tarelkina
Olga V. Chirva
Kseniya M. Nikerova
Aleksandra A. Serkova
Ludmila I. Semenova
Diana S. Ivanova
author_sort Natalia A. Galibina
collection MDPI Open Access Publishing
container_issue 13
container_start_page 1727
container_title Plants
container_volume 11
description The balance between cell proliferation and differentiation into other cell types is crucial for meristem indeterminacy, and both growth aspects are under genetic control. The peptide-receptor signaling module regulates the activity of the cambial stem cells and the differentiation of their derivatives, along with cytokinins and auxin. We identified the genes encoding the signaling module CLE41-PXY and the regulator of vascular cambium division WOX4 and studied their expression during the period of cambial growth in the radial row: the conducting phloem/cambial zone and the differentiating xylem in two forms of Betula pendula, silver birch and Karelian birch. We have shown that the expression maximum of the BpCLE41/44a gene precedes the expression maximum of the BpPXY gene. Non-figured Karelian birch plants with straight-grained wood are characterized by a more intensive growth and the high expression of CLE41/44-PXY-WOX4. Figured Karelian birch plants, where the disturbed ratio and spatial orientation of structural elements characterizes the wood, have high levels of BpWOX4 expression and a decrease in xylem growth as well as the formation of xylem with a lower vessel density. The mutual influences of CLE41-PXY signaling and auxin signaling on WOX4 gene activity and the proliferation of cambium stem cells are discussed.
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op_doi https://doi.org/10.3390/plants11131727
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https://dx.doi.org/10.3390/plants11131727
op_rights https://creativecommons.org/licenses/by/4.0/
op_source Plants; Volume 11; Issue 13; Pages: 1727
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spelling ftmdpi:oai:mdpi.com:/2223-7747/11/13/1727/ 2025-01-16T22:51:13+00:00 Changes in the Activity of the CLE41/PXY/WOX Signaling Pathway in the Birch Cambial Zone under Different Xylogenesis Patterns Natalia A. Galibina Yulia L. Moshchenskaya Tatiana V. Tarelkina Olga V. Chirva Kseniya M. Nikerova Aleksandra A. Serkova Ludmila I. Semenova Diana S. Ivanova agris 2022-06-29 application/pdf https://doi.org/10.3390/plants11131727 EN eng Multidisciplinary Digital Publishing Institute Plant Molecular Biology https://dx.doi.org/10.3390/plants11131727 https://creativecommons.org/licenses/by/4.0/ Plants; Volume 11; Issue 13; Pages: 1727 disturbance of xylogenesis conducting phloem cambial zone differentiating xylem Cle41/44 PXY WOX4 Text 2022 ftmdpi https://doi.org/10.3390/plants11131727 2023-08-01T05:32:37Z The balance between cell proliferation and differentiation into other cell types is crucial for meristem indeterminacy, and both growth aspects are under genetic control. The peptide-receptor signaling module regulates the activity of the cambial stem cells and the differentiation of their derivatives, along with cytokinins and auxin. We identified the genes encoding the signaling module CLE41-PXY and the regulator of vascular cambium division WOX4 and studied their expression during the period of cambial growth in the radial row: the conducting phloem/cambial zone and the differentiating xylem in two forms of Betula pendula, silver birch and Karelian birch. We have shown that the expression maximum of the BpCLE41/44a gene precedes the expression maximum of the BpPXY gene. Non-figured Karelian birch plants with straight-grained wood are characterized by a more intensive growth and the high expression of CLE41/44-PXY-WOX4. Figured Karelian birch plants, where the disturbed ratio and spatial orientation of structural elements characterizes the wood, have high levels of BpWOX4 expression and a decrease in xylem growth as well as the formation of xylem with a lower vessel density. The mutual influences of CLE41-PXY signaling and auxin signaling on WOX4 gene activity and the proliferation of cambium stem cells are discussed. Text karelian MDPI Open Access Publishing Plants 11 13 1727
spellingShingle disturbance of xylogenesis
conducting phloem
cambial zone
differentiating xylem
Cle41/44
PXY
WOX4
Natalia A. Galibina
Yulia L. Moshchenskaya
Tatiana V. Tarelkina
Olga V. Chirva
Kseniya M. Nikerova
Aleksandra A. Serkova
Ludmila I. Semenova
Diana S. Ivanova
Changes in the Activity of the CLE41/PXY/WOX Signaling Pathway in the Birch Cambial Zone under Different Xylogenesis Patterns
title Changes in the Activity of the CLE41/PXY/WOX Signaling Pathway in the Birch Cambial Zone under Different Xylogenesis Patterns
title_full Changes in the Activity of the CLE41/PXY/WOX Signaling Pathway in the Birch Cambial Zone under Different Xylogenesis Patterns
title_fullStr Changes in the Activity of the CLE41/PXY/WOX Signaling Pathway in the Birch Cambial Zone under Different Xylogenesis Patterns
title_full_unstemmed Changes in the Activity of the CLE41/PXY/WOX Signaling Pathway in the Birch Cambial Zone under Different Xylogenesis Patterns
title_short Changes in the Activity of the CLE41/PXY/WOX Signaling Pathway in the Birch Cambial Zone under Different Xylogenesis Patterns
title_sort changes in the activity of the cle41/pxy/wox signaling pathway in the birch cambial zone under different xylogenesis patterns
topic disturbance of xylogenesis
conducting phloem
cambial zone
differentiating xylem
Cle41/44
PXY
WOX4
topic_facet disturbance of xylogenesis
conducting phloem
cambial zone
differentiating xylem
Cle41/44
PXY
WOX4
url https://doi.org/10.3390/plants11131727