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Later Growth Cessation and Increased Freezing Tolerance Potentially Result in Later Dormancy in Evergreen Iris Compared with Deciduous Iris

Winter dormancy is a protective survival strategy for plants to resist harsh natural environments. In the context of global warming, the progression of dormancy has been significantly affected in perennials, which requires further research. Here, a systematic study was performed to compare the induc...

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Autores principales: Xu, Tong, Zhang, Jiao, Shao, Lingmei, Wang, Xiaobin, Zhang, Runlong, Ji, Chenxi, Xia, Yiping, Zhang, Liangsheng, Zhang, Jiaping, Li, Danqing
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9569662/
https://www.ncbi.nlm.nih.gov/pubmed/36232426
http://dx.doi.org/10.3390/ijms231911123
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author Xu, Tong
Zhang, Jiao
Shao, Lingmei
Wang, Xiaobin
Zhang, Runlong
Ji, Chenxi
Xia, Yiping
Zhang, Liangsheng
Zhang, Jiaping
Li, Danqing
author_facet Xu, Tong
Zhang, Jiao
Shao, Lingmei
Wang, Xiaobin
Zhang, Runlong
Ji, Chenxi
Xia, Yiping
Zhang, Liangsheng
Zhang, Jiaping
Li, Danqing
author_sort Xu, Tong
collection PubMed
description Winter dormancy is a protective survival strategy for plants to resist harsh natural environments. In the context of global warming, the progression of dormancy has been significantly affected in perennials, which requires further research. Here, a systematic study was performed to compare the induction of dormancy in two closely related iris species with an ecodormancy-only process, the evergreen Iris japonica Thunb. and the deciduous Iris tectorum Maxim. under artificial conditions. Firstly, morphological and physiological observations were evaluated to ensure the developmental status of the two iris species. Furthermore, the expression patterns of the genes involved in key pathways related to plant winter dormancy were determined, and correlation analyses with dormancy marker genes were conducted. We found that deciduous iris entered dormancy earlier than evergreen iris under artificial dormancy induction conditions. Phytohormones and carbohydrates play roles in coordinating growth and stress responses during dormancy induction in both iris species. Moreover, dormancy-related MADS-box genes and SnRKs (Snf1-related protein kinase) might represent a bridge between carbohydrate and phytohormone interaction during iris dormancy. These findings provide a hypothetical model explaining the later dormancy in evergreen iris compared with deciduous iris under artificial dormancy induction conditions and reveal some candidate genes. The findings of this study could provide new insights into the research of dormancy in perennial plants with an ecodormancy-only process and contribute to effectively managing iris production, postharvest storage, and shipping.
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spelling pubmed-95696622022-10-17 Later Growth Cessation and Increased Freezing Tolerance Potentially Result in Later Dormancy in Evergreen Iris Compared with Deciduous Iris Xu, Tong Zhang, Jiao Shao, Lingmei Wang, Xiaobin Zhang, Runlong Ji, Chenxi Xia, Yiping Zhang, Liangsheng Zhang, Jiaping Li, Danqing Int J Mol Sci Article Winter dormancy is a protective survival strategy for plants to resist harsh natural environments. In the context of global warming, the progression of dormancy has been significantly affected in perennials, which requires further research. Here, a systematic study was performed to compare the induction of dormancy in two closely related iris species with an ecodormancy-only process, the evergreen Iris japonica Thunb. and the deciduous Iris tectorum Maxim. under artificial conditions. Firstly, morphological and physiological observations were evaluated to ensure the developmental status of the two iris species. Furthermore, the expression patterns of the genes involved in key pathways related to plant winter dormancy were determined, and correlation analyses with dormancy marker genes were conducted. We found that deciduous iris entered dormancy earlier than evergreen iris under artificial dormancy induction conditions. Phytohormones and carbohydrates play roles in coordinating growth and stress responses during dormancy induction in both iris species. Moreover, dormancy-related MADS-box genes and SnRKs (Snf1-related protein kinase) might represent a bridge between carbohydrate and phytohormone interaction during iris dormancy. These findings provide a hypothetical model explaining the later dormancy in evergreen iris compared with deciduous iris under artificial dormancy induction conditions and reveal some candidate genes. The findings of this study could provide new insights into the research of dormancy in perennial plants with an ecodormancy-only process and contribute to effectively managing iris production, postharvest storage, and shipping. MDPI 2022-09-22 /pmc/articles/PMC9569662/ /pubmed/36232426 http://dx.doi.org/10.3390/ijms231911123 Text en © 2022 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
Xu, Tong
Zhang, Jiao
Shao, Lingmei
Wang, Xiaobin
Zhang, Runlong
Ji, Chenxi
Xia, Yiping
Zhang, Liangsheng
Zhang, Jiaping
Li, Danqing
Later Growth Cessation and Increased Freezing Tolerance Potentially Result in Later Dormancy in Evergreen Iris Compared with Deciduous Iris
title Later Growth Cessation and Increased Freezing Tolerance Potentially Result in Later Dormancy in Evergreen Iris Compared with Deciduous Iris
title_full Later Growth Cessation and Increased Freezing Tolerance Potentially Result in Later Dormancy in Evergreen Iris Compared with Deciduous Iris
title_fullStr Later Growth Cessation and Increased Freezing Tolerance Potentially Result in Later Dormancy in Evergreen Iris Compared with Deciduous Iris
title_full_unstemmed Later Growth Cessation and Increased Freezing Tolerance Potentially Result in Later Dormancy in Evergreen Iris Compared with Deciduous Iris
title_short Later Growth Cessation and Increased Freezing Tolerance Potentially Result in Later Dormancy in Evergreen Iris Compared with Deciduous Iris
title_sort later growth cessation and increased freezing tolerance potentially result in later dormancy in evergreen iris compared with deciduous iris
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9569662/
https://www.ncbi.nlm.nih.gov/pubmed/36232426
http://dx.doi.org/10.3390/ijms231911123
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