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PAs Regulate Early Somatic Embryo Development by Changing the Gene Expression Level and the Hormonal Balance in Dimocarpus longan Lour.

Polyamines (PAs) play an important regulatory role in many basic cellular processes and physiological and biochemical processes. However, there are few studies on the identification of PA biosynthesis and metabolism family members and the role of PAs in the transition of plant embryogenic calli (EC)...

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Autores principales: Lai, Chunwang, Zhou, Xiaojuan, Zhang, Shuting, Zhang, Xueying, Liu, Mengyu, Zhang, Chunyu, Xu, Xiaoqiong, Xu, Xiaoping, Chen, Xiaohui, Chen, Yan, Lin, Wenzhong, Lai, Zhongxiong, Lin, Yuling
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8872317/
https://www.ncbi.nlm.nih.gov/pubmed/35205362
http://dx.doi.org/10.3390/genes13020317
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author Lai, Chunwang
Zhou, Xiaojuan
Zhang, Shuting
Zhang, Xueying
Liu, Mengyu
Zhang, Chunyu
Xu, Xiaoqiong
Xu, Xiaoping
Chen, Xiaohui
Chen, Yan
Lin, Wenzhong
Lai, Zhongxiong
Lin, Yuling
author_facet Lai, Chunwang
Zhou, Xiaojuan
Zhang, Shuting
Zhang, Xueying
Liu, Mengyu
Zhang, Chunyu
Xu, Xiaoqiong
Xu, Xiaoping
Chen, Xiaohui
Chen, Yan
Lin, Wenzhong
Lai, Zhongxiong
Lin, Yuling
author_sort Lai, Chunwang
collection PubMed
description Polyamines (PAs) play an important regulatory role in many basic cellular processes and physiological and biochemical processes. However, there are few studies on the identification of PA biosynthesis and metabolism family members and the role of PAs in the transition of plant embryogenic calli (EC) into globular embryos (GE), especially in perennial woody plants. We identified 20 genes involved in PA biosynthesis and metabolism from the third-generation genome of longan (Dimocarpus longan Lour.). There were no significant differences between longan and other species regarding the number of members, and they had high similarity with Citrus sinensis. Light, plant hormones and a variety of stress cis-acting elements were found in these family members. The biosynthesis and metabolism of PAs in longan were mainly completed by DlADC2, DlSAMDC2, DlSAMDC3, DlSPDS1A, DlSPMS, DlCuAOB, DlCuAO3A, DlPAO2 and DlPAO4B. In addition, 0.01 mmol∙L(−1) 1-aminocyclopropane-1-carboxylic acid (ACC), putrescine (Put) and spermine (Spm), could promote the transformation of EC into GE, and Spm treatment had the best effect, while 0.01 mmol∙L(−1) D-arginine (D-arg) treatment inhibited the process. The period between the 9th and 11th days was key for the transformation of EC into GE in longan. There were higher levels of gibberellin (GA), salicylic acid (SA) and abscisic acid (ABA) and lower levels of indole-3-acetic acid (IAA), ethylene and hydrogen peroxide (H(2)O(2)) in this key period. The expression levels in this period of DlADC2, DlODC, DlSPDS1A, DlCuAOB and DlPAO4B were upregulated, while those of DlSAMDC2 and DlSPMS were downregulated. These results showed that the exogenous ACC, D-arg and PAs could regulate the transformation of EC into GE in longan by changing the content of endogenous hormones and the expression levels of PA biosynthesis and metabolism genes. This study provided a foundation for further determining the physicochemical properties and molecular evolution characteristics of the PA biosynthesis and metabolism gene families, and explored the mechanism of PAs and ethylene for regulating the transformation of plant EC into GE.
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spelling pubmed-88723172022-02-25 PAs Regulate Early Somatic Embryo Development by Changing the Gene Expression Level and the Hormonal Balance in Dimocarpus longan Lour. Lai, Chunwang Zhou, Xiaojuan Zhang, Shuting Zhang, Xueying Liu, Mengyu Zhang, Chunyu Xu, Xiaoqiong Xu, Xiaoping Chen, Xiaohui Chen, Yan Lin, Wenzhong Lai, Zhongxiong Lin, Yuling Genes (Basel) Article Polyamines (PAs) play an important regulatory role in many basic cellular processes and physiological and biochemical processes. However, there are few studies on the identification of PA biosynthesis and metabolism family members and the role of PAs in the transition of plant embryogenic calli (EC) into globular embryos (GE), especially in perennial woody plants. We identified 20 genes involved in PA biosynthesis and metabolism from the third-generation genome of longan (Dimocarpus longan Lour.). There were no significant differences between longan and other species regarding the number of members, and they had high similarity with Citrus sinensis. Light, plant hormones and a variety of stress cis-acting elements were found in these family members. The biosynthesis and metabolism of PAs in longan were mainly completed by DlADC2, DlSAMDC2, DlSAMDC3, DlSPDS1A, DlSPMS, DlCuAOB, DlCuAO3A, DlPAO2 and DlPAO4B. In addition, 0.01 mmol∙L(−1) 1-aminocyclopropane-1-carboxylic acid (ACC), putrescine (Put) and spermine (Spm), could promote the transformation of EC into GE, and Spm treatment had the best effect, while 0.01 mmol∙L(−1) D-arginine (D-arg) treatment inhibited the process. The period between the 9th and 11th days was key for the transformation of EC into GE in longan. There were higher levels of gibberellin (GA), salicylic acid (SA) and abscisic acid (ABA) and lower levels of indole-3-acetic acid (IAA), ethylene and hydrogen peroxide (H(2)O(2)) in this key period. The expression levels in this period of DlADC2, DlODC, DlSPDS1A, DlCuAOB and DlPAO4B were upregulated, while those of DlSAMDC2 and DlSPMS were downregulated. These results showed that the exogenous ACC, D-arg and PAs could regulate the transformation of EC into GE in longan by changing the content of endogenous hormones and the expression levels of PA biosynthesis and metabolism genes. This study provided a foundation for further determining the physicochemical properties and molecular evolution characteristics of the PA biosynthesis and metabolism gene families, and explored the mechanism of PAs and ethylene for regulating the transformation of plant EC into GE. MDPI 2022-02-08 /pmc/articles/PMC8872317/ /pubmed/35205362 http://dx.doi.org/10.3390/genes13020317 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
Lai, Chunwang
Zhou, Xiaojuan
Zhang, Shuting
Zhang, Xueying
Liu, Mengyu
Zhang, Chunyu
Xu, Xiaoqiong
Xu, Xiaoping
Chen, Xiaohui
Chen, Yan
Lin, Wenzhong
Lai, Zhongxiong
Lin, Yuling
PAs Regulate Early Somatic Embryo Development by Changing the Gene Expression Level and the Hormonal Balance in Dimocarpus longan Lour.
title PAs Regulate Early Somatic Embryo Development by Changing the Gene Expression Level and the Hormonal Balance in Dimocarpus longan Lour.
title_full PAs Regulate Early Somatic Embryo Development by Changing the Gene Expression Level and the Hormonal Balance in Dimocarpus longan Lour.
title_fullStr PAs Regulate Early Somatic Embryo Development by Changing the Gene Expression Level and the Hormonal Balance in Dimocarpus longan Lour.
title_full_unstemmed PAs Regulate Early Somatic Embryo Development by Changing the Gene Expression Level and the Hormonal Balance in Dimocarpus longan Lour.
title_short PAs Regulate Early Somatic Embryo Development by Changing the Gene Expression Level and the Hormonal Balance in Dimocarpus longan Lour.
title_sort pas regulate early somatic embryo development by changing the gene expression level and the hormonal balance in dimocarpus longan lour.
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8872317/
https://www.ncbi.nlm.nih.gov/pubmed/35205362
http://dx.doi.org/10.3390/genes13020317
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