Cargando…

Dynamic Transcriptome Analysis Reveals Complex Regulatory Pathway Underlying Induction and Dose Effect by Different Exogenous Auxin IAA and 2,4-D During in vitro Embryogenic Redifferentiation in Cotton

Plant somatic cells can reprogram into differentiated embryos through somatic embryogenesis (SE) on the condition of plant growth regulators (PGRs). RNA sequencing analysis was performed to investigate transcriptional profiling on cotton redifferentiated callus that was induced by different auxin ty...

Descripción completa

Detalles Bibliográficos
Autores principales: Fan, Yupeng, Tang, Zhengmin, Wei, Junmei, Yu, Xiaoman, Guo, Huihui, Li, Tongtong, Guo, Haixia, Zhang, Li, Fan, Yijie, Zhang, Changyu, Zeng, Fanchang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9278894/
https://www.ncbi.nlm.nih.gov/pubmed/35845676
http://dx.doi.org/10.3389/fpls.2022.931105
_version_ 1784746281711697920
author Fan, Yupeng
Tang, Zhengmin
Wei, Junmei
Yu, Xiaoman
Guo, Huihui
Li, Tongtong
Guo, Haixia
Zhang, Li
Fan, Yijie
Zhang, Changyu
Zeng, Fanchang
author_facet Fan, Yupeng
Tang, Zhengmin
Wei, Junmei
Yu, Xiaoman
Guo, Huihui
Li, Tongtong
Guo, Haixia
Zhang, Li
Fan, Yijie
Zhang, Changyu
Zeng, Fanchang
author_sort Fan, Yupeng
collection PubMed
description Plant somatic cells can reprogram into differentiated embryos through somatic embryogenesis (SE) on the condition of plant growth regulators (PGRs). RNA sequencing analysis was performed to investigate transcriptional profiling on cotton redifferentiated callus that was induced by different auxin types (IAA and 2,4-D), different concentrations (0, 0.025, and 0.05 mg L(−1)), and different incubation times (0, 5, and 20 days). Under the 2,4-D induction effect, signal transduction pathways of plant hormones were significantly enriched in the embryogenic response stage (5 days). These results indicated that auxin signal transduction genes were necessary for the initial response of embryogenic differentiation. In the pre-embryonic initial period (20 days), the photosynthetic pathway was significantly enriched. Most differentially expressed genes (DEGs) were downregulated under the induction of 2,4-D. Upon the dose effect of IAA and 2,4-D, respectively, pathways were significantly enriched in phenylpropanoid biosynthesis, fatty acid metabolism, and carbon metabolic pathways. Therefore, primary and secondary metabolism pathways were critical in cotton SE. These results showed that complex synergistic mechanisms involving multiple cellular pathways were the causes of the induction and dose effect of auxin-induced SE. This study reveals a systematic molecular response to auxin signals and reveals the way that regulates embryogenic redifferentiation during cotton SE.
format Online
Article
Text
id pubmed-9278894
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-92788942022-07-14 Dynamic Transcriptome Analysis Reveals Complex Regulatory Pathway Underlying Induction and Dose Effect by Different Exogenous Auxin IAA and 2,4-D During in vitro Embryogenic Redifferentiation in Cotton Fan, Yupeng Tang, Zhengmin Wei, Junmei Yu, Xiaoman Guo, Huihui Li, Tongtong Guo, Haixia Zhang, Li Fan, Yijie Zhang, Changyu Zeng, Fanchang Front Plant Sci Plant Science Plant somatic cells can reprogram into differentiated embryos through somatic embryogenesis (SE) on the condition of plant growth regulators (PGRs). RNA sequencing analysis was performed to investigate transcriptional profiling on cotton redifferentiated callus that was induced by different auxin types (IAA and 2,4-D), different concentrations (0, 0.025, and 0.05 mg L(−1)), and different incubation times (0, 5, and 20 days). Under the 2,4-D induction effect, signal transduction pathways of plant hormones were significantly enriched in the embryogenic response stage (5 days). These results indicated that auxin signal transduction genes were necessary for the initial response of embryogenic differentiation. In the pre-embryonic initial period (20 days), the photosynthetic pathway was significantly enriched. Most differentially expressed genes (DEGs) were downregulated under the induction of 2,4-D. Upon the dose effect of IAA and 2,4-D, respectively, pathways were significantly enriched in phenylpropanoid biosynthesis, fatty acid metabolism, and carbon metabolic pathways. Therefore, primary and secondary metabolism pathways were critical in cotton SE. These results showed that complex synergistic mechanisms involving multiple cellular pathways were the causes of the induction and dose effect of auxin-induced SE. This study reveals a systematic molecular response to auxin signals and reveals the way that regulates embryogenic redifferentiation during cotton SE. Frontiers Media S.A. 2022-06-29 /pmc/articles/PMC9278894/ /pubmed/35845676 http://dx.doi.org/10.3389/fpls.2022.931105 Text en Copyright © 2022 Fan, Tang, Wei, Yu, Guo, Li, Guo, Zhang, Fan, Zhang and Zeng. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Plant Science
Fan, Yupeng
Tang, Zhengmin
Wei, Junmei
Yu, Xiaoman
Guo, Huihui
Li, Tongtong
Guo, Haixia
Zhang, Li
Fan, Yijie
Zhang, Changyu
Zeng, Fanchang
Dynamic Transcriptome Analysis Reveals Complex Regulatory Pathway Underlying Induction and Dose Effect by Different Exogenous Auxin IAA and 2,4-D During in vitro Embryogenic Redifferentiation in Cotton
title Dynamic Transcriptome Analysis Reveals Complex Regulatory Pathway Underlying Induction and Dose Effect by Different Exogenous Auxin IAA and 2,4-D During in vitro Embryogenic Redifferentiation in Cotton
title_full Dynamic Transcriptome Analysis Reveals Complex Regulatory Pathway Underlying Induction and Dose Effect by Different Exogenous Auxin IAA and 2,4-D During in vitro Embryogenic Redifferentiation in Cotton
title_fullStr Dynamic Transcriptome Analysis Reveals Complex Regulatory Pathway Underlying Induction and Dose Effect by Different Exogenous Auxin IAA and 2,4-D During in vitro Embryogenic Redifferentiation in Cotton
title_full_unstemmed Dynamic Transcriptome Analysis Reveals Complex Regulatory Pathway Underlying Induction and Dose Effect by Different Exogenous Auxin IAA and 2,4-D During in vitro Embryogenic Redifferentiation in Cotton
title_short Dynamic Transcriptome Analysis Reveals Complex Regulatory Pathway Underlying Induction and Dose Effect by Different Exogenous Auxin IAA and 2,4-D During in vitro Embryogenic Redifferentiation in Cotton
title_sort dynamic transcriptome analysis reveals complex regulatory pathway underlying induction and dose effect by different exogenous auxin iaa and 2,4-d during in vitro embryogenic redifferentiation in cotton
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9278894/
https://www.ncbi.nlm.nih.gov/pubmed/35845676
http://dx.doi.org/10.3389/fpls.2022.931105
work_keys_str_mv AT fanyupeng dynamictranscriptomeanalysisrevealscomplexregulatorypathwayunderlyinginductionanddoseeffectbydifferentexogenousauxiniaaand24dduringinvitroembryogenicredifferentiationincotton
AT tangzhengmin dynamictranscriptomeanalysisrevealscomplexregulatorypathwayunderlyinginductionanddoseeffectbydifferentexogenousauxiniaaand24dduringinvitroembryogenicredifferentiationincotton
AT weijunmei dynamictranscriptomeanalysisrevealscomplexregulatorypathwayunderlyinginductionanddoseeffectbydifferentexogenousauxiniaaand24dduringinvitroembryogenicredifferentiationincotton
AT yuxiaoman dynamictranscriptomeanalysisrevealscomplexregulatorypathwayunderlyinginductionanddoseeffectbydifferentexogenousauxiniaaand24dduringinvitroembryogenicredifferentiationincotton
AT guohuihui dynamictranscriptomeanalysisrevealscomplexregulatorypathwayunderlyinginductionanddoseeffectbydifferentexogenousauxiniaaand24dduringinvitroembryogenicredifferentiationincotton
AT litongtong dynamictranscriptomeanalysisrevealscomplexregulatorypathwayunderlyinginductionanddoseeffectbydifferentexogenousauxiniaaand24dduringinvitroembryogenicredifferentiationincotton
AT guohaixia dynamictranscriptomeanalysisrevealscomplexregulatorypathwayunderlyinginductionanddoseeffectbydifferentexogenousauxiniaaand24dduringinvitroembryogenicredifferentiationincotton
AT zhangli dynamictranscriptomeanalysisrevealscomplexregulatorypathwayunderlyinginductionanddoseeffectbydifferentexogenousauxiniaaand24dduringinvitroembryogenicredifferentiationincotton
AT fanyijie dynamictranscriptomeanalysisrevealscomplexregulatorypathwayunderlyinginductionanddoseeffectbydifferentexogenousauxiniaaand24dduringinvitroembryogenicredifferentiationincotton
AT zhangchangyu dynamictranscriptomeanalysisrevealscomplexregulatorypathwayunderlyinginductionanddoseeffectbydifferentexogenousauxiniaaand24dduringinvitroembryogenicredifferentiationincotton
AT zengfanchang dynamictranscriptomeanalysisrevealscomplexregulatorypathwayunderlyinginductionanddoseeffectbydifferentexogenousauxiniaaand24dduringinvitroembryogenicredifferentiationincotton