Cargando…

Comparative Proteome and Phosphoproteome Analyses Reveal Different Molecular Mechanism Between Stone Planting Under the Forest and Greenhouse Planting of Dendrobium huoshanense

The highly esteemed Chinese herb, Dendrobium huoshanense, whose major metabolites are polysaccharides and alkaloids, is on the verge of extinction. The stone planting under the forest (SPUF) and greenhouse planting (GP) of D. huoshanense are two different cultivation methods of pharmaceutical Dendro...

Descripción completa

Detalles Bibliográficos
Autores principales: Wu, Liping, Meng, Xiaoxi, Huang, Huizhen, Liu, Yingying, Jiang, Weimin, Su, Xinglong, Wang, Zhaojian, Meng, Fei, Wang, Longhai, Peng, Daiyin, Xing, Shihai
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9301318/
https://www.ncbi.nlm.nih.gov/pubmed/35873990
http://dx.doi.org/10.3389/fpls.2022.937392
_version_ 1784751405265846272
author Wu, Liping
Meng, Xiaoxi
Huang, Huizhen
Liu, Yingying
Jiang, Weimin
Su, Xinglong
Wang, Zhaojian
Meng, Fei
Wang, Longhai
Peng, Daiyin
Xing, Shihai
author_facet Wu, Liping
Meng, Xiaoxi
Huang, Huizhen
Liu, Yingying
Jiang, Weimin
Su, Xinglong
Wang, Zhaojian
Meng, Fei
Wang, Longhai
Peng, Daiyin
Xing, Shihai
author_sort Wu, Liping
collection PubMed
description The highly esteemed Chinese herb, Dendrobium huoshanense, whose major metabolites are polysaccharides and alkaloids, is on the verge of extinction. The stone planting under the forest (SPUF) and greenhouse planting (GP) of D. huoshanense are two different cultivation methods of pharmaceutical Dendrobium with significantly differences in morphology, metabolites content and composition, and medication efficacy. Here, we conducted proteomics and phosphoproteomics analyses to reveal differences in molecular mechanisms between SPUF and GP. We identified 237 differentially expressed proteins (DEPs) between the two proteomes, and 291 modification sites belonging to 215 phosphoproteins with a phosphorylation level significantly changed (PLSC) were observed. GO, KEGG pathway, protein domain, and cluster analyses revealed that these DEPs were mainly localized in the chloroplast; involved in processes such as posttranslational modification, carbohydrate transport and metabolism, and secondary metabolite biosynthesis; and enriched in pathways mainly including linoleic acid metabolism, plant-pathogen interactions, and phenylpropanoid, cutin, suberin, and wax biosynthesis. PLSC phosphoproteins were mainly located in the chloroplast, and highly enriched in responses to different stresses and signal transduction mechanisms through protein kinase and phosphotransferase activities. Significant differences between SPUF and GP were observed by mapping the DEPs and phosphorylated proteins to photosynthesis and polysaccharide and alkaloid biosynthesis pathways. Phosphorylation characteristics and kinase categories in D. huoshanense were also clarified in this study. We analyzed different molecular mechanisms between SPUF and GP at proteomic and phosphoproteomic levels, providing valuable information for the development and utilization of D. huoshanense.
format Online
Article
Text
id pubmed-9301318
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-93013182022-07-22 Comparative Proteome and Phosphoproteome Analyses Reveal Different Molecular Mechanism Between Stone Planting Under the Forest and Greenhouse Planting of Dendrobium huoshanense Wu, Liping Meng, Xiaoxi Huang, Huizhen Liu, Yingying Jiang, Weimin Su, Xinglong Wang, Zhaojian Meng, Fei Wang, Longhai Peng, Daiyin Xing, Shihai Front Plant Sci Plant Science The highly esteemed Chinese herb, Dendrobium huoshanense, whose major metabolites are polysaccharides and alkaloids, is on the verge of extinction. The stone planting under the forest (SPUF) and greenhouse planting (GP) of D. huoshanense are two different cultivation methods of pharmaceutical Dendrobium with significantly differences in morphology, metabolites content and composition, and medication efficacy. Here, we conducted proteomics and phosphoproteomics analyses to reveal differences in molecular mechanisms between SPUF and GP. We identified 237 differentially expressed proteins (DEPs) between the two proteomes, and 291 modification sites belonging to 215 phosphoproteins with a phosphorylation level significantly changed (PLSC) were observed. GO, KEGG pathway, protein domain, and cluster analyses revealed that these DEPs were mainly localized in the chloroplast; involved in processes such as posttranslational modification, carbohydrate transport and metabolism, and secondary metabolite biosynthesis; and enriched in pathways mainly including linoleic acid metabolism, plant-pathogen interactions, and phenylpropanoid, cutin, suberin, and wax biosynthesis. PLSC phosphoproteins were mainly located in the chloroplast, and highly enriched in responses to different stresses and signal transduction mechanisms through protein kinase and phosphotransferase activities. Significant differences between SPUF and GP were observed by mapping the DEPs and phosphorylated proteins to photosynthesis and polysaccharide and alkaloid biosynthesis pathways. Phosphorylation characteristics and kinase categories in D. huoshanense were also clarified in this study. We analyzed different molecular mechanisms between SPUF and GP at proteomic and phosphoproteomic levels, providing valuable information for the development and utilization of D. huoshanense. Frontiers Media S.A. 2022-07-07 /pmc/articles/PMC9301318/ /pubmed/35873990 http://dx.doi.org/10.3389/fpls.2022.937392 Text en Copyright © 2022 Wu, Meng, Huang, Liu, Jiang, Su, Wang, Meng, Wang, Peng and Xing. 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
Wu, Liping
Meng, Xiaoxi
Huang, Huizhen
Liu, Yingying
Jiang, Weimin
Su, Xinglong
Wang, Zhaojian
Meng, Fei
Wang, Longhai
Peng, Daiyin
Xing, Shihai
Comparative Proteome and Phosphoproteome Analyses Reveal Different Molecular Mechanism Between Stone Planting Under the Forest and Greenhouse Planting of Dendrobium huoshanense
title Comparative Proteome and Phosphoproteome Analyses Reveal Different Molecular Mechanism Between Stone Planting Under the Forest and Greenhouse Planting of Dendrobium huoshanense
title_full Comparative Proteome and Phosphoproteome Analyses Reveal Different Molecular Mechanism Between Stone Planting Under the Forest and Greenhouse Planting of Dendrobium huoshanense
title_fullStr Comparative Proteome and Phosphoproteome Analyses Reveal Different Molecular Mechanism Between Stone Planting Under the Forest and Greenhouse Planting of Dendrobium huoshanense
title_full_unstemmed Comparative Proteome and Phosphoproteome Analyses Reveal Different Molecular Mechanism Between Stone Planting Under the Forest and Greenhouse Planting of Dendrobium huoshanense
title_short Comparative Proteome and Phosphoproteome Analyses Reveal Different Molecular Mechanism Between Stone Planting Under the Forest and Greenhouse Planting of Dendrobium huoshanense
title_sort comparative proteome and phosphoproteome analyses reveal different molecular mechanism between stone planting under the forest and greenhouse planting of dendrobium huoshanense
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9301318/
https://www.ncbi.nlm.nih.gov/pubmed/35873990
http://dx.doi.org/10.3389/fpls.2022.937392
work_keys_str_mv AT wuliping comparativeproteomeandphosphoproteomeanalysesrevealdifferentmolecularmechanismbetweenstoneplantingundertheforestandgreenhouseplantingofdendrobiumhuoshanense
AT mengxiaoxi comparativeproteomeandphosphoproteomeanalysesrevealdifferentmolecularmechanismbetweenstoneplantingundertheforestandgreenhouseplantingofdendrobiumhuoshanense
AT huanghuizhen comparativeproteomeandphosphoproteomeanalysesrevealdifferentmolecularmechanismbetweenstoneplantingundertheforestandgreenhouseplantingofdendrobiumhuoshanense
AT liuyingying comparativeproteomeandphosphoproteomeanalysesrevealdifferentmolecularmechanismbetweenstoneplantingundertheforestandgreenhouseplantingofdendrobiumhuoshanense
AT jiangweimin comparativeproteomeandphosphoproteomeanalysesrevealdifferentmolecularmechanismbetweenstoneplantingundertheforestandgreenhouseplantingofdendrobiumhuoshanense
AT suxinglong comparativeproteomeandphosphoproteomeanalysesrevealdifferentmolecularmechanismbetweenstoneplantingundertheforestandgreenhouseplantingofdendrobiumhuoshanense
AT wangzhaojian comparativeproteomeandphosphoproteomeanalysesrevealdifferentmolecularmechanismbetweenstoneplantingundertheforestandgreenhouseplantingofdendrobiumhuoshanense
AT mengfei comparativeproteomeandphosphoproteomeanalysesrevealdifferentmolecularmechanismbetweenstoneplantingundertheforestandgreenhouseplantingofdendrobiumhuoshanense
AT wanglonghai comparativeproteomeandphosphoproteomeanalysesrevealdifferentmolecularmechanismbetweenstoneplantingundertheforestandgreenhouseplantingofdendrobiumhuoshanense
AT pengdaiyin comparativeproteomeandphosphoproteomeanalysesrevealdifferentmolecularmechanismbetweenstoneplantingundertheforestandgreenhouseplantingofdendrobiumhuoshanense
AT xingshihai comparativeproteomeandphosphoproteomeanalysesrevealdifferentmolecularmechanismbetweenstoneplantingundertheforestandgreenhouseplantingofdendrobiumhuoshanense