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The Osmotin-Like Protein Gene PdOLP1 Is Involved in Secondary Cell Wall Biosynthesis during Wood Formation in Poplar

Osmotin-like proteins (OLPs) mediate defenses against abiotic and biotic stresses and fungal pathogens in plants. However, no OLPs have been functionally elucidated in poplar. Here, we report an osmotin-like protein designated PdOLP1 from Populus deltoides (Marsh.). Expression analysis showed that P...

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Autores principales: Li, Shaofeng, Zhang, Yaoxiang, Xin, Xuebing, Ding, Changjun, Lv, Fuling, Mo, Wenjuan, Xia, Yongxiu, Wang, Shaoli, Cai, Jingyan, Sun, Lifang, Du, Manyi, Dong, Chenxi, Gao, Xu, Dai, Xinlu, Zhang, Jianhui, Sun, Jinshuang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7312728/
https://www.ncbi.nlm.nih.gov/pubmed/32498411
http://dx.doi.org/10.3390/ijms21113993
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author Li, Shaofeng
Zhang, Yaoxiang
Xin, Xuebing
Ding, Changjun
Lv, Fuling
Mo, Wenjuan
Xia, Yongxiu
Wang, Shaoli
Cai, Jingyan
Sun, Lifang
Du, Manyi
Dong, Chenxi
Gao, Xu
Dai, Xinlu
Zhang, Jianhui
Sun, Jinshuang
author_facet Li, Shaofeng
Zhang, Yaoxiang
Xin, Xuebing
Ding, Changjun
Lv, Fuling
Mo, Wenjuan
Xia, Yongxiu
Wang, Shaoli
Cai, Jingyan
Sun, Lifang
Du, Manyi
Dong, Chenxi
Gao, Xu
Dai, Xinlu
Zhang, Jianhui
Sun, Jinshuang
author_sort Li, Shaofeng
collection PubMed
description Osmotin-like proteins (OLPs) mediate defenses against abiotic and biotic stresses and fungal pathogens in plants. However, no OLPs have been functionally elucidated in poplar. Here, we report an osmotin-like protein designated PdOLP1 from Populus deltoides (Marsh.). Expression analysis showed that PdOLP1 transcripts were mainly present in immature xylem and immature phloem during vascular tissue development in P. deltoides. We conducted phenotypic, anatomical, and molecular analyses of PdOLP1-overexpressing lines and the PdOLP1-downregulated hybrid poplar 84K (Populus alba × Populus glandulosa) (Hybrid poplar 84K PagOLP1, PagOLP2, PagOLP3 and PagOLP4 are highly homologous to PdOLP1, and are downregulated in PdOLP1-downregulated hybrid poplar 84K). The overexpression of PdOLP1 led to a reduction in the radial width and cell layer number in the xylem and phloem zones, in expression of genes involved in lignin biosynthesis, and in the fibers and vessels of xylem cell walls in the overexpressing lines. Additionally, the xylem vessels and fibers of PdOLP1-downregulated poplar exhibited increased secondary cell wall thickness. Elevated expression of secondary wall biosynthetic genes was accompanied by increases in lignin content, dry weight biomass, and carbon storage in PdOLP1-downregulated lines. A PdOLP1 coexpression network was constructed and showed that PdOLP1 was coexpressed with a large number of genes involved in secondary cell wall biosynthesis and wood development in poplar. Moreover, based on transcriptional activation assays, PtobZIP5 and PtobHLH7 activated the PdOLP1 promoter, whereas PtoBLH8 and PtoWRKY40 repressed it. A yeast one-hybrid (Y1H) assay confirmed interaction of PtoBLH8, PtoMYB3, and PtoWRKY40 with the PdOLP1 promoter in vivo. Together, our results suggest that PdOLP1 is a negative regulator of secondary wall biosynthesis and may be valuable for manipulating secondary cell wall deposition to improve carbon fixation efficiency in tree species.
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spelling pubmed-73127282020-06-26 The Osmotin-Like Protein Gene PdOLP1 Is Involved in Secondary Cell Wall Biosynthesis during Wood Formation in Poplar Li, Shaofeng Zhang, Yaoxiang Xin, Xuebing Ding, Changjun Lv, Fuling Mo, Wenjuan Xia, Yongxiu Wang, Shaoli Cai, Jingyan Sun, Lifang Du, Manyi Dong, Chenxi Gao, Xu Dai, Xinlu Zhang, Jianhui Sun, Jinshuang Int J Mol Sci Article Osmotin-like proteins (OLPs) mediate defenses against abiotic and biotic stresses and fungal pathogens in plants. However, no OLPs have been functionally elucidated in poplar. Here, we report an osmotin-like protein designated PdOLP1 from Populus deltoides (Marsh.). Expression analysis showed that PdOLP1 transcripts were mainly present in immature xylem and immature phloem during vascular tissue development in P. deltoides. We conducted phenotypic, anatomical, and molecular analyses of PdOLP1-overexpressing lines and the PdOLP1-downregulated hybrid poplar 84K (Populus alba × Populus glandulosa) (Hybrid poplar 84K PagOLP1, PagOLP2, PagOLP3 and PagOLP4 are highly homologous to PdOLP1, and are downregulated in PdOLP1-downregulated hybrid poplar 84K). The overexpression of PdOLP1 led to a reduction in the radial width and cell layer number in the xylem and phloem zones, in expression of genes involved in lignin biosynthesis, and in the fibers and vessels of xylem cell walls in the overexpressing lines. Additionally, the xylem vessels and fibers of PdOLP1-downregulated poplar exhibited increased secondary cell wall thickness. Elevated expression of secondary wall biosynthetic genes was accompanied by increases in lignin content, dry weight biomass, and carbon storage in PdOLP1-downregulated lines. A PdOLP1 coexpression network was constructed and showed that PdOLP1 was coexpressed with a large number of genes involved in secondary cell wall biosynthesis and wood development in poplar. Moreover, based on transcriptional activation assays, PtobZIP5 and PtobHLH7 activated the PdOLP1 promoter, whereas PtoBLH8 and PtoWRKY40 repressed it. A yeast one-hybrid (Y1H) assay confirmed interaction of PtoBLH8, PtoMYB3, and PtoWRKY40 with the PdOLP1 promoter in vivo. Together, our results suggest that PdOLP1 is a negative regulator of secondary wall biosynthesis and may be valuable for manipulating secondary cell wall deposition to improve carbon fixation efficiency in tree species. MDPI 2020-06-02 /pmc/articles/PMC7312728/ /pubmed/32498411 http://dx.doi.org/10.3390/ijms21113993 Text en © 2020 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Li, Shaofeng
Zhang, Yaoxiang
Xin, Xuebing
Ding, Changjun
Lv, Fuling
Mo, Wenjuan
Xia, Yongxiu
Wang, Shaoli
Cai, Jingyan
Sun, Lifang
Du, Manyi
Dong, Chenxi
Gao, Xu
Dai, Xinlu
Zhang, Jianhui
Sun, Jinshuang
The Osmotin-Like Protein Gene PdOLP1 Is Involved in Secondary Cell Wall Biosynthesis during Wood Formation in Poplar
title The Osmotin-Like Protein Gene PdOLP1 Is Involved in Secondary Cell Wall Biosynthesis during Wood Formation in Poplar
title_full The Osmotin-Like Protein Gene PdOLP1 Is Involved in Secondary Cell Wall Biosynthesis during Wood Formation in Poplar
title_fullStr The Osmotin-Like Protein Gene PdOLP1 Is Involved in Secondary Cell Wall Biosynthesis during Wood Formation in Poplar
title_full_unstemmed The Osmotin-Like Protein Gene PdOLP1 Is Involved in Secondary Cell Wall Biosynthesis during Wood Formation in Poplar
title_short The Osmotin-Like Protein Gene PdOLP1 Is Involved in Secondary Cell Wall Biosynthesis during Wood Formation in Poplar
title_sort osmotin-like protein gene pdolp1 is involved in secondary cell wall biosynthesis during wood formation in poplar
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7312728/
https://www.ncbi.nlm.nih.gov/pubmed/32498411
http://dx.doi.org/10.3390/ijms21113993
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