Cargando…

Involvement of PtPHR1 in phosphates starvation-induced alkaloid biosynthesis in Pinellia ternata (Thunb.) Breit

Nowadays, because of the great benefit to human health, more and more efforts have been made to increase the production of alkaloids in Pinellia ternata (Thunb.) Breit. Phosphate (Pi) plays a critical role in plant growth and development, as well as secondary metabolism. However, its effect and regu...

Descripción completa

Detalles Bibliográficos
Autores principales: Wang, Huihui, Hu, Jitao, Li, Linying, Zhang, Xueying, Zhang, Hao, Liang, Zongsuo, Sheng, Qing, He, Yuqing, Hong, Gaojie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9400802/
https://www.ncbi.nlm.nih.gov/pubmed/36035724
http://dx.doi.org/10.3389/fpls.2022.914648
_version_ 1784772821825617920
author Wang, Huihui
Hu, Jitao
Li, Linying
Zhang, Xueying
Zhang, Hao
Liang, Zongsuo
Sheng, Qing
He, Yuqing
Hong, Gaojie
author_facet Wang, Huihui
Hu, Jitao
Li, Linying
Zhang, Xueying
Zhang, Hao
Liang, Zongsuo
Sheng, Qing
He, Yuqing
Hong, Gaojie
author_sort Wang, Huihui
collection PubMed
description Nowadays, because of the great benefit to human health, more and more efforts have been made to increase the production of alkaloids in Pinellia ternata (Thunb.) Breit. Phosphate (Pi) plays a critical role in plant growth and development, as well as secondary metabolism. However, its effect and regulation mechanism of Pi signaling on alkaloid biosynthesis call for further exploration. Here, we reported that Pi starvation could induce alkaloid accumulation in P. ternata. We cloned a cDNA sequence encoding PtPHR1 from P. ternata, which was further identified by nuclear localization, transcription activity, and binding ability to the PHR1-binding sequence. We found that the transformation of PtPHR1 into the Arabidopsis phr1 mutant (designated as PtPHR1OE/phr1) led to the rescue of the phenotype of the phr1 mutant to that of the wild-type, including the expression level of Pi starvation-induced genes and anthocyanin accumulation. The combination of these biochemical and genetic experiments indicated that PtPHR1 was intended to have a role similar to that of AtPHR1 in Pi signaling and metabolic responses. Interestingly, we found that Pi starvation also induced the production of benzoic acid, an intermediate in the biosynthetic pathway of phenylpropylamino alkaloids. Furthermore, this induction effect was impaired in the phr1 mutant but partly recovered in PtPHR1OE/phr1 plants. Together, our data suggest that Pi starvation promoted benzoic acid-derived alkaloid biosynthesis in P. ternata under the control of PtPHR1. Our finding that PtPHR1 is involved in the regulation of Pi signaling on alkaloid biosynthesis shows a direct link between the Pi nutrient supply and secondary metabolism.
format Online
Article
Text
id pubmed-9400802
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-94008022022-08-25 Involvement of PtPHR1 in phosphates starvation-induced alkaloid biosynthesis in Pinellia ternata (Thunb.) Breit Wang, Huihui Hu, Jitao Li, Linying Zhang, Xueying Zhang, Hao Liang, Zongsuo Sheng, Qing He, Yuqing Hong, Gaojie Front Plant Sci Plant Science Nowadays, because of the great benefit to human health, more and more efforts have been made to increase the production of alkaloids in Pinellia ternata (Thunb.) Breit. Phosphate (Pi) plays a critical role in plant growth and development, as well as secondary metabolism. However, its effect and regulation mechanism of Pi signaling on alkaloid biosynthesis call for further exploration. Here, we reported that Pi starvation could induce alkaloid accumulation in P. ternata. We cloned a cDNA sequence encoding PtPHR1 from P. ternata, which was further identified by nuclear localization, transcription activity, and binding ability to the PHR1-binding sequence. We found that the transformation of PtPHR1 into the Arabidopsis phr1 mutant (designated as PtPHR1OE/phr1) led to the rescue of the phenotype of the phr1 mutant to that of the wild-type, including the expression level of Pi starvation-induced genes and anthocyanin accumulation. The combination of these biochemical and genetic experiments indicated that PtPHR1 was intended to have a role similar to that of AtPHR1 in Pi signaling and metabolic responses. Interestingly, we found that Pi starvation also induced the production of benzoic acid, an intermediate in the biosynthetic pathway of phenylpropylamino alkaloids. Furthermore, this induction effect was impaired in the phr1 mutant but partly recovered in PtPHR1OE/phr1 plants. Together, our data suggest that Pi starvation promoted benzoic acid-derived alkaloid biosynthesis in P. ternata under the control of PtPHR1. Our finding that PtPHR1 is involved in the regulation of Pi signaling on alkaloid biosynthesis shows a direct link between the Pi nutrient supply and secondary metabolism. Frontiers Media S.A. 2022-08-10 /pmc/articles/PMC9400802/ /pubmed/36035724 http://dx.doi.org/10.3389/fpls.2022.914648 Text en Copyright © 2022 Wang, Hu, Li, Zhang, Zhang, Liang, Sheng, He and Hong. 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
Wang, Huihui
Hu, Jitao
Li, Linying
Zhang, Xueying
Zhang, Hao
Liang, Zongsuo
Sheng, Qing
He, Yuqing
Hong, Gaojie
Involvement of PtPHR1 in phosphates starvation-induced alkaloid biosynthesis in Pinellia ternata (Thunb.) Breit
title Involvement of PtPHR1 in phosphates starvation-induced alkaloid biosynthesis in Pinellia ternata (Thunb.) Breit
title_full Involvement of PtPHR1 in phosphates starvation-induced alkaloid biosynthesis in Pinellia ternata (Thunb.) Breit
title_fullStr Involvement of PtPHR1 in phosphates starvation-induced alkaloid biosynthesis in Pinellia ternata (Thunb.) Breit
title_full_unstemmed Involvement of PtPHR1 in phosphates starvation-induced alkaloid biosynthesis in Pinellia ternata (Thunb.) Breit
title_short Involvement of PtPHR1 in phosphates starvation-induced alkaloid biosynthesis in Pinellia ternata (Thunb.) Breit
title_sort involvement of ptphr1 in phosphates starvation-induced alkaloid biosynthesis in pinellia ternata (thunb.) breit
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9400802/
https://www.ncbi.nlm.nih.gov/pubmed/36035724
http://dx.doi.org/10.3389/fpls.2022.914648
work_keys_str_mv AT wanghuihui involvementofptphr1inphosphatesstarvationinducedalkaloidbiosynthesisinpinelliaternatathunbbreit
AT hujitao involvementofptphr1inphosphatesstarvationinducedalkaloidbiosynthesisinpinelliaternatathunbbreit
AT lilinying involvementofptphr1inphosphatesstarvationinducedalkaloidbiosynthesisinpinelliaternatathunbbreit
AT zhangxueying involvementofptphr1inphosphatesstarvationinducedalkaloidbiosynthesisinpinelliaternatathunbbreit
AT zhanghao involvementofptphr1inphosphatesstarvationinducedalkaloidbiosynthesisinpinelliaternatathunbbreit
AT liangzongsuo involvementofptphr1inphosphatesstarvationinducedalkaloidbiosynthesisinpinelliaternatathunbbreit
AT shengqing involvementofptphr1inphosphatesstarvationinducedalkaloidbiosynthesisinpinelliaternatathunbbreit
AT heyuqing involvementofptphr1inphosphatesstarvationinducedalkaloidbiosynthesisinpinelliaternatathunbbreit
AT honggaojie involvementofptphr1inphosphatesstarvationinducedalkaloidbiosynthesisinpinelliaternatathunbbreit