Cargando…

The YABBY Family Transcription Factor AaYABBY5 Directly Targets Cytochrome P450 Monooxygenase (CYP71AV1) and Double-Bond Reductase 2 (DBR2) Involved in Artemisinin Biosynthesis in Artemisia Annua

Artemisinin is an effective antimalarial sesquiterpene lactone synthesized in Artemisia annua. Various transcription factors have been previously reported that can influence the biosynthesis of artemisinin; however, the effect of YABBY family transcription factors on artemisinin biosynthesis was unk...

Descripción completa

Detalles Bibliográficos
Autores principales: Kayani, Sadaf-Ilyas, Shen, Qian, Ma, Yanan, Fu, Xueqing, Xie, Lihui, Zhong, Yijun, Tiantian, Chen, Pan, Qifang, Li, Ling, Rahman, Saeed-ur, Sun, Xiaofen, Tang, Kexuan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6746943/
https://www.ncbi.nlm.nih.gov/pubmed/31552076
http://dx.doi.org/10.3389/fpls.2019.01084
_version_ 1783451787079974912
author Kayani, Sadaf-Ilyas
Shen, Qian
Ma, Yanan
Fu, Xueqing
Xie, Lihui
Zhong, Yijun
Tiantian, Chen
Pan, Qifang
Li, Ling
Rahman, Saeed-ur
Sun, Xiaofen
Tang, Kexuan
author_facet Kayani, Sadaf-Ilyas
Shen, Qian
Ma, Yanan
Fu, Xueqing
Xie, Lihui
Zhong, Yijun
Tiantian, Chen
Pan, Qifang
Li, Ling
Rahman, Saeed-ur
Sun, Xiaofen
Tang, Kexuan
author_sort Kayani, Sadaf-Ilyas
collection PubMed
description Artemisinin is an effective antimalarial sesquiterpene lactone synthesized in Artemisia annua. Various transcription factors have been previously reported that can influence the biosynthesis of artemisinin; however, the effect of YABBY family transcription factors on artemisinin biosynthesis was unknown. In the present study, we cloned and characterized AaYABBY5: a homolog of MsYABBY5 in Mentha spicata which is involved in modulating the monoterpenes, as a positive regulator of artemisinin biosynthesis in A. annua. AaYABBY5 was found localized to the nucleus, and its expression was found to be induced by exogenous methyl jasmonic acid (MeJA) treatment. In the dual-luciferase reporter assay, it was found that AaYABBY5 significantly increased the activities of promoters of amorpha-4,11-diene synthase (ADS), cytochrome P450 monooxygenase (CYP71AV1), double-bond reductase 2 (DBR2), and aldehyde dehydrogenase 1 (ALDH1) genes. Yeast one hybrid assay showed that AaYABBY5 directly bonds to the promoters of CYP71AV1 and DBR2 genes. Quantitative real-time polymerase chain reaction (qPCR) of AaYABBY5 overexpression and AaYABBY5 antisense plants revealed a significant increase in the expression of ADS, CYP71AV1, DBR2, and ALDH1 in AaYABBY5 overexpression plants and a significant decrease in the expression of these genes in AaYABBY5 antisense A. annua, respectively. Furthermore, the results of high-performance liquid chromatography (HPLC) showed that the artemisinin and its precursor dihydroartemisinic acid were significantly increased in the AaYABBY5 overexpression plants while AaYABBY5 downregulation resulted in a significant decrease in the concentration of artemisinin. Taken together, these results explicitly represent that AaYABBY5 is a positive regulator of artemisinin biosynthesis in A. annua.
format Online
Article
Text
id pubmed-6746943
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-67469432019-09-24 The YABBY Family Transcription Factor AaYABBY5 Directly Targets Cytochrome P450 Monooxygenase (CYP71AV1) and Double-Bond Reductase 2 (DBR2) Involved in Artemisinin Biosynthesis in Artemisia Annua Kayani, Sadaf-Ilyas Shen, Qian Ma, Yanan Fu, Xueqing Xie, Lihui Zhong, Yijun Tiantian, Chen Pan, Qifang Li, Ling Rahman, Saeed-ur Sun, Xiaofen Tang, Kexuan Front Plant Sci Plant Science Artemisinin is an effective antimalarial sesquiterpene lactone synthesized in Artemisia annua. Various transcription factors have been previously reported that can influence the biosynthesis of artemisinin; however, the effect of YABBY family transcription factors on artemisinin biosynthesis was unknown. In the present study, we cloned and characterized AaYABBY5: a homolog of MsYABBY5 in Mentha spicata which is involved in modulating the monoterpenes, as a positive regulator of artemisinin biosynthesis in A. annua. AaYABBY5 was found localized to the nucleus, and its expression was found to be induced by exogenous methyl jasmonic acid (MeJA) treatment. In the dual-luciferase reporter assay, it was found that AaYABBY5 significantly increased the activities of promoters of amorpha-4,11-diene synthase (ADS), cytochrome P450 monooxygenase (CYP71AV1), double-bond reductase 2 (DBR2), and aldehyde dehydrogenase 1 (ALDH1) genes. Yeast one hybrid assay showed that AaYABBY5 directly bonds to the promoters of CYP71AV1 and DBR2 genes. Quantitative real-time polymerase chain reaction (qPCR) of AaYABBY5 overexpression and AaYABBY5 antisense plants revealed a significant increase in the expression of ADS, CYP71AV1, DBR2, and ALDH1 in AaYABBY5 overexpression plants and a significant decrease in the expression of these genes in AaYABBY5 antisense A. annua, respectively. Furthermore, the results of high-performance liquid chromatography (HPLC) showed that the artemisinin and its precursor dihydroartemisinic acid were significantly increased in the AaYABBY5 overexpression plants while AaYABBY5 downregulation resulted in a significant decrease in the concentration of artemisinin. Taken together, these results explicitly represent that AaYABBY5 is a positive regulator of artemisinin biosynthesis in A. annua. Frontiers Media S.A. 2019-09-10 /pmc/articles/PMC6746943/ /pubmed/31552076 http://dx.doi.org/10.3389/fpls.2019.01084 Text en Copyright © 2019 Kayani, Shen, Ma, Fu, Xie, Zhong, Tiantian, Pan, Li, Rahman, Sun and Tang http://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
Kayani, Sadaf-Ilyas
Shen, Qian
Ma, Yanan
Fu, Xueqing
Xie, Lihui
Zhong, Yijun
Tiantian, Chen
Pan, Qifang
Li, Ling
Rahman, Saeed-ur
Sun, Xiaofen
Tang, Kexuan
The YABBY Family Transcription Factor AaYABBY5 Directly Targets Cytochrome P450 Monooxygenase (CYP71AV1) and Double-Bond Reductase 2 (DBR2) Involved in Artemisinin Biosynthesis in Artemisia Annua
title The YABBY Family Transcription Factor AaYABBY5 Directly Targets Cytochrome P450 Monooxygenase (CYP71AV1) and Double-Bond Reductase 2 (DBR2) Involved in Artemisinin Biosynthesis in Artemisia Annua
title_full The YABBY Family Transcription Factor AaYABBY5 Directly Targets Cytochrome P450 Monooxygenase (CYP71AV1) and Double-Bond Reductase 2 (DBR2) Involved in Artemisinin Biosynthesis in Artemisia Annua
title_fullStr The YABBY Family Transcription Factor AaYABBY5 Directly Targets Cytochrome P450 Monooxygenase (CYP71AV1) and Double-Bond Reductase 2 (DBR2) Involved in Artemisinin Biosynthesis in Artemisia Annua
title_full_unstemmed The YABBY Family Transcription Factor AaYABBY5 Directly Targets Cytochrome P450 Monooxygenase (CYP71AV1) and Double-Bond Reductase 2 (DBR2) Involved in Artemisinin Biosynthesis in Artemisia Annua
title_short The YABBY Family Transcription Factor AaYABBY5 Directly Targets Cytochrome P450 Monooxygenase (CYP71AV1) and Double-Bond Reductase 2 (DBR2) Involved in Artemisinin Biosynthesis in Artemisia Annua
title_sort yabby family transcription factor aayabby5 directly targets cytochrome p450 monooxygenase (cyp71av1) and double-bond reductase 2 (dbr2) involved in artemisinin biosynthesis in artemisia annua
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6746943/
https://www.ncbi.nlm.nih.gov/pubmed/31552076
http://dx.doi.org/10.3389/fpls.2019.01084
work_keys_str_mv AT kayanisadafilyas theyabbyfamilytranscriptionfactoraayabby5directlytargetscytochromep450monooxygenasecyp71av1anddoublebondreductase2dbr2involvedinartemisininbiosynthesisinartemisiaannua
AT shenqian theyabbyfamilytranscriptionfactoraayabby5directlytargetscytochromep450monooxygenasecyp71av1anddoublebondreductase2dbr2involvedinartemisininbiosynthesisinartemisiaannua
AT mayanan theyabbyfamilytranscriptionfactoraayabby5directlytargetscytochromep450monooxygenasecyp71av1anddoublebondreductase2dbr2involvedinartemisininbiosynthesisinartemisiaannua
AT fuxueqing theyabbyfamilytranscriptionfactoraayabby5directlytargetscytochromep450monooxygenasecyp71av1anddoublebondreductase2dbr2involvedinartemisininbiosynthesisinartemisiaannua
AT xielihui theyabbyfamilytranscriptionfactoraayabby5directlytargetscytochromep450monooxygenasecyp71av1anddoublebondreductase2dbr2involvedinartemisininbiosynthesisinartemisiaannua
AT zhongyijun theyabbyfamilytranscriptionfactoraayabby5directlytargetscytochromep450monooxygenasecyp71av1anddoublebondreductase2dbr2involvedinartemisininbiosynthesisinartemisiaannua
AT tiantianchen theyabbyfamilytranscriptionfactoraayabby5directlytargetscytochromep450monooxygenasecyp71av1anddoublebondreductase2dbr2involvedinartemisininbiosynthesisinartemisiaannua
AT panqifang theyabbyfamilytranscriptionfactoraayabby5directlytargetscytochromep450monooxygenasecyp71av1anddoublebondreductase2dbr2involvedinartemisininbiosynthesisinartemisiaannua
AT liling theyabbyfamilytranscriptionfactoraayabby5directlytargetscytochromep450monooxygenasecyp71av1anddoublebondreductase2dbr2involvedinartemisininbiosynthesisinartemisiaannua
AT rahmansaeedur theyabbyfamilytranscriptionfactoraayabby5directlytargetscytochromep450monooxygenasecyp71av1anddoublebondreductase2dbr2involvedinartemisininbiosynthesisinartemisiaannua
AT sunxiaofen theyabbyfamilytranscriptionfactoraayabby5directlytargetscytochromep450monooxygenasecyp71av1anddoublebondreductase2dbr2involvedinartemisininbiosynthesisinartemisiaannua
AT tangkexuan theyabbyfamilytranscriptionfactoraayabby5directlytargetscytochromep450monooxygenasecyp71av1anddoublebondreductase2dbr2involvedinartemisininbiosynthesisinartemisiaannua
AT kayanisadafilyas yabbyfamilytranscriptionfactoraayabby5directlytargetscytochromep450monooxygenasecyp71av1anddoublebondreductase2dbr2involvedinartemisininbiosynthesisinartemisiaannua
AT shenqian yabbyfamilytranscriptionfactoraayabby5directlytargetscytochromep450monooxygenasecyp71av1anddoublebondreductase2dbr2involvedinartemisininbiosynthesisinartemisiaannua
AT mayanan yabbyfamilytranscriptionfactoraayabby5directlytargetscytochromep450monooxygenasecyp71av1anddoublebondreductase2dbr2involvedinartemisininbiosynthesisinartemisiaannua
AT fuxueqing yabbyfamilytranscriptionfactoraayabby5directlytargetscytochromep450monooxygenasecyp71av1anddoublebondreductase2dbr2involvedinartemisininbiosynthesisinartemisiaannua
AT xielihui yabbyfamilytranscriptionfactoraayabby5directlytargetscytochromep450monooxygenasecyp71av1anddoublebondreductase2dbr2involvedinartemisininbiosynthesisinartemisiaannua
AT zhongyijun yabbyfamilytranscriptionfactoraayabby5directlytargetscytochromep450monooxygenasecyp71av1anddoublebondreductase2dbr2involvedinartemisininbiosynthesisinartemisiaannua
AT tiantianchen yabbyfamilytranscriptionfactoraayabby5directlytargetscytochromep450monooxygenasecyp71av1anddoublebondreductase2dbr2involvedinartemisininbiosynthesisinartemisiaannua
AT panqifang yabbyfamilytranscriptionfactoraayabby5directlytargetscytochromep450monooxygenasecyp71av1anddoublebondreductase2dbr2involvedinartemisininbiosynthesisinartemisiaannua
AT liling yabbyfamilytranscriptionfactoraayabby5directlytargetscytochromep450monooxygenasecyp71av1anddoublebondreductase2dbr2involvedinartemisininbiosynthesisinartemisiaannua
AT rahmansaeedur yabbyfamilytranscriptionfactoraayabby5directlytargetscytochromep450monooxygenasecyp71av1anddoublebondreductase2dbr2involvedinartemisininbiosynthesisinartemisiaannua
AT sunxiaofen yabbyfamilytranscriptionfactoraayabby5directlytargetscytochromep450monooxygenasecyp71av1anddoublebondreductase2dbr2involvedinartemisininbiosynthesisinartemisiaannua
AT tangkexuan yabbyfamilytranscriptionfactoraayabby5directlytargetscytochromep450monooxygenasecyp71av1anddoublebondreductase2dbr2involvedinartemisininbiosynthesisinartemisiaannua