Cargando…

The non-specific lipid transfer protein McLTPII.9 of Mentha canadensis is involved in peltate glandular trichome density and volatile compound metabolism

Mentha canadensis L. is an important spice crop and medicinal herb with high economic value. The plant is covered with peltate glandular trichomes, which are responsible for the biosynthesis and secretion of volatile oils. Plant non-specific lipid transfer proteins (nsLTPs) belong to a complex multi...

Descripción completa

Detalles Bibliográficos
Autores principales: Chen, Qiutong, Li, Li, Qi, Xiwu, Fang, Hailing, Yu, Xu, Bai, Yang, Chen, Zequn, Liu, Qun, Liu, Dongmei, Liang, Chengyuan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10264783/
https://www.ncbi.nlm.nih.gov/pubmed/37324667
http://dx.doi.org/10.3389/fpls.2023.1188922
_version_ 1785058399974588416
author Chen, Qiutong
Li, Li
Qi, Xiwu
Fang, Hailing
Yu, Xu
Bai, Yang
Chen, Zequn
Liu, Qun
Liu, Dongmei
Liang, Chengyuan
author_facet Chen, Qiutong
Li, Li
Qi, Xiwu
Fang, Hailing
Yu, Xu
Bai, Yang
Chen, Zequn
Liu, Qun
Liu, Dongmei
Liang, Chengyuan
author_sort Chen, Qiutong
collection PubMed
description Mentha canadensis L. is an important spice crop and medicinal herb with high economic value. The plant is covered with peltate glandular trichomes, which are responsible for the biosynthesis and secretion of volatile oils. Plant non-specific lipid transfer proteins (nsLTPs) belong to a complex multigenic family involved in various plant physiological processes. Here, we cloned and identified a non-specific lipid transfer protein gene (McLTPII.9) from M. canadensis, which may positively regulate peltate glandular trichome density and monoterpene metabolism. McLTPII.9 was expressed in most M. canadensis tissues. The GUS signal driven by the McLTPII.9 promoter in transgenic Nicotiana tabacum was observed in stems, leaves, and roots; it was also expressed in trichomes. McLTPII.9 was associated with the plasma membrane. Overexpression of McLTPII.9 in peppermint (Mentha piperita. L) significantly increased the peltate glandular trichome density and total volatile compound content compared with wild-type peppermint; it also altered the volatile oil composition. In McLTPII.9-overexpressing (OE) peppermint, the expression levels of several monoterpenoid synthase genes and glandular trichome development-related transcription factors—such as limonene synthase (LS), limonene-3-hydroxylase (L3OH), geranyl diphosphate synthase (GPPS), HD-ZIP3, and MIXTA—exhibited varying degrees of alteration. McLTPII.9 overexpression resulted in both a change in expression of genes for terpenoid biosynthetic pathways which corresponded with an altered terpenoid profile in OE plants. In addition, peltate glandular trichome density was altered in the OE plants as well as the expression of genes for transcription factors that were shown to be involved in trichome development in plants.
format Online
Article
Text
id pubmed-10264783
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-102647832023-06-15 The non-specific lipid transfer protein McLTPII.9 of Mentha canadensis is involved in peltate glandular trichome density and volatile compound metabolism Chen, Qiutong Li, Li Qi, Xiwu Fang, Hailing Yu, Xu Bai, Yang Chen, Zequn Liu, Qun Liu, Dongmei Liang, Chengyuan Front Plant Sci Plant Science Mentha canadensis L. is an important spice crop and medicinal herb with high economic value. The plant is covered with peltate glandular trichomes, which are responsible for the biosynthesis and secretion of volatile oils. Plant non-specific lipid transfer proteins (nsLTPs) belong to a complex multigenic family involved in various plant physiological processes. Here, we cloned and identified a non-specific lipid transfer protein gene (McLTPII.9) from M. canadensis, which may positively regulate peltate glandular trichome density and monoterpene metabolism. McLTPII.9 was expressed in most M. canadensis tissues. The GUS signal driven by the McLTPII.9 promoter in transgenic Nicotiana tabacum was observed in stems, leaves, and roots; it was also expressed in trichomes. McLTPII.9 was associated with the plasma membrane. Overexpression of McLTPII.9 in peppermint (Mentha piperita. L) significantly increased the peltate glandular trichome density and total volatile compound content compared with wild-type peppermint; it also altered the volatile oil composition. In McLTPII.9-overexpressing (OE) peppermint, the expression levels of several monoterpenoid synthase genes and glandular trichome development-related transcription factors—such as limonene synthase (LS), limonene-3-hydroxylase (L3OH), geranyl diphosphate synthase (GPPS), HD-ZIP3, and MIXTA—exhibited varying degrees of alteration. McLTPII.9 overexpression resulted in both a change in expression of genes for terpenoid biosynthetic pathways which corresponded with an altered terpenoid profile in OE plants. In addition, peltate glandular trichome density was altered in the OE plants as well as the expression of genes for transcription factors that were shown to be involved in trichome development in plants. Frontiers Media S.A. 2023-05-31 /pmc/articles/PMC10264783/ /pubmed/37324667 http://dx.doi.org/10.3389/fpls.2023.1188922 Text en Copyright © 2023 Chen, Li, Qi, Fang, Yu, Bai, Chen, Liu, Liu and Liang 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
Chen, Qiutong
Li, Li
Qi, Xiwu
Fang, Hailing
Yu, Xu
Bai, Yang
Chen, Zequn
Liu, Qun
Liu, Dongmei
Liang, Chengyuan
The non-specific lipid transfer protein McLTPII.9 of Mentha canadensis is involved in peltate glandular trichome density and volatile compound metabolism
title The non-specific lipid transfer protein McLTPII.9 of Mentha canadensis is involved in peltate glandular trichome density and volatile compound metabolism
title_full The non-specific lipid transfer protein McLTPII.9 of Mentha canadensis is involved in peltate glandular trichome density and volatile compound metabolism
title_fullStr The non-specific lipid transfer protein McLTPII.9 of Mentha canadensis is involved in peltate glandular trichome density and volatile compound metabolism
title_full_unstemmed The non-specific lipid transfer protein McLTPII.9 of Mentha canadensis is involved in peltate glandular trichome density and volatile compound metabolism
title_short The non-specific lipid transfer protein McLTPII.9 of Mentha canadensis is involved in peltate glandular trichome density and volatile compound metabolism
title_sort non-specific lipid transfer protein mcltpii.9 of mentha canadensis is involved in peltate glandular trichome density and volatile compound metabolism
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10264783/
https://www.ncbi.nlm.nih.gov/pubmed/37324667
http://dx.doi.org/10.3389/fpls.2023.1188922
work_keys_str_mv AT chenqiutong thenonspecificlipidtransferproteinmcltpii9ofmenthacanadensisisinvolvedinpeltateglandulartrichomedensityandvolatilecompoundmetabolism
AT lili thenonspecificlipidtransferproteinmcltpii9ofmenthacanadensisisinvolvedinpeltateglandulartrichomedensityandvolatilecompoundmetabolism
AT qixiwu thenonspecificlipidtransferproteinmcltpii9ofmenthacanadensisisinvolvedinpeltateglandulartrichomedensityandvolatilecompoundmetabolism
AT fanghailing thenonspecificlipidtransferproteinmcltpii9ofmenthacanadensisisinvolvedinpeltateglandulartrichomedensityandvolatilecompoundmetabolism
AT yuxu thenonspecificlipidtransferproteinmcltpii9ofmenthacanadensisisinvolvedinpeltateglandulartrichomedensityandvolatilecompoundmetabolism
AT baiyang thenonspecificlipidtransferproteinmcltpii9ofmenthacanadensisisinvolvedinpeltateglandulartrichomedensityandvolatilecompoundmetabolism
AT chenzequn thenonspecificlipidtransferproteinmcltpii9ofmenthacanadensisisinvolvedinpeltateglandulartrichomedensityandvolatilecompoundmetabolism
AT liuqun thenonspecificlipidtransferproteinmcltpii9ofmenthacanadensisisinvolvedinpeltateglandulartrichomedensityandvolatilecompoundmetabolism
AT liudongmei thenonspecificlipidtransferproteinmcltpii9ofmenthacanadensisisinvolvedinpeltateglandulartrichomedensityandvolatilecompoundmetabolism
AT liangchengyuan thenonspecificlipidtransferproteinmcltpii9ofmenthacanadensisisinvolvedinpeltateglandulartrichomedensityandvolatilecompoundmetabolism
AT chenqiutong nonspecificlipidtransferproteinmcltpii9ofmenthacanadensisisinvolvedinpeltateglandulartrichomedensityandvolatilecompoundmetabolism
AT lili nonspecificlipidtransferproteinmcltpii9ofmenthacanadensisisinvolvedinpeltateglandulartrichomedensityandvolatilecompoundmetabolism
AT qixiwu nonspecificlipidtransferproteinmcltpii9ofmenthacanadensisisinvolvedinpeltateglandulartrichomedensityandvolatilecompoundmetabolism
AT fanghailing nonspecificlipidtransferproteinmcltpii9ofmenthacanadensisisinvolvedinpeltateglandulartrichomedensityandvolatilecompoundmetabolism
AT yuxu nonspecificlipidtransferproteinmcltpii9ofmenthacanadensisisinvolvedinpeltateglandulartrichomedensityandvolatilecompoundmetabolism
AT baiyang nonspecificlipidtransferproteinmcltpii9ofmenthacanadensisisinvolvedinpeltateglandulartrichomedensityandvolatilecompoundmetabolism
AT chenzequn nonspecificlipidtransferproteinmcltpii9ofmenthacanadensisisinvolvedinpeltateglandulartrichomedensityandvolatilecompoundmetabolism
AT liuqun nonspecificlipidtransferproteinmcltpii9ofmenthacanadensisisinvolvedinpeltateglandulartrichomedensityandvolatilecompoundmetabolism
AT liudongmei nonspecificlipidtransferproteinmcltpii9ofmenthacanadensisisinvolvedinpeltateglandulartrichomedensityandvolatilecompoundmetabolism
AT liangchengyuan nonspecificlipidtransferproteinmcltpii9ofmenthacanadensisisinvolvedinpeltateglandulartrichomedensityandvolatilecompoundmetabolism