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The biochemical and molecular investigation of flower color and scent sheds lights on further genetic modification of ornamental traits in Clivia miniata

Clivia miniata is renowned for its evergreen and strap-like leaves, whereas its floral color and scent are lacking diversity. Here, anthocyanin, volatile terpene, and carotenoid metabolisms were integrally investigated in C. miniata flowers. The results showed that pelargonidins and lutein might coo...

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Autores principales: Li, Yueqing, Gao, Ruifang, Zhang, Jia, Wang, Yanan, Kong, Peiru, Lu, Keyu, Adnan,  , Liu, Meng, Ao, Feng, Zhao, Chunli, Wang, Li, Gao, Xiang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9343915/
https://www.ncbi.nlm.nih.gov/pubmed/35929604
http://dx.doi.org/10.1093/hr/uhac114
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author Li, Yueqing
Gao, Ruifang
Zhang, Jia
Wang, Yanan
Kong, Peiru
Lu, Keyu
Adnan,  
Liu, Meng
Ao, Feng
Zhao, Chunli
Wang, Li
Gao, Xiang
author_facet Li, Yueqing
Gao, Ruifang
Zhang, Jia
Wang, Yanan
Kong, Peiru
Lu, Keyu
Adnan,  
Liu, Meng
Ao, Feng
Zhao, Chunli
Wang, Li
Gao, Xiang
author_sort Li, Yueqing
collection PubMed
description Clivia miniata is renowned for its evergreen and strap-like leaves, whereas its floral color and scent are lacking diversity. Here, anthocyanin, volatile terpene, and carotenoid metabolisms were integrally investigated in C. miniata flowers. The results showed that pelargonidins and lutein might cooperate to confer orange or yellow color to C. miniata flowers, but only a trace amount of (+)-limonene was detected. The expression levels of CmF3′H and CmDFR appeared to be responsible for the ratio of cyanidin and pelargonidin derivatives in C. miniata, and the low expression of CmF3′H was responsible for the lack of cyanidins in flowers. Moreover, the CmF3′H promoter could not be activated by CmMYBAs, suggesting that it was controlled by novel regulators. Only two CmTPSs were functional, with CmTPS2 responsible for (+)-limonene synthesis, contributing to the monotonous flower volatile terpenes of C. miniata. CmCCD1a and CmCCD1b were able to cleave carotenoids at the 5,6 (5′,6′), and 9,10 (9′,10′) positions to generate volatile apocarotenoids, whereas the substrates found in low-quantities or specific subcellular localizations of CmCCD1s might constrain volatile apocarotenoid release. Consequently, activating F3′H and introducing novel F3′5′H or versatile TPS may be effective ways to modify the floral color and scent, respectively. Alternatively, modifying the carotenoid flux or CCD1 localization might affect floral color and scent simultaneously. Taking these results together, the present study provides a preliminary deciphering of the genetic constraints underlying flower color and scent development, and proposes possible schemes for further genetic modification of ornamental traits in C. miniata and other plants.
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spelling pubmed-93439152022-08-03 The biochemical and molecular investigation of flower color and scent sheds lights on further genetic modification of ornamental traits in Clivia miniata Li, Yueqing Gao, Ruifang Zhang, Jia Wang, Yanan Kong, Peiru Lu, Keyu Adnan,   Liu, Meng Ao, Feng Zhao, Chunli Wang, Li Gao, Xiang Hortic Res Article Clivia miniata is renowned for its evergreen and strap-like leaves, whereas its floral color and scent are lacking diversity. Here, anthocyanin, volatile terpene, and carotenoid metabolisms were integrally investigated in C. miniata flowers. The results showed that pelargonidins and lutein might cooperate to confer orange or yellow color to C. miniata flowers, but only a trace amount of (+)-limonene was detected. The expression levels of CmF3′H and CmDFR appeared to be responsible for the ratio of cyanidin and pelargonidin derivatives in C. miniata, and the low expression of CmF3′H was responsible for the lack of cyanidins in flowers. Moreover, the CmF3′H promoter could not be activated by CmMYBAs, suggesting that it was controlled by novel regulators. Only two CmTPSs were functional, with CmTPS2 responsible for (+)-limonene synthesis, contributing to the monotonous flower volatile terpenes of C. miniata. CmCCD1a and CmCCD1b were able to cleave carotenoids at the 5,6 (5′,6′), and 9,10 (9′,10′) positions to generate volatile apocarotenoids, whereas the substrates found in low-quantities or specific subcellular localizations of CmCCD1s might constrain volatile apocarotenoid release. Consequently, activating F3′H and introducing novel F3′5′H or versatile TPS may be effective ways to modify the floral color and scent, respectively. Alternatively, modifying the carotenoid flux or CCD1 localization might affect floral color and scent simultaneously. Taking these results together, the present study provides a preliminary deciphering of the genetic constraints underlying flower color and scent development, and proposes possible schemes for further genetic modification of ornamental traits in C. miniata and other plants. Oxford University Press 2022-05-17 /pmc/articles/PMC9343915/ /pubmed/35929604 http://dx.doi.org/10.1093/hr/uhac114 Text en © The Author(s) 2022. Published by Oxford University Press on behalf of Nanjing Agricultural University https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Article
Li, Yueqing
Gao, Ruifang
Zhang, Jia
Wang, Yanan
Kong, Peiru
Lu, Keyu
Adnan,  
Liu, Meng
Ao, Feng
Zhao, Chunli
Wang, Li
Gao, Xiang
The biochemical and molecular investigation of flower color and scent sheds lights on further genetic modification of ornamental traits in Clivia miniata
title The biochemical and molecular investigation of flower color and scent sheds lights on further genetic modification of ornamental traits in Clivia miniata
title_full The biochemical and molecular investigation of flower color and scent sheds lights on further genetic modification of ornamental traits in Clivia miniata
title_fullStr The biochemical and molecular investigation of flower color and scent sheds lights on further genetic modification of ornamental traits in Clivia miniata
title_full_unstemmed The biochemical and molecular investigation of flower color and scent sheds lights on further genetic modification of ornamental traits in Clivia miniata
title_short The biochemical and molecular investigation of flower color and scent sheds lights on further genetic modification of ornamental traits in Clivia miniata
title_sort biochemical and molecular investigation of flower color and scent sheds lights on further genetic modification of ornamental traits in clivia miniata
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9343915/
https://www.ncbi.nlm.nih.gov/pubmed/35929604
http://dx.doi.org/10.1093/hr/uhac114
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