Elucidation of the core betalain biosynthesis pathway in Amaranthus tricolor
Abstract Amaranthus tricolor L., a vegetable Amaranthus species, is an economically important crop containing large amounts of betalains. Betalains are natural antioxidants and can be classified into betacyanins and betaxanthins, with red and yellow colors, respectively. A. tricolor cultivars with v...
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Online Access: | https://doi.org/10.1038/s41598-021-85486-x |
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doaj-22ee6cd1cb8145f39d72c1ef3a0b12612021-03-21T12:32:45ZengNature Publishing GroupScientific Reports2045-23222021-03-0111111310.1038/s41598-021-85486-xElucidation of the core betalain biosynthesis pathway in Amaranthus tricolorYu-Cheng Chang0Yi-Ching Chiu1Nai-Wen Tsao2Yuan-Lin Chou3Choon-Meng Tan4Yi-Hsuan Chiang5Pei-Chi Liao6Ya-Chien Lee7Li-Ching Hsieh8Sheng-Yang Wang9Jun-Yi Yang10Institute of Biochemistry, National Chung Hsing UniversityInstitute of Biochemistry, National Chung Hsing UniversityDepartment of Forestry, National Chung Hsing UniversityInstitute of Biochemistry, National Chung Hsing UniversityInstitute of Biochemistry, National Chung Hsing UniversityInstitute of Biochemistry, National Chung Hsing UniversityInstitute of Biochemistry, National Chung Hsing UniversityInstitute of Biochemistry, National Chung Hsing UniversityInstitute of Genomics and Bioinformatics, National Chung Hsing UniversityDepartment of Forestry, National Chung Hsing UniversityInstitute of Biochemistry, National Chung Hsing UniversityAbstract Amaranthus tricolor L., a vegetable Amaranthus species, is an economically important crop containing large amounts of betalains. Betalains are natural antioxidants and can be classified into betacyanins and betaxanthins, with red and yellow colors, respectively. A. tricolor cultivars with varying betalain contents, leading to striking red to green coloration, have been commercially produced. However, the molecular differences underlying betalain biosynthesis in various cultivars of A. tricolor remain largely unknown. In this study, A. tricolor cultivars with different colors were chosen for comparative transcriptome analysis. The elevated expression of AmCYP76AD1 in a red-leaf cultivar of A. tricolor was proposed to play a key role in producing red betalain pigments. The functions of AmCYP76AD1, AmDODAα1, AmDODAα2, and AmcDOPA5GT were also characterized through the heterologous engineering of betalain pigments in Nicotiana benthamiana. Moreover, high and low L-DOPA 4,5-dioxygenase activities of AmDODAα1 and AmDODAα2, respectively, were confirmed through in vitro enzymatic assays. Thus, comparative transcriptome analysis combined with functional and enzymatic studies allowed the construction of a core betalain biosynthesis pathway of A. tricolor. These results not only provide novel insights into betalain biosynthesis and evolution in A. tricolor but also provide a basal framework for examining genes related to betalain biosynthesis among different species of Amaranthaceae.https://doi.org/10.1038/s41598-021-85486-x |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Yu-Cheng Chang Yi-Ching Chiu Nai-Wen Tsao Yuan-Lin Chou Choon-Meng Tan Yi-Hsuan Chiang Pei-Chi Liao Ya-Chien Lee Li-Ching Hsieh Sheng-Yang Wang Jun-Yi Yang |
spellingShingle |
Yu-Cheng Chang Yi-Ching Chiu Nai-Wen Tsao Yuan-Lin Chou Choon-Meng Tan Yi-Hsuan Chiang Pei-Chi Liao Ya-Chien Lee Li-Ching Hsieh Sheng-Yang Wang Jun-Yi Yang Elucidation of the core betalain biosynthesis pathway in Amaranthus tricolor Scientific Reports |
author_facet |
Yu-Cheng Chang Yi-Ching Chiu Nai-Wen Tsao Yuan-Lin Chou Choon-Meng Tan Yi-Hsuan Chiang Pei-Chi Liao Ya-Chien Lee Li-Ching Hsieh Sheng-Yang Wang Jun-Yi Yang |
author_sort |
Yu-Cheng Chang |
title |
Elucidation of the core betalain biosynthesis pathway in Amaranthus tricolor |
title_short |
Elucidation of the core betalain biosynthesis pathway in Amaranthus tricolor |
title_full |
Elucidation of the core betalain biosynthesis pathway in Amaranthus tricolor |
title_fullStr |
Elucidation of the core betalain biosynthesis pathway in Amaranthus tricolor |
title_full_unstemmed |
Elucidation of the core betalain biosynthesis pathway in Amaranthus tricolor |
title_sort |
elucidation of the core betalain biosynthesis pathway in amaranthus tricolor |
publisher |
Nature Publishing Group |
series |
Scientific Reports |
issn |
2045-2322 |
publishDate |
2021-03-01 |
description |
Abstract Amaranthus tricolor L., a vegetable Amaranthus species, is an economically important crop containing large amounts of betalains. Betalains are natural antioxidants and can be classified into betacyanins and betaxanthins, with red and yellow colors, respectively. A. tricolor cultivars with varying betalain contents, leading to striking red to green coloration, have been commercially produced. However, the molecular differences underlying betalain biosynthesis in various cultivars of A. tricolor remain largely unknown. In this study, A. tricolor cultivars with different colors were chosen for comparative transcriptome analysis. The elevated expression of AmCYP76AD1 in a red-leaf cultivar of A. tricolor was proposed to play a key role in producing red betalain pigments. The functions of AmCYP76AD1, AmDODAα1, AmDODAα2, and AmcDOPA5GT were also characterized through the heterologous engineering of betalain pigments in Nicotiana benthamiana. Moreover, high and low L-DOPA 4,5-dioxygenase activities of AmDODAα1 and AmDODAα2, respectively, were confirmed through in vitro enzymatic assays. Thus, comparative transcriptome analysis combined with functional and enzymatic studies allowed the construction of a core betalain biosynthesis pathway of A. tricolor. These results not only provide novel insights into betalain biosynthesis and evolution in A. tricolor but also provide a basal framework for examining genes related to betalain biosynthesis among different species of Amaranthaceae. |
url |
https://doi.org/10.1038/s41598-021-85486-x |
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