Identification and quantitative determination of feruloyl-glucoside from hairy root cultures of "Turbinicarpus lophophoroides" (Werderm.) Buxb. & Backeb. (Cactaceae)
Transformed hairy root cultures have become an alternative for the biosynthesis of plant secondary metabolites with biological activities. In this present work, the effects of liquid Murashige and Skoog (MS) and Gamborg B5 (B5) medium on kinetic behavior, biomass and phenolic metabolite production w...
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Published in: | In vitro cellular & developmental biology. Plant Vol. 56; no. 1; pp. 8 - 17 |
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Abstract | Transformed hairy root cultures have become an alternative for the biosynthesis of plant secondary metabolites with biological activities. In this present work, the effects of liquid Murashige and Skoog (MS) and Gamborg B5 (B5) medium on kinetic behavior, biomass and phenolic metabolite production were analyzed in Turbinicarpus lophophoroides (Werderm.) Buxb. & Backeb. hairy root cultures. Liquid MS medium showed the highest biomass production (13.67 g L⁻¹ dry weight) after 77 d of culture. For B5 medium, highest biomass was achieved sooner, at day 56, but with lower total biomass (8.10 g L⁻¹ dry weight). After isolation, structural elucidation of the major compound present in T. lophophoroides hairy roots was determined by nuclear magnetic resonance and mass spectral analysis. As a result, a ferulic acid derivative (feruloyl-glucoside) was isolated from T. lophophoroides hairy roots and reported for the first time. Quantitative analysis indicated that feruloyl-glucoside was the major phenolic metabolite at 56 d of growth in MS medium (2.7267 ± 0.041 mg g⁻¹ dry weight L⁻¹) and at 7 and 35 d in B5 medium (2.6328 ± 0.108 and 2.4372 ± 0.026 mg g⁻¹ dry weight L⁻¹, respectively). The feruloyl-glucoside was not detected in untransformed roots (control). The present results suggested the potential of T. lophophoroides hairy roots culture for the production of this phenolic glycoside. |
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AbstractList | Transformed hairy root cultures have become an alternative for the biosynthesis of plant secondary metabolites with biological activities. In this present work, the effects of liquid Murashige and Skoog (MS) and Gamborg B5 (B5) medium on kinetic behavior, biomass and phenolic metabolite production were analyzed in
Turbinicarpus lophophoroides
(Werderm.) Buxb. & Backeb. hairy root cultures. Liquid MS medium showed the highest biomass production (13.67 g L
−1
dry weight) after 77 d of culture. For B5 medium, highest biomass was achieved sooner, at day 56, but with lower total biomass (8.10 g L
−1
dry weight). After isolation, structural elucidation of the major compound present in
T. lophophoroides
hairy roots was determined by nuclear magnetic resonance and mass spectral analysis. As a result, a ferulic acid derivative (feruloyl-glucoside) was isolated from
T. lophophoroides
hairy roots and reported for the first time. Quantitative analysis indicated that feruloyl-glucoside was the major phenolic metabolite at 56 d of growth in MS medium (2.7267 ± 0.041 mg g
−1
dry weight L
−1
) and at 7 and 35 d in B5 medium (2.6328 ± 0.108 and 2.4372 ± 0.026 mg g
−1
dry weight L
−1
, respectively). The feruloyl-glucoside was not detected in untransformed roots (control). The present results suggested the potential of
T. lophophoroides
hairy roots culture for the production of this phenolic glycoside. Transformed hairy root cultures have become an alternative for the biosynthesis of plant secondary metabolites with biological activities. In this present work, the effects of liquid Murashige and Skoog (MS) and Gamborg B5 (B5) medium on kinetic behavior, biomass and phenolic metabolite production were analyzed in Turbinicarpus lophophoroides (Werderm.) Buxb. & Backeb. hairy root cultures. Liquid MS medium showed the highest biomass production (13.67 g L⁻¹ dry weight) after 77 d of culture. For B5 medium, highest biomass was achieved sooner, at day 56, but with lower total biomass (8.10 g L⁻¹ dry weight). After isolation, structural elucidation of the major compound present in T. lophophoroides hairy roots was determined by nuclear magnetic resonance and mass spectral analysis. As a result, a ferulic acid derivative (feruloyl-glucoside) was isolated from T. lophophoroides hairy roots and reported for the first time. Quantitative analysis indicated that feruloyl-glucoside was the major phenolic metabolite at 56 d of growth in MS medium (2.7267 ± 0.041 mg g⁻¹ dry weight L⁻¹) and at 7 and 35 d in B5 medium (2.6328 ± 0.108 and 2.4372 ± 0.026 mg g⁻¹ dry weight L⁻¹, respectively). The feruloyl-glucoside was not detected in untransformed roots (control). The present results suggested the potential of T. lophophoroides hairy roots culture for the production of this phenolic glycoside. Transformed hairy root cultures have become an alternative for the biosynthesis of plant secondary metabolites with biological activities. In this present work, the effects of liquid Murashige and Skoog (MS) and Gamborg B5 (B5) medium on kinetic behavior, biomass and phenolic metabolite production were analyzed in Turbinicarpus lophophoroides (Werderm.) Buxb. & Backeb. hairy root cultures. Liquid MS medium showed the highest biomass production (13.67 g L-1 dry weight) after 77 d of culture. For B5 medium, highest biomass was achieved sooner, at day 56, but with lower total biomass (8.10 g L-1 dry weight). After isolation, structural elucidation of the major compound present in T lophophoroides hairy roots was determined by nuclear magnetic resonance and mass spectral analysis. As a result, a ferulic acid derivative (feruloyl-glucoside) was isolated from T lophophoroides hairy roots and reported for the first time. Quantitative analysis indicated that feruloyl-glucoside was the major phenolic metabolite at 56 d of growth in MS medium (2.7267 ± 0.041 mg g-1 dry weight L-1) and at 7 and 35 d in B5 medium (2.6328 ± 0.108 and 2.4372 ± 0.026 mg g-1 dry weight L-1, respectively). The feruloyl-glucoside was not detected in untransformed roots (control). The present results suggested the potential of T. lophophoroides hairy roots culture for the production of this phenolic glycoside. |
Author | Solis-Castañeda, Gladis J Bahena, Silvia Marquina Cabañas-García, Emmanuel Pérez-Molphe-Balch, Eugenio Zamilpa, Alejandro Gómez-Aguirre, Yenny A |
Author_xml | – sequence: 1 givenname: Gladis J surname: Solis-Castañeda fullname: Solis-Castañeda, Gladis J – sequence: 2 givenname: Alejandro surname: Zamilpa fullname: Zamilpa, Alejandro – sequence: 3 givenname: Emmanuel surname: Cabañas-García fullname: Cabañas-García, Emmanuel – sequence: 4 givenname: Silvia Marquina surname: Bahena fullname: Bahena, Silvia Marquina – sequence: 5 givenname: Eugenio surname: Pérez-Molphe-Balch fullname: Pérez-Molphe-Balch, Eugenio – sequence: 6 givenname: Yenny A surname: Gómez-Aguirre fullname: Gómez-Aguirre, Yenny A |
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CitedBy_id | crossref_primary_10_1016_j_plaphy_2024_108440 crossref_primary_10_3389_fpls_2023_1132555 crossref_primary_10_1007_s11240_021_02100_8 crossref_primary_10_1007_s00253_020_10888_2 crossref_primary_10_1016_j_plaphy_2024_108609 crossref_primary_10_3390_plants11040503 crossref_primary_10_1007_s11033_021_06157_8 crossref_primary_10_1007_s11240_020_01859_6 crossref_primary_10_1007_s11240_023_02675_4 |
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Keywords | Phytochemical analysis Secondary metabolites Ultra-performance liquid chromatography-electrospray ionization-mass spectrometry (UPLC-ESI-MS) Phenolic glycosides Nuclear magnetic resonance (NMR) |
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SubjectTerms | BIOACTIVE/MEDICINAL COMPOUNDS Biomass Biomedical and Life Sciences Biosynthesis Cell Biology Chromatography Developmental Biology Ferulic acid Fruits Glucosides Hairy root Life Sciences Metabolites NMR Nuclear magnetic resonance Phenolic compounds Phenols Phytochemicals Plant Breeding/Biotechnology Plant Genetics and Genomics Plant Sciences Quantitative analysis Roots Secondary metabolites Spectral analysis Spectrum analysis Sucrose Sulfur Turbinicarpus Weight |
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Title | Identification and quantitative determination of feruloyl-glucoside from hairy root cultures of "Turbinicarpus lophophoroides" (Werderm.) Buxb. & Backeb. (Cactaceae) |
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