Phenolics and Antioxidant Activity of Mulberry Leaves Depend on Cultivar and Harvest Month in Southern China
Abstract
:1. Introduction
2. Results and Discussion
2.1. Effect of Cultivar on Phenolics and Antioxidant Activity of Mulberry Leaves
2.2. Effect of Harvest Month on Phenolics and Antioxidant Activity of Mulberry Leaves
3. Experimental Section
3.1. Materials
3.2. Mulberry Leaf Samples
3.3. Mulberry Leaf Extraction
3.4. Determination of Four Phenolic Compounds by HPLC
3.5. Total Phenols in MLE
3.6. FRAP Assay
3.7. Superoxide Radical Scavenging Activity (SSA)
3.8. Hydroxyl Radical Scavenging Activity (HSA)
3.9. Statistics and Data Analysis
4. Conclusions
Supplementary Information
ijms-13-16544-s001.pdfAcknowledgments
References
- Li, J.Q.; Gu, G.D.; Feng, H.S. Sericultural area changing in China based on data analysis from 1991 to 2010 (in Chinese). Seric. China 2010, 31, 28–41. [Google Scholar]
- Bown, D. Encyclopedia of Herbs and Their Uses; Dorling Kindersley: London, UK, 1995; pp. 313–314. [Google Scholar]
- Pharmacopoeia Commission of the Ministry of Health of the People’s Republic of China, Pharmacopoeia of the People’s Republic of China; People’s Medical Publishing House: Beijing, China, 2005; Volume 3, p. 209.
- Van Acker, S.A.B.E.; van Der Berg, D.J.; Tromp, M.N.J.L.; Griffioen, D.H.; van Bennekom, W.P.; van Der Vijgh, W.J.F.; Bast, A. Structural aspects of antioxidant activity of flavonoids. Free Radic. Biol. Med 1996, 20, 331–342. [Google Scholar]
- Naowaratwattana, W.; De-Eknamkul, W.; De Mejia, E.G. Phenolic-containing organic extracts of mulberry (Morus alba L.) leaves inhibit HepG2 hepatoma cells through G2/M phase arrest, induction of apoptosis, and inhibition of topoisomerase IIα activity. J. Med. Food 2010, 13, 1045–1056. [Google Scholar]
- Jia, Z.; Tang, M.; Wu, J. The determination of flavonoid contents in mulberry and their scavenging effects on superoxide radicals. Food Chem 1999, 64, 555–559. [Google Scholar]
- Wang, Z.J.; Xiao, G.S.; Liao, S.T.; Liu, X.M.; Tang, C.M.; Xu, Y.J.; Cao, Y. The study of antioxidation and their correlations with anthocyanin contents in different varieties of mulberry. Acta Sericologica Sin 2006, 32, 399–402. [Google Scholar]
- Li, Y.; Liu, X.M.; Liu, J.P.; Tang, C.M.; Wang, Z.J.; Chen, Z.Y.; Xiao, G.S. Change of non-anthocyanidin polyphenolics content in mulberry fruit from different varieties during maturation process. Acta Sericologica Sin 2008, 34, 711–717. [Google Scholar]
- Matsuoka, T.; Kimura, T.; Muraoka, N. Research of the available constituents from mulberry tree. Tohoku Agri. Res 1994, 47, 361–362. [Google Scholar]
- Onogi, A.; Osawa, K.; Yasuda, H.; Sakai, A.; Morita, H.; Itokawa, H. Flavonol glycosides from the leaves of Morus alba L. Nat. Med 1993, 47, 423–425. [Google Scholar]
- Katsube, T.; Yoko, T.; Sugiyama, M.; Furuno, T.; Yamasaki, Y. Effect of air-drying temperature on antioxidant capacity and stability of polyphenolic compounds in mulberry (Morus alba L.) leaves. Food Chem 2009, 113, 964–969. [Google Scholar]
- Song, W.; Wang, H.J.; Bucheli, P.; Zhang, P.F.; Wei, D.Z.; Lu, Y.H. Phytochemical profiles of different mulberry (Morus sp.) species from China. J. Agric. Food Chem 2009, 57, 9133–9140. [Google Scholar]
- La Torre, G.L.; Pera, L.; Rando, R.; Turco, L.; Bella, G.; Saitta, M.; Dugo, G. Classification of Marsala wines according to their polyphenol, carbohydrate and heavy metal levels using canonical discriminant analysis. Food Chem 2008, 110, 729–734. [Google Scholar]
- Avar, P.; Nikfardjam, M.S.P.; Kunsági-Máté, S.; Montskó, G.; Szabó, Z.; Böddi, K.; Ohmacht, R.; Márk, L. Investigation of phenolic components of hungarian wines. Int. J. Mol. Sci 2007, 8, 1028–1038. [Google Scholar]
- Ocakoglu, D.; Tokatli, F.; Ozen, B.; Korel, F. Distribution of simple phenols, phenolic acids and flavonoids in turkish monovarietal extra virgin olive oils for two harvest years. Food Chem 2009, 113, 401–410. [Google Scholar]
- Tamborra, P.; Esti, M. Authenticity markers in Aglianico, Uva di Troia, Negroamaro and Primitivo grapes. Anal. Chim. Acta 2010, 660, 221–226. [Google Scholar]
- Bolling, B.W.; Dolnikowski, G.; Blumberg, B.J.; Chen, C.Y.O. Polyphenol content and antioxidant activity of California almonds depend on cultivar and harvest year. Food Chem 2010, 122, 819–825. [Google Scholar]
- Isabelle, M.; Lee, B.L.; Ong, C.N.; Liu, X.; Huang, D. Peroxyl radical scavenging capacity, polyphenolics, and lipophilic antioxidant profiles of mulberry fruits cultivated in southern China. J. Agric. Food Chem 2008, 56, 9410–9416. [Google Scholar]
- Ozgen, M.; Serc, S.; Kaya, C. Phytochemical and antioxidant properties of anthocyanin-rich Morus nigra and Morus rubra fruits. Sci. Hort 2009, 119, 275–279. [Google Scholar]
- Katsube, T.; Imawaka, N.; Kawano, Y.; Yamazaki, Y.; Shiwaku, K.; Yamane, Y. Antioxidant flavonol glycosides in mulberry (Morus alba L.) leaves isolated based on LDL antioxidant activity. Food Chem 2006, 97, 25–31. [Google Scholar]
- Srivastava, S.; Kapoor, R.; Thathola, A.; Srivastava, R.P. Nutritional quality of leaves of some genotypes of mulberry (Morus alba). Int. Food Sci. Nutr 2006, 57, 305–313. [Google Scholar]
- Guan, L.P.; Zheng, G.H.; Jian, Z.Y.; Quan, C. Determination of rutoside in mulberry leaves in different resources and different collect times by RP-HPLC (in Chinese). Lishizhen Med. Materia. Medica. Res 2006, 17, 356–357. [Google Scholar]
- Shen, W.Z.; Liao, S.T.; Liu, J.P.; Zou, Y.X.; Li, Y. Optimization of polyphenol extraction from mulberry leaves using quadratic regression rotational combinational design. Acta Sericologica Sin 2009, 35, 594–598. [Google Scholar]
- Chen, C.Y.; Blumberg, J.B. In vitro activity of almond skin polyphenols for scavenging free radicals and inducing quinone reductase. J. Agric. Food Chem 2008, 56, 4427–4434. [Google Scholar]
- Chun, O.K.; Kim, D.O.; Lee, C.Y. Superoxide radical activity of the major polyphenols in fresh plums. J. Agric. Food Chem 2003, 51, 8067–8072. [Google Scholar]
- Heo, S.J.; Park, E.J.; Lee, K.W.; Jeon, Y.J. Antioxidant activities of enzymatic extracts from brown seaweeds. Bioresource Technol 2005, 96, 1613–1623. [Google Scholar]
Cultivar | Individual phenolic compound (mg/g DW) | Sum | |||
---|---|---|---|---|---|
ChA | Rut | BeA | Ast | ||
Da 10 | 1.5 ± 0.6 | 0.4 ± 0.3 a | 0.1 ± 0.1 a | 0.3 ± 0.2 | 2.3 ± 1.0 a |
Kq 10 | 2.2 ± 0.6 | 1.2 ± 0.4 b | 0.3 ± 0.2 a | 0.3 ± 0.2 | 4.0 ± 0.6 b |
Ns 14 | 2.0 ± 0.3 | 0.2 ± 0.1 a | 0.5 ± 0.2 a,b | 0.3 ± 0.2 | 3.0 ± 0.7 a |
Yu 7803 | 1.6 ± 0.4 | 0.1 ± 0.2 a | 0.5 ± 0.1 a | 0.5 ± 0.2 | 2.7 ± 0.5 a |
Ys 10 | 2.1 ± 0.6 | 0.7 ± 0.2 a,b | 0.8 ± 0.2 b | 0.6 ± 0.2 | 4.2 ± 1.1 b |
Bd 2 | 2.3 ± 0.4 | 0.4 ± 0.2 a | 0.5 ± 0.2 a,b | 0.5 ± 0.2 | 3.7± 0.6 a,b |
Cultivar | TP (GAE mg/g DW) | FRAP (mmol TE/100 g DW) | HSA (%) | SSA (%) |
---|---|---|---|---|
Da 10 | 35.4 ± 4.7 a,b | 11.5 ± 2.2 | 60.11 ± 5.9 b | 44.1 ± 7.1 a,b |
Kq 10 | 44.7 ± 10.7 b | 14.3 ± 1.5 | 72.8 ± 6.8 c | 58.3 ± 13.7 b |
Ns 14 | 30.4 ± 6.3 a | 12.1 ± 1.6 | 50.9 ± 8.6 a | 38.0 ± 4.6 a |
Yu 7803 | 40.2 ± 6.1 a,b | 13.4 ± 1.4 | 60.0 ± 9.3 b | 45.93 ± 9.5 a,b |
Ys 10 | 43.0 ± 5.7 b | 12.1 ± 2.5 | 69.3 ± 7.8 c | 42.2 ± 7.7 a |
Bd 2 | 44.5 ± 8.0 b | 13.8 ± 1.8 | 69.7 ± 3.3 c | 53.1 ± 11.4 a,b |
FRAP | SASC | HASC | ChA | Rut | BeA | Ast | |
---|---|---|---|---|---|---|---|
TP | 0.66 ** | 0.56 ** | 0.75 ** | 0.37 * | 0.41 ** | 0.25 | 0.42 ** |
FRAP | - | 0.41 ** | 0.42 ** | 0.48 ** | 0.32 * | 0.20 | 0.30 |
SSA | - | - | 0.38 * | 0.23 | 0.28 | −0.18 | 0.12 |
HSA | - | - | - | 0.35 * | 0.52 ** | 0.13 | 0.29 |
ChA | - | - | - | - | 0.28 | 0.34 * | 0.23 |
Rut | - | - | - | - | - | 0.03 | 0.17 |
BeA | - | - | - | - | - | - | 0.57 ** |
Harvest month | Individual phenolic compound (mg/g DW) | ||||
---|---|---|---|---|---|
ChA | Rut | BeA | Ast | Sum | |
Apr. | 1.9 ± 0.6 | 0.4 ± 0.4 | 0.4 ± 0.3 | 0.2 ± 0.2 a | 2.8 ± 1.3 |
May | 2.3 ± 0.7 | 0.5 ± 0.4 | 0.6 ± 0.4 | 0.4 ± 0.1 a,b | 3.7 ± 1.1 |
Jun. | 2.2 ± 0.4 | 0.5 ± 0.3 | 0.5 ± 0.3 | 0.3 ± 0.1 a,b | 3.4 ± 0.6 |
Jul. | 1.7 ± 0.3 | 0.3 ± 0.3 | 0.4 ± 0.2 | 0.4 ± 0.1 a,b | 2.9 ± 0.6 |
Aug. | 1.7 ± 0.5 | 0.6 ± 0.6 | 0.5 ± 0.2 | 0.5 ± 0.1 b | 3.3 ± 0.6 |
Sep. | 2.0 ± 0.5 | 0.6 ± 0.5 | 0.5 ± 0.3 | 0.5 ± 0.3 a,b | 3.6 ± 1.1 |
Oct. | 1.9 ± 0.7 | 0. 7 ± 0.6 | 0.4 ± 0.3 | 0.5 ± 0.3 a,b | 3.6 ± 1.6 |
Harvest Month | TP (GAE mg/g DW) | FRAP (mmol TE /100 g DW) | HSA (%) | SSA (%) |
---|---|---|---|---|
Apr. | 28.7 ± 6.3 a | 11.2 ± 1.3 a | 56.4 ± 9.8 | 34.2 ± 4.8 a |
May | 49.0 ± 9.0 b | 15.8 ± 1.1 b | 70.4 ± 10.8 | 53.8 ± 16.2 b |
Jun. | 42.3 ± 8.4 b | 12.5 ± 0.9 a | 64.9 ± 7.7 | 54.1 ± 11.5 b |
Jul. | 38.2 ± 5.1 a,b | 11.9 ± 2.4 a | 62.4 ± 11.1 | 48.7 ± 8.6 a,b |
Aug. | 37.2 ± 3.5 a,b | 13.1 ± 1.1 a,b | 61.2 ± 8.7 | 49.7 ± 7.1 a,b |
Sep. | 38.9 ± 5.2 a,b | 12.4 ± 2.4 a | 64.3 ± 13.9 | 45.3 ± 8.0 a,b |
Oct. | 43.7 ± 7.5 b | 13.1 ± 1.7 a,b | 67.0 ± 7.0 | 42.8 ± 9.2 a,b |
© 2012 by the authors; licensee Molecular Diversity Preservation International, Basel, Switzerland. This article is an open-access article distributed under the terms and conditions of the Creative Commons Attribution license (http://creativecommons.org/licenses/by/3.0/).
Share and Cite
Zou, Y.; Liao, S.; Shen, W.; Liu, F.; Tang, C.; Chen, C.-Y.O.; Sun, Y. Phenolics and Antioxidant Activity of Mulberry Leaves Depend on Cultivar and Harvest Month in Southern China. Int. J. Mol. Sci. 2012, 13, 16544-16553. https://doi.org/10.3390/ijms131216544
Zou Y, Liao S, Shen W, Liu F, Tang C, Chen C-YO, Sun Y. Phenolics and Antioxidant Activity of Mulberry Leaves Depend on Cultivar and Harvest Month in Southern China. International Journal of Molecular Sciences. 2012; 13(12):16544-16553. https://doi.org/10.3390/ijms131216544
Chicago/Turabian StyleZou, Yuxiao, Shentai Liao, Weizhi Shen, Fan Liu, Cuiming Tang, Chung-Yen Oliver Chen, and Yuanming Sun. 2012. "Phenolics and Antioxidant Activity of Mulberry Leaves Depend on Cultivar and Harvest Month in Southern China" International Journal of Molecular Sciences 13, no. 12: 16544-16553. https://doi.org/10.3390/ijms131216544
APA StyleZou, Y., Liao, S., Shen, W., Liu, F., Tang, C., Chen, C. -Y. O., & Sun, Y. (2012). Phenolics and Antioxidant Activity of Mulberry Leaves Depend on Cultivar and Harvest Month in Southern China. International Journal of Molecular Sciences, 13(12), 16544-16553. https://doi.org/10.3390/ijms131216544