Ren, G.; Institute of Crop Science, Chinese Academy of Agricultural Sciences (CAAS), 80 South Xueyuan Road, Haidian, Beijing, China
Language :
English
Title :
Isoflavone content and composition in chickpea (Cicer arietinum L.) sprouts germinated under different conditions
Publication date :
2015
Journal title :
Journal of Agricultural and Food Chemistry
ISSN :
0021-8561
eISSN :
1520-5118
Publisher :
American Chemical Society
Volume :
63
Issue :
10
Pages :
2701-2707
Peer reviewed :
Peer Reviewed verified by ORBi
Name of the research project :
Hong Kong, Macao, and Taiwan Science and Technology Cooperation Program of China (2013DFH30050); Special Fund for Agro-scientific Research in the Public Interest (201403063); Earmarked Fund for China Agriculture Research System Modern Agroindustry Technology (CYTX-014); Science and Technology Innovation Program of the CAAS
Viveros, A.; Brenes, A.; Elices, R.; Arija, I.; Canales, R. Nutritional value of raw and autoclaved Kabuli and Desi chickpeas (Cicer arietinum L.) for growing chickens Br. Poultry Sci. 2001, 42, 242-251
Singh, U. Nutritional quality of chickpea (Cicer arietinum L.): Current status and future research needs Plant Foods Hum. Nutr. 1985, 35, 339-351
Khattak, A. B.; Khattak, G. S. S.; Mahmood, Z.; Bibi, N.; Ihsanullah, I. Study of selected quality and agronomic characteristics and their interrelationship in Kabuli-type chickpea genotypes (Cicer arietinum L.) Int. J. Food Sci. Technol. 2006, 41, 1-5
Ghavidel, R. A.; Prakash, J. The impact of germination and dehulling on nutrients, antinutrients, in vitro iron and calcium bioavailability and in vitro starch and protein digestibility of some legume seeds LWT-Food Sci. Technol. 2007, 40, 1292-1299
Kuo, Y. H.; Rozan, P.; Lambein, F.; Frias, J.; Vidal-Valverde, C. Effects of different germination conditions on the contents of free protein and non-protein amino acids of commercial legumes Food Chem. 2004, 86, 537-545
Finney, P. L. Effect of germination on cereal and legume nutrient changes and food or feed value: A comprehensive review. In Mobilization of Reserves in Germination; Nozzolillo, C.; Lea, P. J.; Loewus, F. A., Eds.; Springer: New York, 1983; Recent Advances in Phytochemistry, Vol. 17, Chapter 12, pp 229-305.
Wu, Z.; Song, L.; Feng, S.; Liu, Y.; He, G.; Yioe, Y.; Huang, D. Germination dramatically increases isoflavonoid content and diversity in chickpea (Cicer arietinum L.) seeds J. Agric. Food Chem. 2012, 60, 8606-8615
Mao, X.; Zhang, L.; Xia, Q.; Sun, Z.; Zhao, X.; Cai, H.; Tang, Y. Vanadium-enriched chickpea sprout ameliorated hyperglycemia and impaired memory in streptozotocin-induced diabetes rats BioMetals 2008, 21, 563-570
Kolonel, L. N.; Hankin, J. H.; Whittemore, A. S.; Wu, A. H.; Gallagher, R. P.; Wilkens, L. R.; Paffenbarger, R. S. Vegetables, fruits, legumes and prostate cancer: A multiethnic case-control study Cancer Epidemiol., Biomarkers Prev. 2000, 9, 795-804
Zhao, S.; Zhang, L.; Gao, P.; Shao, Z. Isolation and characterisation of the isoflavones from sprouted chickpea seeds Food Chem. 2009, 114, 869-873
Choi, S. B.; Jang, J. S.; Park, S. Estrogen and exercise may enhance beta-cell function and mass via insulin receptor substrate 2 induction in ovariectomized diabetic rats Endocrinology 2005, 146, 4786-4794
Nanri, A.; Mizoue, T.; Takahashi, Y.; Kirii, K.; Inoue, M.; Noda, M.; Tsugane, S. Soy product and isoflavone intakes are associated with a lower risk of type 2 diabetes in overweight Japanese women J. Nutr. 2010, 109-115
Lee, S. J.; Ahn, J. K.; Kim, S. H.; Kim, J. T.; Han, S. J.; Jung, M. Y.; Chung, I. M. Variation in isoflavone of soybean cultivars with location and storage duration J. Agric. Food Chem. 2003, 51, 3382-3389
Kim, E. H.; Kim, S. H.; Chung, J. I.; Chi, H. Y.; Kim, J. A.; Chung, I. M. Analysis of phenolic compounds and isoflavones in soybean seeds (Glycine max (L.) Merill) and sprouts grown under different conditions Eur. Food Res. Technol. 2006, 222, 201-208
Sharma, R. D. Isoflavone content of Bengalgram (Cicer arietinum) at various stages of germination J. Plant Foods 1981, 3, 259-264
Simons, R.; Vincken, J. P.; Roidos, N.; Bovee, T. F. H.; Van Iersel, M.; Verbruggen, M. A.; Gruppen, H. Increasing soy isoflavonoid content and diversity by simultaneous malting and challenging by a fungus to modulate estrogenicity J. Agric. Food Chem. 2011, 59, 6748-6758
Aisyah, S.; Gruppen, H.; Madzora, B.; Vincken, J. P. Modulation of isoflavonoid composition of Rhizopusoryzae elicited soybean (Glycine max) seedlings by light and wounding J. Agric. Food Chem. 2013, 61, 8657-8667
Abdul, J. C.; Gopi, R.; Sankar, B.; Manivannan, P.; Kishorekumar, A.; Sridharan, R.; Panneerselvam, R. Studies on germination, seedling vigour, lipid peroxidation and proline metabolism in Catharanthus roseus seedlings under salt stress S. Afr. J. Bot. 2007, 73, 190-195
Fu, Y. H.; Zhang, F. C. Changes in isoflavones glucoside and aglycone content of chickpea yoghurt during fermentation by Lactobacillus bulgaricus and Streptococcus thermophilus J. Food Process. Preserv. 2013, 37, 744-750
Ma, H. R.; Wang, J.; Qi, H. X.; Gao, Y. H.; Pang, L. J.; Yang, Y.; Aisa, H. A. Assessment of the estrogenic activities of chickpea (Cicer arietinum L.) sprout isoflavone extract in ovariectomized rats Acta Pharmacol. Sin. 2013, 34, 380-386
Zhu, D.; Hettiarachchy, N. S.; Horax, R.; Chen, P. Isoflavone contents in germinated soybean seeds Plant Food Hum. Nutr. 2005, 60, 147-151
Liu, C. J.; Blount, J. W.; Steele, C. L.; Dixon, R. A. Bottlenecks for metabolic engineering of isoflavone glycoconjugates in Arabidopsis Proc. Natl. Acad. Sci. U. S. A. 2002, 99, 14578-14583
Terrence, L. G. Flavonoid and isoflavonoid distribution in developing soybean seedling tissues and in seed and root exudates J. Plant Physiol. 1991, 95, 594-603
Phommalth, S.; Jeong, Y. S.; Kim, Y. H.; Dhakal, K. H.; Hwang, Y. H. Effects of light treatment on isoflavone content of germinated soybean seeds J. Agric. Food Chem. 2008, 56, 10123-10128
Luczkiewicz, M.; Glod, D. Callus cultures of Genista plants-In vitro material producing high amounts of isoflavones of phytoestrogenic activity Plant Sci. 2003, 165, 1101-1108
Mishra, A. K.; Sharma, K.; Misra, R. S. Elicitor recognition, signal transduction and induced resistance in plants J. Plant Interact. 2012, 7, 95-120
Miyoshi, K.; Sato, T. The effects of ethanol on the germination of seeds of japonica and indica rice (Oryza sativa L.) under anaerobic and aerobic conditions Ann. Bot. 1997, 79, 391-395
Sanchez, D. H.; Siahpoosh, M. R.; Roessner, U.; Udvardi, M.; Kopka, J. Plant metabolomics reveals conserved and divergent metabolic responses to salinity Physiol. Plant. 2008, 132, 209-219