Genomics of berry fruits antioxidant components

被引:6
作者
D'Amico, E [1 ]
Perrotta, G [1 ]
机构
[1] ENEA, Ctr Ric Trisaia, I-75026 Rotondella, MT, Italy
关键词
berry; antioxidants; flavonoids; genomics;
D O I
10.1002/biof.5520230402
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Reactive oxygen and nitrogen metabolites, which are side products of cell metabolism, can produce a lot of damage in biological macromolecules and tissues, producing a number of chronic illnesses. On the other hand, antioxidant metabolites usually accumulated in fruits and vegetables can provide an effective protection by neutralizing these reactive molecules. Among comestible vegetables, berry fruits are considered one of the richest sources of antioxidant metabolites; hence, they represent a good model for molecular and biochemical investigations about the biosynthesis and the functional role of antioxidants in plants. This review illustrates how recent developments in the fields of genomics and bioinformatics can provide powerful tools to better understand the molecular mechanisms that trigger biosynthesis and accumulation of antioxidant metabolites in berries.
引用
收藏
页码:179 / 187
页数:9
相关论文
共 63 条
[1]   Functional analysis of homologous and heterologous promoters in strawberry fruits using transient expression [J].
Agius, F ;
Amaya, I ;
Botella, MA ;
Valpuesta, V .
JOURNAL OF EXPERIMENTAL BOTANY, 2005, 56 (409) :37-46
[2]   Engineering increased vitamin C levels in plants by overexpression of a D-galacturonic acid reductase [J].
Agius, F ;
González-Lamothe, R ;
Caballero, JL ;
Muñoz-Blanco, J ;
Botella, MA ;
Valpuesta, V .
NATURE BIOTECHNOLOGY, 2003, 21 (02) :177-181
[3]   Identification of the SAAT gene involved in strawberry flavor biogenesis by use of DNA microarrays [J].
Aharoni, A ;
Keizer, LCP ;
Bouwmeester, HJ ;
Sun, ZK ;
Alvarez-Huerta, M ;
Verhoeven, HA ;
Blaas, J ;
van Houwelingen, AMML ;
De Vos, RCH ;
van der Voet, H ;
Jansen, RC ;
Guis, M ;
Mol, J ;
Davis, RW ;
Schena, M ;
van Tunen, AJ ;
O'Connell, AP .
PLANT CELL, 2000, 12 (05) :647-661
[4]   Novel insight into vascular, stress, and auxin-dependent and -independent gene expression programs in strawberry, a non-climacteric fruit [J].
Aharoni, A ;
Keizer, LCP ;
Van den Broeck, HC ;
Blanco-Portales, R ;
Muñoz-Blanco, J ;
Bois, G ;
Smit, P ;
De Vos, RCH ;
O'Connell, AP .
PLANT PHYSIOLOGY, 2002, 129 (03) :1019-1031
[5]   Gene expression analysis of strawberry achene and receptacle maturation using DNA microarrays [J].
Aharoni, A ;
O'Connell, AP .
JOURNAL OF EXPERIMENTAL BOTANY, 2002, 53 (377) :2073-2087
[6]   The strawberry FaMYB1 transcription factor suppresses anthocyanin and flavonol accumulation in transgenic tobacco [J].
Aharoni, A ;
De Vos, CHR ;
Wein, M ;
Sun, ZK ;
Greco, R ;
Kroon, A ;
Mol, JNM ;
O'Connell, AP .
PLANT JOURNAL, 2001, 28 (03) :319-332
[7]   Loss of fimbrial adhesion with the addition of Vaccinum macrocarpon to the growth medium of β-fimbriated Escherichia coli [J].
Ahuja, S ;
Kaack, B ;
Roberts, J .
JOURNAL OF UROLOGY, 1998, 159 (02) :559-562
[8]   Environmental and genetic variation of phenolic compounds in red raspberry [J].
Anttonen, MJ ;
Karjalainen, RO .
JOURNAL OF FOOD COMPOSITION AND ANALYSIS, 2005, 18 (08) :759-769
[9]   The antioxidative function, preventive action on disease and utilization of proanthocyanidins [J].
Ariga, T .
BIOFACTORS, 2004, 21 (1-4) :197-201
[10]   Anti-angiogenic, antioxidant, and anti-carcinogenic properties of a novel anthocyanin-rich berry extract formula [J].
Bagchi, D ;
Sen, CK ;
Bagchi, M ;
Atalay, M .
BIOCHEMISTRY-MOSCOW, 2004, 69 (01) :75-+