Increased phloridzin content associated with russeting in apple (Malus domestica(Suckow) Borkh.) fruit

被引:16
作者
Gutierrez, Benjamin L. [1 ,2 ]
Zhong, Gan-Yuan [2 ]
Brown, Susan K. [1 ]
机构
[1] Cornell Univ, Sch Integrat Plant Sci, Plant Breeding & Genet Sect, NYSAES, 630 West North St, Geneva, NY 14456 USA
[2] USDA ARS, Plant Genet Resources Unit, 630 West North St, Geneva, NY 14456 USA
关键词
Apple; Liquid chromatography; Dihydrochalcones; Germplasm; Malus domestica; Phloridzin; Russet; MALUS X DOMESTICA; SUBERIN DEPOSITION; PHENOLIC-COMPOUNDS; BIOSYNTHESIS; COMPONENTS; REGULATOR; STRAIN; GENES; ACID;
D O I
10.1007/s10722-018-0679-5
中图分类号
S3 [农学(农艺学)];
学科分类号
0901 ;
摘要
Phloridzin is a phenolic compound unique to apple (Malus domestica (Suckow) Borkh.) and its wild relatives. Since its discovery, phloridzin has been researched for its nutraceutical properties, including anti-diabetic, anti-cancer, and antioxidant activities, making phloridzin a potential target for nutritional improvement in new apple cultivars. However, phloridzin accumulates at significantly lower concentrations in fruit than in vegetative tissues and seeds. In Golden Delicious' and its sports, we observed higher phloridzin content in peels of sports with a cuticle disorder termed russet. In russeted apples, the smooth, waxy fruit cuticle is partially or entirely replaced by a corky layer, induced through environmental and genetic effects. To understand the variation of phloridzin content and fruit russet in apple fruit, we surveyed 108 accessions with variation in russeting from the USDA-ARS Malus germplasm collection in Geneva, NY. Russeting in apple fruit ranged from 0 to 100%, and phloridzin content ranged from 24.3 to 825.0g/g in peels. Mean phloridzin content varied significantly between russeting groups; in groups with light (0-5%), medium-high (70-80%), and high (90-100%) russeting mean phloridzin content was 115.2, 591.2, and 378.8g/g, respectively. We observed that genetic factors and russeting are strong predictors of phloridzin content in peels, but not fruit flesh or leaves. Conversely, other peel phenolics are negatively associated with russeting. We observed variable phloridzin content related to russet incidence during fruit development in Golden Delicious' (low to medium russet) and its sports, Empress Spur' (low russet), Razor' (complete russet), and Sergeant Russet' (medium to high russet).
引用
收藏
页码:2135 / 2149
页数:15
相关论文
共 40 条
[1]   Biochemical Profile of Heritage and Modern Apple Cultivars and Application of Machine Learning Methods To Predict Usage, Age, and Harvest Season [J].
Anastasiadi, Maria ;
Mohareb, Fady ;
Redfern, Sally P. ;
Berry, Mark ;
Sinunonds, Monique S. J. ;
Terry, Leon A. .
JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY, 2017, 65 (26) :5339-5356
[2]   Unusual Immuno-Modulatory Triterpene-Caffeates in the Skins of Russeted Varieties of Apples and Pears [J].
Andre, Christelle M. ;
Larsen, Lesley ;
Burgess, Elaine J. ;
Jensen, Dwayne J. ;
Cooney, Janine M. ;
Evers, Daniele ;
Zhang, Jingli ;
Perry, Nigel B. ;
Laing, William A. .
JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY, 2013, 61 (11) :2773-2779
[3]   Anti-Inflammatory Procyanidins and Triterpenes in 109 Apple Varieties [J].
Andre, Christelle M. ;
Greenwood, Jeffrey M. ;
Walker, Edward G. ;
Rassam, Maysoon ;
Sullivan, Michael ;
Evers, Daniele ;
Perry, Nigel B. ;
Laing, William A. .
JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY, 2012, 60 (42) :10546-10554
[4]   Metabolic and gene expression analysis of apple (Malus domestica) carotenogenesis [J].
Annpomah-Dwamena, Charles ;
Dejnoprat, Supinya ;
Lewis, David ;
Sutherland, Paul ;
Volz, Richard K. ;
Allan, Andrew C. .
JOURNAL OF EXPERIMENTAL BOTANY, 2012, 63 (12) :4497-4511
[5]  
[Anonymous], 2014, NAT GEN RES PROGR GE
[6]   Fine-tuning of the flavonoid and monolignol pathways during apple early fruit development [J].
Baldi, Paolo ;
Moser, Mirko ;
Brilli, Matteo ;
Vrhovsek, Urska ;
Pindo, Massimo ;
Si-Ammour, Azeddine .
PLANTA, 2017, 245 (05) :1021-1035
[7]   Modelling of weather parameters to predict russet on 'Golden Delicious' apple [J].
Barcelo-Vidal, C. ;
Bonany, J. ;
Martin-Fernandez, J. A. ;
Carbo, J. .
JOURNAL OF HORTICULTURAL SCIENCE & BIOTECHNOLOGY, 2013, 88 (05) :624-630
[8]  
Blanpied GD, 1992, INFORM B, V221
[9]   QTL and candidate gene mapping for polyphenolic composition in apple fruit [J].
Chagne, David ;
Krieger, Celia ;
Rassam, Maysoon ;
Sullivan, Mike ;
Fraser, Jenny ;
Andre, Christelle ;
Pindo, Massimo ;
Troggio, Michela ;
Gardiner, Susan E. ;
Henry, Rebecca A. ;
Allan, Andrew C. ;
McGhie, Tony K. ;
Laing, William A. .
BMC PLANT BIOLOGY, 2012, 12
[10]   Silencing a phloretin-specific glycosyltransferase perturbs both general phenylpropanoid biosynthesis and plant development [J].
Dare, Andrew P. ;
Yauk, Yar-Khing ;
Tomes, Sumathi ;
McGhie, Tony K. ;
Rebstock, Ria S. ;
Cooney, Janine M. ;
Atkinson, Ross G. .
PLANT JOURNAL, 2017, 91 (02) :237-250