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1788<br />

6 Hussein AA, Abdel-Rahman AG and Ahmed RB, Effectiveness of fruit<br />

bagging on yield and fruit quality of pomegranate (Punicagranatum<br />

L.). Ann Agric Sci 32:949–957 (1994).<br />

7 HuangCH,YuB,TengYW,SuJ,ShuQ,ChengZQ,et al,Effectsoffruit<br />

bagging on coloring and related physiology, and qualities of red<br />

Chinese sand pears during fruit maturation. Sci Hort 121:149–158<br />

(2009).<br />

8 Kim YH, Kim SK, Lim SC, Lee CH, Youn CK, Kim HH, et al, Effectsof<br />

bagging material on coloration, maturity, and quality of peach<br />

fruits. J Korean Soc Hort Sci 41:395–400 (2000).<br />

9 Duthie GG, Duthie SJ and Kyle JAM, Plant polyphenols in cancer and<br />

heart disease: implications as nutritional antioxidants. Nutr Res Rev<br />

13:79–106 (2000).<br />

10 Middleton E and Kandaswami C, The impact of plant flavonoids on<br />

mammalian biology: implication for immunity, inflammation and<br />

cancer, in The Flavonoids: Advances in <strong>Research</strong> since 1986, ed.by<br />

Harborne JB. Chapman and Hall, London, pp. 619–952 (1994).<br />

11 Bahorun T, Trotin F, Pommery J, Vasseur J and Pinkas M, Antioxidant<br />

activities of Crataegus monogyna extracts. Planta Med 60:323–328<br />

(1994).<br />

12 Bahorun T, Gressier B, Trotin F, Brunet C, Dine T, Luyckx M, et al,<br />

Oxygen species scavenging activity of phenolic extracts from<br />

hawthorn fresh plant organs and pharmaceutical preparations.<br />

Arzneimittelforschung 46:1086–1089 (1996).<br />

13 Bahorun T, Trotin F and Vasseur J, Polyphenol production in Crataegus<br />

tissue cultures (hawthorn), in Biotechnology in Agriculture and<br />

Forestry: Medicinal and Aromatic Plants XII, ed.byNagataTand<br />

Ebizuka Y. Springer, Berlin, pp. 23–49 (2002).<br />

14 Chen JW, Zhang SL, Zhang LC, Zhao ZZ and Xu JG, Fruit<br />

photosynthesis and assimilate translocation and partitioning: Their<br />

characteristics and role in sugar accumulation in developing Citrus<br />

unshiu fruit. Acta Botan Sin 44:158–163 (2002).<br />

15 Reyes LF, Villarreal JE and Cisneros-Zevallos L, The increase in<br />

antioxidant capacity after wounding depends on the type of fruit<br />

or vegetable tissue. Food Chem 101:1254–1262 (2007).<br />

16 Association of Official Analytical Chemists, Official Methods of Analysis,<br />

16th edn. AOAC International, Arlington, VA, pp. 16–17 (1995).<br />

17 Swain T and Hillis WE, The phenolic constituents of Prunus domestica,<br />

I – the quantitative analysis of phenolic constituents. JSciFoodAgric<br />

10:63–68 (1959).<br />

18 Singleton VL and Rossi JA, Colorimetry of total phenolics with<br />

phosphomolybdic–phosphotungstic acid reagents. Am J Enol Vitic<br />

16:144–158 (1965).<br />

19 Jia ZS, Tang MC and Wu JM, The determination of flavonoid contents<br />

in mulberry and their scavenging effects on superoxide radicals.<br />

Food Chem 64:555–559 (1999).<br />

20 Braca A, Tommasi ND, Bari LD, Pizza C, Politi M and Morelli I,<br />

Antioxidant principles from Bauhinia terapotensis. J Nat Prod<br />

64:892–895 (2001).<br />

21 Re R, Pellegrini N and Anna PA, Antioxidant activity applying an<br />

improved ABTS radical cation decolorization assay. Free Radical<br />

Biol Med 26:1231–1237 (1999).<br />

22 Benzie IFF and Strain JJ, The ferric reducing ability of plasma (FRAP)<br />

as a measure of ‘‘antioxidant power’’: the FRAP assay. Anal Biochem<br />

239:70–76 (1996).<br />

23 Padmavathamma AS and Hulamani NC, Studies on the effect of fruit<br />

bagging on size, quality and colour development of pomegranate<br />

(Punica granatum C.). J Res ANGRAU 24:96–99 (1996).<br />

www.soci.org H-X Xu, J-W Chen, M Xie<br />

24 Arakawa O, Uematsu N and Nakajima H, Effect of bagging on fruit<br />

quality in apples. Bull Faculty Agric Hirosaki Univ 57:25–32 (1994).<br />

25 Hasan MA, Bhattacharjee S and Debnath U, Fruit quality and<br />

microclimate variation inside the bunch cover of Dwarf Cavendish<br />

banana (Musa AAA). OrissaJHort29:46–50 (2001).<br />

26 Lopez M, Candela ME and Sabarer F, Carotenoids from Capsicum<br />

annuum fruits: Influence of spectral quality of radiation. Biol Plant<br />

28:100–104 (1986).<br />

27 Yang WH, Zhu XC, Bu JH, Hu GB, Wang HC and Huang XM, Effects of<br />

baggingonfruitdevelopmentandqualityincross-winteroff-season<br />

longan. Sci Hort 120:194–200 (2009).<br />

28 PriorRL, CaoG, MartinA, SoficE, McewenJ, O’BrienB, et al,<br />

Antioxidant capacity as influenced by total phenolic and<br />

anthocyanin content, maturity and variety of Vaccinium species.<br />

J Agric Food Chem 46:2686–2693 (1998).<br />

29 Ehlenfeldt MK and Prior RL, Oxygen radical absorbance capacity<br />

(ORAC) and phenolic and anthocyanin concentrations in fruit and<br />

leaf tissues of highbush blueberry. J Agric Food Chem 49:2222–2227<br />

(2001).<br />

30 Deighton N, Brennan R, Finn C and Davies HV, Antioxidant properties<br />

of domesticated and wild Rubus species. J Agric Food Chem<br />

80:1307–1313 (2000).<br />

31 Namiki M, Antioxidants/antimutagens in food. Crit Rev Food Sci Nutr<br />

29:273–300 (1990).<br />

32 Birt DF, Hendrich S and Wang W, Dietary agents in cancer prevention:<br />

flavonoids and isoflavonoids. Pharmacol Ther 90:157–177 (2001).<br />

33 Cantuti-Castelvetri I, Shukitt-Hale B and Joseph JA, Neurobehavioural<br />

aspects of antioxidants in aging. Int J Develop Neurosci 18:367–381<br />

(2000).<br />

34 Bakhshi D and Arakawa O, Induction of phenolic compounds<br />

biosynthesis with light irradiation in the flesh of red and yellow<br />

apples. J Appl Hort 8:101–104 (2006).<br />

35 Logemann E, Wu S, Schröder J, Schmelzer E, Somssich I and<br />

Hahlbrock K, Gene activation by UV light, fungal elicitor or fungal<br />

infection in Petroselinum crispum is correlated with repression of<br />

cell cycle-related genes. Plant J 8:865–876 (1995).<br />

36 Logemann E, Tavernaro A, Schulz W, Somssich IE and Hahlbrock K,<br />

UV light selectively coinduces supply pathways from primary<br />

metabolism and flavonoid secondary product formation in parsley.<br />

Proc Natl Acad Sci U S A 97:1903–1907 (2000).<br />

37 Bieza K and Lois R, An Arabidopsis mutant tolerant to lethal ultraviolet-<br />

B levels shows constitutively elevated accumulation of flavonoids<br />

and other phenolics. Plant Physiol 126:1105–1115 (2001).<br />

38 Jaakola L, Määttä-Riihinen K, Kärenlampi S and Hohtola A, Activation<br />

of flavonoid biosynthesis by solar radiation in bilberry (Vaccinium<br />

myrtillus L.) leaves. Planta 218:721–728 (2004).<br />

39 Awad M, Wagenmakers P and de Jager A, Effects of light on flavonoid<br />

and chlorogenic acid levels in the skin of ‘Jonagold’ apples. Sci Hort<br />

88:289–298 (2001).<br />

40 Kolb C, Käser M, Kopec´yJ,ZotzG,RiedererMandPfündel E, Effects of<br />

natural intensities of visible and ultraviolet radiation on epidermal<br />

ultraviolet screening and photosynthesis in grape leaves. Plant<br />

Physiol 127:863–875 (2001).<br />

41 Tattini M, Gravano E, Pinelli P, Mulinacci N and Romani A, Flavonoids<br />

accumulate in leaves and glandular trichomes of Phillyrea latifolia<br />

exposed to excess solar radiation. New Phytol 148:69–77 (2000).<br />

42 Wang H, Cao G and Prior RL, Total antioxidant capacity of fruits. JAgric<br />

Food Chem 44:701–705 (1996).<br />

www.interscience.wiley.com/jsfa c○ 2010 Society of Chemical Industry J Sci Food Agric 2010; 90: 1783–1788

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