All Issue

2017 Vol.35, Issue 4 Preview Page
31 August 2017. pp. 446-455
Abstract
References
1
Aggelis A, John I, Grierson D (1997) Analysis of physiological and molecular changes in melon (Cucumis melo L.) varieties with different rates of ripening. J Exp Bot 48:769-778. doi:10.1093/jxb/48.3.769
2
Barreiro P, Ortiz C, Ruiz-Altisent M, De smedt V, Schotte S, Andani Z, Wakeling I, Beyts PK (1998) Comparison between sensorial and instrumental measurements for mealiness assessment in apples. A collaborative test. J Texture Stud 29:509-525. doi:10.1111/ j.1745-4603.1998.tb00180.x
3
Bradford KJ (2008) Shang Fa Yang: Pioneer in plant ethylene biochemistry. Plant Sci 175:2-7. doi:10.1016/j.plantsci.2008.01.005
4
Chung HD, Do HW, Choi YJ (2002) Forchlofenuron application increases fruit set rate and fruit growth of oriental melon (Cucumis melo L. var. makuwa, cv. Geumssaragi-Euincheon) plants. Korean J Hortic Sci Technol 20:302-305
5
Colaric M, Veberic R, Stampar F, Hudina M (2005) Evaluation of peach and nectarine fruit quality and correlations between sensory and chemical attributes. J Sci Food Agric 85:2611-2616. doi:10.1002/jsfa.2316
6
Echeverrí a G, Cantí n CM, Ortiz A, Ló pez ML, Lara I, Graell J (2015) The impact of maturity, storage temperature and storage duration on sensory quality and consumer satisfaction of ‛Big Top®’ nectirones. Sci Hortic190:179-186. doi:10.1016/j.scienta.2015.04.022
7
Esti M, Messia MC, Sinesio F, Nicotra A, Conte L, Notte EL, Palleschi G (1997) Quality evaluation of peaches and nectarines by electrochemical and multivariate analyses: relationships between analytical measurements and sensory attributes. Food Chem 60:659-666. doi:10.1016/S0308-8146(96)00306-8
8
Bordonaba JG, Cantin CM, Larrigaudiè re C, Ló pez L, Ló pez R, Echeverria G (2014) Suitability of nectarine cultivars for minimal processing: the role of genotype, harvest season and maturity at harvest on quality and sensory attributes. Postharvest Biol Technol 93:49-60. doi:10.1016/j.postharvbio.2014.02.007
9
Kim BS, Kim JY, Lee HO, Yoon DH, Cha HS, Kwon KH (2010b) Quality changes of muskmelon (Cucumis melo L.) by maturity during distribution. Korean J Hortic Sci Technol 28:423-428. doi:10.1016/j.scienta.2009.09.022
10
Kim JS, Choi HR, Chung DS, Lee YS (2010a) Current research status of postharvest and packaging technology of oriental melon (Cucumis melo var. makuwa) in Korea. Korean J Hortic Sci Technol 28:902-911
11
Kim SK, Park HB, Kim YH, Kim DY, Kim MK (1997) Volatile flavor components of oriental melon. Korean J Hortic Sci Technol 38:33-38
12
Klein JD, Lurie S (1990) Prestorage heat treatment as a means of improving poststorage quality of apples. J Am Soc Hort Sci 115:265- 269
13
Ku KH, Lee KA, Choi JH (2015) Sensory properties of satsuma mandarin by quantitative descriptive analysis. Korean J Food Preserv 22:241-250. doi:10.11002/kjfp.2015.22.2.241
14
Lee SK, Hong YP, Shin YS (2007) Report on postharvest manual book of oriental melon. Nonghyup, Korea, pp 73-109
15
Leliè vre JM, Latchè A, Jones B, Bouzayen M, Pech JC (1997) Ethylene and fruit ripening. Physiol Plant 101:727-739. doi:10.1111/j.1399-3054.1997.tb01057.x
16
Lester G, Shellie CS (1992) Postharvest sensory and physicochemical attributes of honey dew melon fruits. HortScience 27:1012-1014. doi:10.1034/j.1399-3054.1997.1010408.x
17
Lester GE, Turley RM (1990) Chemical, physical and sensory comparisons of netted muskmelon fruit cultivars and breeding lines at harvest. J Rio Grande Valley Hortic Sci 43:71-77
18
Pagè s J, Tenenhaus M (2001) Multiple factor analysis combined with PLS path modeling. Application to the analysis of relationships between physicochemical variables, sensory profiles and hedonic judgements. Chemometr Intell Lab 58:261-273. doi:10.1016 /S0169-7439(01)00165-4
19
Sin GY, Jeong CH, Yoo KC (1991) Effect of temperature, light intensity and fruit setting position on sugar accumulation and fermentation in oriental melon (Cucumis melo var. makuwa). Korean J Hortic Sci Technol 32:440-446
20
Wang KLC, Li H, Ecker JR (2002) Ethylene biosynthesis and signaling networks. Plant Cell 43:S131-S151. doi:10.1105/tpc.001768
21
Zhang MF, Li ZL (2005) A comparison of sugar-accumulating patterns and relative composition in developing fruits of two oriental melon varieties as determined by HPLC. Food Chem 90:785-790. doi:10.1016/j.foodchem.2004.05.027
Information
  • Publisher :KOREAN SOCIETY FOR HORTICULTURAL SCIENCE
  • Publisher(Ko) :한국원예학회
  • Journal Title :Horticultural Science and Technology
  • Journal Title(Ko) :원예과학기술지
  • Volume : 35
  • No :4
  • Pages :446-455