Cuticular cracking on nectarine fruit surface:: Spatial distribution and development in relation to irrigation and thinning

被引:64
作者
Gilbert, Caroline
Chadoeuf, Joel
Vercambre, Gilles
Genard, Michel
Lescourret, Francoise [1 ]
机构
[1] INRA, Unite Plantes & Syst Culture Horticoles, UR 1115, F-84914 Avignon 9, France
[2] INRA, Unite Biometrie, UR 546, F-84914 Avignon 9, France
关键词
cuticular cracks; fruit growth; stratified sampling; crop load; irrigation;
D O I
10.21273/JASHS.132.5.583
中图分类号
S6 [园艺];
学科分类号
0902 ;
摘要
Investigations on "natural" cuticular cracks were conducted on nectarine fruit [Prunus persica (L.) Batsch var. nucipersica (Suckow) C.K. Schneid.]. A method for quantifying the cuticular crack surface area on a whole fruit basis was proposed. By using a stratified sampling design, the spatial distribution of the cuticular cracks over three regions (stylar end, peduncle, and cheek), their morphology, and the estimation of the total proportion of cuticular cracks on the fruit were studied. These features were examined during fruit development and in response to several fruit growing conditions corresponding to various crop loads and irrigation regimes. Cuticular cracks on nectarine fruit occurred during the final rapid fruit growth stage. Larger fruit presented higher cuticular crack densities in the apical regions than in the cheek regions. Thin and larger cuticular cracks occurred continuously during fruit development. Cuticular cracks represented 10% to 12.5% of the fruit surface area for well irrigated or low crop load trees, whereas they covered less than 4.5% for the heavy crop load and water deficit treatments. Cheek regions largely contributed to the total cuticular crack surface area (> 60%), regardless of the fruit growing conditions. After irrigation was restricted, cuticular crack development was limited. A positive relationship was established between the cuticular crack surface area per fruit surface area and the fruit fresh weight.
引用
收藏
页码:583 / 591
页数:9
相关论文
共 41 条
[1]   Cuticular cracking in pepper fruit. I. Effects of night temperature and humidity [J].
Aloni, B ;
Karni, L ;
Rylski, I ;
Cohen, Y ;
Lee, Y ;
Fuchs, M ;
Moreshet, S ;
Yao, C .
JOURNAL OF HORTICULTURAL SCIENCE & BIOTECHNOLOGY, 1998, 73 (06) :743-749
[2]  
BAKKER JC, 1988, J HORTIC SCI, V63, P459
[3]   Studies on water transport through the sweet cherry fruit surface:: IV.: Regions of preferential uptake [J].
Beyer, M ;
Peschel, S ;
Knoche, M ;
Knörgen, M .
HORTSCIENCE, 2002, 37 (04) :637-641
[4]   Cuticular fractures promote postharvest fruit rot in sweet cherries [J].
Borve, J ;
Sekse, L ;
Stensvand, A .
PLANT DISEASE, 2000, 84 (11) :1180-1184
[5]   AN ANALYSIS OF TRANSFORMATIONS [J].
BOX, GEP ;
COX, DR .
JOURNAL OF THE ROYAL STATISTICAL SOCIETY SERIES B-STATISTICAL METHODOLOGY, 1964, 26 (02) :211-252
[6]  
Christensen J. V., 1972, Acta Agriculturae Scandinavica, V22, P153
[7]  
CHRISTENSEN J V, 1973, Acta Agriculturae Scandinavica, V23, P52
[8]  
CLAYPOOL LL, 1972, J AM SOC HORTIC SCI, V97, P181
[9]   PHYSICAL ASPECTS OF FRUIT-GROWTH - THEORETICAL-ANALYSIS OF DISTRIBUTION OF SURFACE GROWTH FORCES IN FRUIT IN RELATION TO CRACKING AND SPLITTING [J].
CONSIDINE, J ;
BROWN, K .
PLANT PHYSIOLOGY, 1981, 68 (02) :371-376
[10]   IRRIGATION REGIMES AFFECT FRUIT SOLUBLE SOLIDS CONCENTRATION AND RATE OF WATER-LOSS OF O HENRY PEACHES [J].
CRISOSTO, CH ;
JOHNSON, RS ;
LUZA, JG ;
CRISOSTO, GM .
HORTSCIENCE, 1994, 29 (10) :1169-1171