USPP18111P3 - Strawberry plant named ‘Saint-Jean d'Orleans’ - Google Patents

Strawberry plant named ‘Saint-Jean d'Orleans’ Download PDF

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USPP18111P3
USPP18111P3 US10/941,875 US94187504V USPP18111P3 US PP18111 P3 USPP18111 P3 US PP18111P3 US 94187504 V US94187504 V US 94187504V US PP18111 P3 USPP18111 P3 US PP18111P3
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jean
saint
orléans
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kent
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Shahrokh Khanizadeh
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Agriculture and Agri-Food Canada
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    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01HNEW PLANTS OR NON-TRANSGENIC PROCESSES FOR OBTAINING THEM; PLANT REPRODUCTION BY TISSUE CULTURE TECHNIQUES
    • A01H6/00Angiosperms, i.e. flowering plants, characterised by their botanic taxonomy
    • A01H6/74Rosaceae, e.g. strawberry, apple, almonds, pear, rose, blackberries or raspberries
    • A01H6/7409Fragaria, i.e. strawberries
    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01HNEW PLANTS OR NON-TRANSGENIC PROCESSES FOR OBTAINING THEM; PLANT REPRODUCTION BY TISSUE CULTURE TECHNIQUES
    • A01H5/00Angiosperms, i.e. flowering plants, characterised by their plant parts; Angiosperms characterised otherwise than by their botanic taxonomy
    • A01H5/08Fruits

Definitions

  • Botanical designation Fragaria ⁇ ananassa Duch.
  • the present invention relates to a new and distinct June bearing strawberry cultivar designated as ‘Saint-Jean d'Orléans’.
  • This cultivar belongs to the genus Fragarias ( ⁇ ananassa Duch.), whose fruit are juicy, edible and usually red, and is cultivated for culinary purposes.
  • the new cultivar, tested as FIO9623-43, is the progeny of a cross made by Shahrokh Khanizadeh ‘L'Acadie’ 1 and ‘Joliette’ (U.S. Plant Pat. No. 10,460).
  • ‘L'Acadie’ is a June bearing strawberry cultivar ( Fragaria ⁇ ananassa Duch.) bred for Eastern Central Canada and more specifically for Quebec growing conditions.
  • ‘L'Acadie’ is noted for large, firm fruits, moderate resistance to leaf diseases, partial resistance to red stele ( Phytophthora fragariae Hickman), and keeping quality of several days after picking or maturity in the field.
  • ‘Joliette’ has high yields of large, moderately firm fruits and is resistant to leaf spot ( Mycosphaerella fragariae Tul.) and to six North American eastern (NAE) races of red stele ( Phytophthora fragariae Hickman).
  • ‘Saint-Jean d'Orléans’ is recommended for Eastern Central Canada, especially in areas where the climate is similar to that in the strawberry production areas of Quebec, such as l'Île d'Orléans.
  • strawberry production in Quebec occurs in areas with winter temperatures down to ⁇ 30° C. and warm and humid summers with unpredictable mixture of sun and rain (drought some seasons, constant rain other seasons).
  • the high yield of medium sized, firm, light-red glossy fruits (FIG. 2 ), resistance to leaf diseases, long shelf life and high levels of given antioxidants essentially characterize ‘Saint-Jean d'Orléans’, as compared to the well-known variety ‘Kent’ for example.
  • the fruits of ‘Saint-Jean d'Orléans’ are ideal for pick your own, fresh market and shipping.
  • FIG. 1 shows a schematic pedigree of ‘Saint-Jean d'Orléans’
  • FIG. 2 shows a close-up view of ‘Saint-Jean d'Orléans’ fruits
  • FIG. 3 shows a comparison of trifoliates between ‘Saint-Jean d'Orléans’ and ‘Kent’
  • FIG. 4 shows a comparison of internal fruit characteristics between ‘Saint-Jean d'Orléans’ and ‘Kent’.
  • ‘Saint-Jean d'Orléans’ is a June bearing strawberry cultivar ( Fragaria ⁇ ananassa Duch.) with early flowering date and harvest maturity. It is a progeny (FIO9623-43) resulting from a cross between two recent releases, ‘L'Acadie’ and ‘Joliette’. ‘Saint-Jean d'Orléans’ is vigorous, produces high yields of medium, firm, light-red to red colored fruits and performs a longer storage life than the standard variety ‘Kent’, used by many growers. It shows resistance to leaf diseases and levels of antioxidants that are higher than those of ‘Kent’, which makes it ideal for growers who need to store the fruits for several days or ship them to other provinces for marketing. Color reference are made to The Royal Horticulture Society Colour Chart (R.H.S.), except where general terms of dictionary significance are used.
  • Plants of ‘Saint-Jean d'Orléans’ are vigorous, have a flat growing habit, and produce 4-5 inflorescences per crown. They can tolerate winter temperatures below ⁇ 30° C. with a 10 cm straw mulch cover.
  • ‘Saint-Jean d'Orléans’ differs from its parents (‘Joliette’ and ‘L'Acadie’) in terms of fruit shape, calyx and total yield.
  • the ‘Saint-Jean d'Orléans’ fruit is globose-conic with slightly reflexed sepals, whereas the ‘Joliette’ fruit changes from globose to short-wedge shape during the harvest.
  • ‘Joliette’ skin is reddish and its sepals are not reflexed but cover the fruit.
  • ‘L'Acadie’ fruit is long conic with a white small neck under the calyx, whereas ‘Saint-Jean d'Orléans’ is short conic.
  • the total yield of ‘L'Acadie’ (7696.3 kg/ha) is much lower than that of ‘Saint-Jean d'Orléans’.
  • ‘Saint-Jean d'Orléans’ produces perfect flowers, and attractive and medium size, light red to red, shiny fruits. The flesh is light to medium red almost throughout and very firm. Fresh fruits have a long shelf life and can maintain quality and appearance for up to 4-5 days at room temperature, making it superior to ‘Kent’ for shipping. ‘Saint-Jean d'Orléans’ produces a higher yield than ‘Kent’. ‘Saint-Jean d'Orléans’ is also firmer than ‘Kent’, with similar flavor but lighter skin color.
  • ‘Saint-Jean d'Orléans’ is an early mid-season cultivar (Table 1). Fifty percent of the primary fruit ripen by June 27 which is similar to ‘Kent’ at our substation in L'Acadie and the production peaks were reached on the same day as ‘Kent’.
  • ‘Saint-Jean d'Orléans’ demonstrates a higher degree of resistance to leaf diseases as compared to ‘Kent’. Its susceptibility to leaf scorch ( Diplocarpon earlina Ell. & Ev.) and leaf spot ( Mycosphaerella fragariae (Tul.) Lindau) was ranked as moderate to low in trials conducted since 1997.
  • ‘Saint-Jean d'Orléans’ plants perform very well in heavy or sandy soils in a matted row system. It is also adapted to the waiting bed system using plastic mulch.
  • Tests and trials for ‘Saint-Jean d'Orléans’ were conducted in matted rows at an experimental farm in l'Acadie, Québec since 1997. A completely randomized design for four replicates (4 plots) was used to evaluate the selections. Each experimental unit was a 4-meter long plot, 50 cm wide. A representative 2 m section of the plot was used for data collection. The remainder was used as guard row.

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  • Life Sciences & Earth Sciences (AREA)
  • Health & Medical Sciences (AREA)
  • Physiology (AREA)
  • Botany (AREA)
  • Developmental Biology & Embryology (AREA)
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  • Natural Medicines & Medicinal Plants (AREA)
  • Coloring Foods And Improving Nutritive Qualities (AREA)

Abstract

A new and distinct June-bearing strawberry cultivar named ‘Saint-Jean d'Orléans’ is primarily adapted to the growing conditions of Eastern Central Canada. Its high yield of medium sized, firm, light-red glossy fruits, resistance to leaf diseases, long shelf life and high levels of given antioxidants essentially characterize ‘Saint-Jean d'Orléans’.

Description

Botanical designation: Fragaria×ananassa Duch.
Variety denomination: ‘Saint-Jean d'Orléans’.
FIELD OF THE INVENTION
The present invention relates to a new and distinct June bearing strawberry cultivar designated as ‘Saint-Jean d'Orléans’. This cultivar belongs to the genus Fragarias ananassa Duch.), whose fruit are juicy, edible and usually red, and is cultivated for culinary purposes.
BACKGROUND OF THE INVENTION
The new cultivar, tested as FIO9623-43, is the progeny of a cross made by Shahrokh Khanizadeh ‘L'Acadie’1 and ‘Joliette’ (U.S. Plant Pat. No. 10,460). ‘L'Acadie’ is a June bearing strawberry cultivar (Fragaria×ananassa Duch.) bred for Eastern Central Canada and more specifically for Quebec growing conditions. ‘L'Acadie’ is noted for large, firm fruits, moderate resistance to leaf diseases, partial resistance to red stele (Phytophthora fragariae Hickman), and keeping quality of several days after picking or maturity in the field. ‘Joliette’ has high yields of large, moderately firm fruits and is resistant to leaf spot (Mycosphaerella fragariae Tul.) and to six North American eastern (NAE) races of red stele (Phytophthora fragariae Hickman).
The cross took place in 1993 in St-Jean-sur-Richelieu, Québec. The ‘Saint-Jean d'Orléans’ strawberry was asexually propagated by runners in L'Acadie, Québec and extensively tested at the same location, where it has been tested since 1997. Selection criteria included shelf life, yield, fruit size and color, and disease resistance. It was further tested in semi-commercial sites in Saint Laurent, Île d'Orléans, Québec, Canada and in Kent, UK. ‘Saint-Jean d'Orléans’ is now an established and stable cultivar.
BRIEF SUMMARY OF THE INVENTION
‘Saint-Jean d'Orléans’ is recommended for Eastern Central Canada, especially in areas where the climate is similar to that in the strawberry production areas of Quebec, such as l'Île d'Orléans. Typically, strawberry production in Quebec occurs in areas with winter temperatures down to −30° C. and warm and humid summers with unpredictable mixture of sun and rain (drought some seasons, constant rain other seasons). The high yield of medium sized, firm, light-red glossy fruits (FIG. 2), resistance to leaf diseases, long shelf life and high levels of given antioxidants essentially characterize ‘Saint-Jean d'Orléans’, as compared to the well-known variety ‘Kent’ for example. The fruits of ‘Saint-Jean d'Orléans’ are ideal for pick your own, fresh market and shipping.
BRIEF DESCRIPTION OF THE DRAWINGS
The accompanying color photographs show typical specimens of the new variety at various stages of development as nearly true as it is possible to make in color reproductions.
FIG. 1 shows a schematic pedigree of ‘Saint-Jean d'Orléans’;
FIG. 2 shows a close-up view of ‘Saint-Jean d'Orléans’ fruits;
FIG. 3 shows a comparison of trifoliates between ‘Saint-Jean d'Orléans’ and ‘Kent’, and
FIG. 4 shows a comparison of internal fruit characteristics between ‘Saint-Jean d'Orléans’ and ‘Kent’.
DETAILED BOTANICAL DESCRIPTION
‘Saint-Jean d'Orléans’ is a June bearing strawberry cultivar (Fragaria×ananassa Duch.) with early flowering date and harvest maturity. It is a progeny (FIO9623-43) resulting from a cross between two recent releases, ‘L'Acadie’ and ‘Joliette’. ‘Saint-Jean d'Orléans’ is vigorous, produces high yields of medium, firm, light-red to red colored fruits and performs a longer storage life than the standard variety ‘Kent’, used by many growers. It shows resistance to leaf diseases and levels of antioxidants that are higher than those of ‘Kent’, which makes it ideal for growers who need to store the fruits for several days or ship them to other provinces for marketing. Color reference are made to The Royal Horticulture Society Colour Chart (R.H.S.), except where general terms of dictionary significance are used.
The selection was named after the village of Saint-Jean d'Orléans, which is located on south-eastern side of l'Île d'Orléans, Quebec. In this area, the principal economy comes from agriculture, with a major emphasis on vegetable and strawberry production. This village is known as a capital of strawberry production in Quebec and is recognized for a high quality fruit production.
Plants of ‘Saint-Jean d'Orléans’ are vigorous, have a flat growing habit, and produce 4-5 inflorescences per crown. They can tolerate winter temperatures below −30° C. with a 10 cm straw mulch cover.
Plant characteristics
  • Plant:
      • Height.—Average 20 cm.
      • Spread.—Average 23 cm.
      • Number of crowns.—Average 4.
      • Habit.—Flat.
      • Density (of individual plants in hill culture or plants/m 2 for matted rows).—Open to medium.
      • Vigor.—Medium to strong.
      • Low temperature tolerance.—High.
Stolon characteristics
  • Stolon:
      • Length.—Average 70 cm.
      • Number.—Medium to many.
      • Thickness.—Medium to thick.
Fruit characteristics
‘Saint-Jean d'Orléans’ fruits, fruit production and fruit quality characteristics.
TABLE 1
Cumulative yield (gm−1 of row), fruit weight, firmness,
flavor, skin color, shelf life at room temperature and ripening
season of ‘Saint-Jean d'Orléans’ as compared to ‘Kent’
Averages of four replicates from 2002 harvest
Total yield Wt./fruit
Genotypes (g/m−1)z (g)z Firmnessy Flavory
Saint-Jean d'Orléans 12712.1 8.8 3.7 3.6
Kent  8403.6 8.2 2.8 4.0
Prob ≦ 0.05 ** Ns * Ns
Skin Shelf life Ripening
Genotypes colory at 20° C.x seasonw
Saint-Jean d'Orléans 2.2 4.0 EM
Kent 3.4 1.5 EM
Prob ≦ 0.05 * *
zData taken from a 1-meter long representative portion of a 2-meter matted row (width 50 cm).
yData were transformed to arcsin prior to analysis of variance (SAS institute, 1988)2.
Firmness: 1 = very soft, 5 = very firm
Flavor: 1 = poor, 5 = excellent
Skin color: 1 = very pale, 5 = dark red
xNumber of days at room temperature (20° C.) for which the fruits were more than 95% marketable.
wEM = Early-Midseason.
Significance: **0.01, *0.05, Ns not significant
TABLE 2
Antioxidant capacity and total phenolic content of
‘Saint-Jean d'Orléans’ mature fruit in comparison with ‘Kent’
Data collected in L'Acadie site (Québec)
Content
Total antioxidant capacity Total
TEACa FRAPb phenolsc
(μmol.mg−1) (μM) (ppm)
Genotype crude aqueous lipophillc crude crude
Saint-Jean d'Orléans 227.4 234.7 29.5 2044.9 107.8
Kent 198.8 228.6 29.6 2131.5 106.1
Least Significant  65.0  54.9  9.6  466.4  42.1
Difference (LSD)
aTEAC: Trolox Equivalent Antioxidant Capacity expressed as μmol Trolox equivalent mg−1 dry weight
bFRAP: Ferric-Reducing Antioxidant expressed as μM FRAP
cTotal phenols expressed as ppm gallic acid equivalent.
  • Fruit:
      • Ratio of length/maximum width.—As long as broad.
      • Length.—Average 2.9 cm.
      • Diameter.—Average 3.2 cm.
      • Predominant shape.—Globose conic.
      • Difference in shape between primary and secondary fruits.—Slight.
      • Band without achenes.—Medium.
      • Size of hollow center.—None.
      • Unevenness of surface.—Weak.
      • Skin color.—RHS 43A.
      • Evenness of color.—Slightly uneven to even.
      • Glossiness.—Strong.
      • Insertion of achenes.—Below the surface of the fruit.
      • Color of achenes.—RHS 150C.
      • Insertion of calyx.—Level to the fruit.
      • Attitude of the calyx segments.—Flat to slightly reflexed.
      • Size of the calyx in relation to fruit diameter.—Same size.
      • Adherence of the calyx.—Strong.
      • Firmness of flesh (when fully ripe).—Firm.
      • Color of flesh.—RHS 43B.
      • Evenness of color of flesh.—Slightly uneven to even.
      • Sweetness.—Medium.
      • Acidity.—Medium.
      • Time of flowering ( 50 % of plants at first flower).—Early.
      • Harvest maturity ( 50 % of plants with ripe fruits).—Early.
      • Type of bearing.—Not everbearing.
‘Saint-Jean d'Orléans’ differs from its parents (‘Joliette’ and ‘L'Acadie’) in terms of fruit shape, calyx and total yield. As stated earlier, the ‘Saint-Jean d'Orléans’ fruit is globose-conic with slightly reflexed sepals, whereas the ‘Joliette’ fruit changes from globose to short-wedge shape during the harvest. ‘Joliette’ skin is reddish and its sepals are not reflexed but cover the fruit. ‘L'Acadie’ fruit is long conic with a white small neck under the calyx, whereas ‘Saint-Jean d'Orléans’ is short conic. The total yield of ‘L'Acadie’ (7696.3 kg/ha) is much lower than that of ‘Saint-Jean d'Orléans’.
‘Saint-Jean d'Orléans’ produces perfect flowers, and attractive and medium size, light red to red, shiny fruits. The flesh is light to medium red almost throughout and very firm. Fresh fruits have a long shelf life and can maintain quality and appearance for up to 4-5 days at room temperature, making it superior to ‘Kent’ for shipping. ‘Saint-Jean d'Orléans’ produces a higher yield than ‘Kent’. ‘Saint-Jean d'Orléans’ is also firmer than ‘Kent’, with similar flavor but lighter skin color.
‘Saint-Jean d'Orléans’ is an early mid-season cultivar (Table 1). Fifty percent of the primary fruit ripen by June 27 which is similar to ‘Kent’ at our substation in L'Acadie and the production peaks were reached on the same day as ‘Kent’.
Chemical analysis of the fruits using HPLC3 revealed that ‘Saint-Jean d'Orléans’ was higher in hydroxycinnamic acids (7.1 ppm p-coumaric acid equivalent), benzoic acids (14 ppm gallic acid equivalent) and flavonols (7.2 ppm quercetin-3-galactoside equivalent). The total phenolic content measured according to Slinkard and Singleton4 was 107.8 ppm gallic acid equivalent; while total anthocyanins was 60.6 ppm cyanidins-3-galactoside equivalent, and ellagic acid was 2.3 ppm. All concentrations except the total anthocyanins and ellagic acid were higher than ‘Kent’ cultivar (4 ppm, 10.7 ppm, 4.2 ppm, 106 ppm, 103.8 ppm,3.9 ppm, respectively). However, the total antioxidant capacity (TEAC and FRAP) of different extracts measured as described by Gao et al.5 and Tsao et al.6 showed that ‘Saint-Jean d'Orléans’ was not significantly different from that recorded by ‘Kent’ (Table 2).
It seems that good storageability, firmness and low susceptibility to diseases of ‘Saint-Jean d'Orléans’ might be due only to the content of some phenolic components rather than to total phenolics. The same can be said about the antioxidant activity. According to Wang et al.7 and Mayr et al.8, phenolics were the main compounds involved in the effective defence of plant tissues against field and postharvest infection or injuries and were significantly more active individually than in combination. It has been shown that benzoic acids have antibacterial, antifungal and antioxidant properties to prevent food spoilage and to enhance quality and shelf life9,10. Lindhard Pedersen11 found that resistance to the diseases of five black currant cultivars was correlated with their high levels of hydroxycinnamic acid derivatives. Moreover, these acids can react with organic molecules such as amino acids to and synthesize toxic secondary metabolites that become highly toxic to the pathogen12.
Foliage characteristics
  • Leaf:
      • Green color of upper side.—RHS 137C.
      • Green color of lower side.—RHS 138C.
      • Blistering (interveinal blisters).—Very week to medium.
      • Number of leaflets.—Three.
  • Terminal leaflet:
      • Length.—Average 7.6 cm.
      • Width.—Average 7.7 cm.
      • Profile.—Cupped.
      • Length/width ratio.—As long as broad to longer than broad.
      • Shape of base.—Obtuse.
      • Shape of teeth.—Acute to obtuse.
  • Petiole:
      • Length.—Average 19 cm.
      • Pubescence.—Medium to medium dense.
      • Pose of hairs.—Outwards.
      • Color.—RHS 143C.
      • Length of stipule.—Average 2.1 cm.
      • Texture of stipule.—Smooth.
Flowers and Inflorescences characteristics
  • Inflorescence:
      • Position relative to foliage.—Below to level with.
      • Attitude of fruiting trusses (at first picking).—Semi erect.
      • Length of fruiting trusses.—Average 18 cm.
  • Flowers:
      • Color.—White (no RHS reference).
      • Flower size.—Average 2.8 cm.
      • Color of calyx.—RHS 141C.
      • Diameter of calyx.—Average 2.7 cm.
      • Diameter of calyx relative to corolla.—Smaller to same size.
      • Diameter of inner calyx relative to outer (on secondary flowers).—Same size to larger.
      • Spacing of petals (secondary flowers with 5 to 6 petals).—Touching.
      • Petal length/width ratio (on secondary flowers).—As long as broad to longer than broad.
‘Saint-Jean d'Orléans’ demonstrates a higher degree of resistance to leaf diseases as compared to ‘Kent’. Its susceptibility to leaf scorch (Diplocarpon earlina Ell. & Ev.) and leaf spot (Mycosphaerella fragariae (Tul.) Lindau) was ranked as moderate to low in trials conducted since 1997.
‘Saint-Jean d'Orléans’ plants perform very well in heavy or sandy soils in a matted row system. It is also adapted to the waiting bed system using plastic mulch.
Tests and trials
Tests and trials for ‘Saint-Jean d'Orléans’ were conducted in matted rows at an experimental farm in l'Acadie, Québec since 1997. A completely randomized design for four replicates (4 plots) was used to evaluate the selections. Each experimental unit was a 4-meter long plot, 50 cm wide. A representative 2 m section of the plot was used for data collection. The remainder was used as guard row.
REFERENCES
    • 1. Khanizadeh, S., B. Thériault, O. Carisse and D. Buszard. 1999. AC-L'Acadie Strawberry. HortScience 34(4):743-744.
    • 2. SAS Institute. 1988. Statistical analysis system. SAS/STAT, SAS/BASIC guide for personal computers, version 6.04 (ed). SAS Inst. Cary., N.C.
    • 3. Tsao, R. and R. Yang. 2003. Optimization of a new mobile phase to know the complex and real Polyphenolic composition: towards a total phenolic index using high-performance liquid chromatography. J. Chromatogr. A. 1018:29-40.
    • 4. Slinkard, K. and V. L. Singleton. 1977. Total phenol analysis: automation and comparison with manual methods. Am. J. Enol. Viticult. 28:49-55.
    • 5. Gao, X., M. Ohlander, N. Jeppsson, L. Bjork and V. Trajkovski. 2000. Changes in antioxidants effects and their relationship to phytonutrients of Sea Buckthorn(Hippophae rhamnoides L) during maturation. J. Agric. Food Chem. 48:1485-1490.
    • 6. Tsao, R., R. Yang and J. C. Yang. 2003. Antioxidant isoflavones in Osage Orange, Maclura pomifera(Raf.) Schneid. J. Agric. Food Chem. 51:6445-6451.
    • 7. Wang, S. Y., J. L. Mass, J. A. Payne and G. Galleta. 1994. Ellagic acid in small fruits, mayhaws, and other plants. J. Small Fruit and Viticulture 2 (4): 39-49.
    • 8. Mayr, U., Michalek, S., Treutter, D. and W. Feucht. 1997. Phenolic compounds of apple and their relationship to scab resistance. J. Phytopathology 145: 69-75.
    • 9. Baldwin E. A., M. O. Nisperos-Carriedo and R. A. Baker. 1995. Use of edible coatings to preserve quality of lightly processed products. Crit. Rev. Food Sci. Nutr. 35:509-24.
    • 10. Khan, S. H., J. Aked and N. Magan. 1995. The potential for anti-oxidant chemicals to control Colletotrichum musae on banana fruit. 51 International Symposium on Crop Protection. Gent (Belgium). V.64 (3b): 531-537.
    • 11. Lindhard Pedersen. 2003. http://www.darcof.dk/research/darcofi/ii1.html
    • 12. Nicholson, R. L., and R. Hammerschmidt. 1992. Phenolic compounds and their role in disease resistance. Annu. Review Phytopathology 30:369-389.

Claims (1)

1. A new and distinct strawberry plant named ‘Saint-Jean d'Orléans’ as described and illustrated herein.
US10/941,875 2004-09-16 2004-09-16 Strawberry plant named ‘Saint-Jean d'Orleans’ Expired - Lifetime USPP18111P3 (en)

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Non-Patent Citations (12)

* Cited by examiner, † Cited by third party
Title
Baldwin E.A. et al. 1995. Use of edible coatings to preserve quality of lightly processed products. Crit. Rev. Food Sci. Nutr. 35:509-24.
Gao, X. et al. 2000. Changes in antioxidanants effects and their. . . (Hyppophae rhamnoides L) during maturation. J. Agric Food Chem. 48:1485-1490.
Khan, S.H. et al. 1999. The potential for anti-oxidant chemicals to control. . . 51 International Symposium on Crop Protection. Gent (Belgium). V.64 (3b): 531-537.
Khanizadeh, S., B. Thériault, O. Carisse and D. Buszard. 1999. AC-'Acadie Strawberry. HortScience 34(4):743-744.
Linhard Pedersen. 2003. http://www.darcof.dk/research/darofi/ii1.html.
Mayr, U. et al. 1997. Phenolic compounds of apple and their relationship to scab resistance. J. Phytopathology 145: 69-75.
Nicholson, R.L.et al. 1992. Phenolic compounds and their role in disease resistance. Annu. Review Phytopathology 30:369-389.
Slinkard, K. et al. 1977. Total phenol analysis: automation and comparison with manual methods. Am. J. Enol. Viticult. 28:49-55.
Tsao, R. et al. 2003. Optimization of a new mobile phase to know the complex. . . J. Chromatogr. A. 1018:29-40.
Tsao, R., et al. 2003. Antioxidant isoflavones in Osage Orange, Maclura pomifera (Raf.) Schneid. J. Agric. Food Chem. 51: 6445-6451.
Upov-rom GTITM, Plant Variety Database, 2006/01, GTI Jouve Retrieval Software, Citation for Fragaria 'Saint-Jean d'Orleans' one page. *
Wang, S.Y. et al. 1994. Ellagic acid in small fruits, mayhaws, and other plants. J. Small Fruit and Viticulture 2 (4): 39-49.

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USPP16838P3 (en) Strawberry plant named ‘Saint-Laurent d'Orleans’
Thompson et al. Dakota Pearl: An attractive, bright white-skinned, cold-chipping cultivar with tablestock potential
USPP28753P2 (en) Kiwi plant named ‘HFR18’
USPP17670P3 (en) Strawberry plant named ‘Orleans’
USPP36134P3 (en) Strawberry plant named ‘CBC015’
USPP36249P3 (en) Hop plant named ‘HS15619’
USPP10191P (en) Strawberry plant called `MNUS 210`
Khanizadeh et al. 'Saint-Laurent d'Orléans' Strawberry
US20190069456P1 (en) Strawberry plant named 'ARCHER'
USPP32743P3 (en) Kiwi plant named ‘AC 497 076’
USPP30915P3 (en) Pomegranate tree named ‘YAIN’
USPP18340P3 (en) Strawberry variety named ‘Wendy’
Khanizadeh et al. Harmonie'Strawberry
US20050034201P1 (en) Strawberry variety named 'Evangeline'
US20150128313P1 (en) Blueberry plant denominated 'Osorno'
Plaisted et al. Andover: An early to midseason golden nematode resistant variety for use as chipstock or tablestock
USPP22320P3 (en) Olive tree named ‘SEPOKA’
USPP22319P3 (en) Olive tree named ‘MASEPO’
USPP24613P3 (en) Strawberry plant named ‘Herriot’
USPP8333P (en) Blackberry plant named Illini Hardy
USPP27980P3 (en) Grapevine named ‘SAUVIGNON KRETOS’

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