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Bio-chemical properties and susceptibility to fire blight (Erwinia amylovora Burrill) of scab-resistant apple cultivars (Malus domestica Borkh.)


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Beber M., 2009. Characteristics of scab resistant apple cultivars. Proc. 2nd Symposium Innovation in Fruit Growing, February 10-11, Belgrade, 129-137.Search in Google Scholar

Ceymann M., Arrigoni A., Scharer H., Bozzi Nising A, Hurrell R., 2012. Identification of apples rich in health-promoting flavan-3-ols and phenolic acids by measuring the polyphenol profile. J. Food Comp. Anal. 26, 128-135.10.1016/j.jfca.2011.12.002Search in Google Scholar

Drogoudi P.D., Michailidis Z., Pantelidis G., 2008. Peel and flesh antioxidant content and harvest quality characteristics of seven apple cultivars. Sci. Hortic. 115, 149-153.10.1016/j.scienta.2007.08.010Search in Google Scholar

Duda-Chodak A., Tarko T., Satora P., Sroka P., Tuszynski T., 2010. The profile of polyphenols and antioxidant properties of selected apple cultivars grown in Poland. J. Fruit Ornam. Plant Res. 18(2), 39-50.Search in Google Scholar

Gunen Y., Misirli A., Gulcan R., 2005. Leaf phenolic content of pear cultivars resistant or susceptible to fire blight. Sci. Hortic. 105(2), 213-221.10.1016/j.scienta.2005.01.014Search in Google Scholar

Harris D.C., 2000. Using a PH electrode for an acid-base titration. In: Quantitative Chemical Analysis. D.C. Harris (Ed.), Freeman, New York, NY, USA, 37-40.Search in Google Scholar

Jackson J., 2000. Apple production at low latitudes. In: Temperate Fruit Crops in Warm Climates. A. Erez (Ed.), Springer, Netherlands, 305-342.10.1007/978-94-017-3215-4_11Search in Google Scholar

Korba J., Šillerová J., Kůdela V., 2008. Resistance of apple varieties and selections to Erwinia amylovora in the Czech Republic. Plant Protect. Sci. 44, 91-96.10.17221/19/2008-PPSSearch in Google Scholar

Kühn B.F., Andersen T.T., Pedersen H.L., 2003. Evaluation of 14 old unsprayed apple varieties. Biol. Agric. Hortic. 20(4), 301-310.10.1080/01448765.2003.9754975Search in Google Scholar

Lata B., Tomala K., 2007. Apple peel as a contributor to whole fruit quantity of potentially healthful bioactive compounds. Cultivar and year Implication. J. Agric. Food Chem. 55, 10795-10802.10.1021/jf072035p18038983Search in Google Scholar

Lata B., Trampczynska A., Paczesna J., 2009. Cultivar variation in apple peel and whole fruit phenolic composition. Sci. Hortic. 121(2), 176-181.10.1016/j.scienta.2009.01.038Search in Google Scholar

Lauri P.E., Willaume M., Larrive G., Lespinasse J.M., 2004. The concept of centrifugal training in apple aimed at optimizing the relationship between growth and fruiting. Acta Hortic. 636, 35-42.10.17660/ActaHortic.2004.636.3Search in Google Scholar

Li P., Castagnoli S., Cheng L., 2008. Red ‘Anjou’ pear has a higher photoprotective capacity than green ‘Anjou’. Physiol. Plant. 134, 486-498.10.1111/j.1399-3054.2008.01155.x18715235Search in Google Scholar

Mikiciński A., Sobiczewski P., Puławska J., Maciorowski R. 2016. Control of fire blight (Erwinia amylovora) by a novel strain 49M of Pseudomonas graminis from the phyllosphere of apple (Malus spp.). Eur. J. Plant Pathol. 145(2), 265-276.10.1007/s10658-015-0837-ySearch in Google Scholar

Mikulič-Petkovšek M., Štampar F., Veberič R. 2007. Parameters of inner quality of the apple scab resistant and susceptible apple cultivars (Malus domestica Borkh.). Sci. Hortic. 114, 37-44.10.1016/j.scienta.2007.05.004Search in Google Scholar

Mikulič-Petkovšek M., Štampar F., Veberič R., 2009. Changes in the inner quality parameters of apple fruit from technological to edible maturity. Acta Agric. Slov. 93, 17-29.10.2478/v10014-009-0003-3Search in Google Scholar

Mikulič-Petkovšek M., Štampar F., Veberič R., 2009. Accumulation of phenolic compounds in apple in response to infection by the scab pathogen, Venturia inaequalis. Physiol. Mol. Plant Pathol. 74(1), 60-67.10.1016/j.pmpp.2009.09.003Search in Google Scholar

Mratinić E., Fotirić-Akšić M., 2011. Evaluation of phenotypic diversity of apple (Malus sp.) germplasm through the principle component analysis. Genetika 43, 331-340.10.2298/GENSR1102331MSearch in Google Scholar

Panzella L., Petriccione M., Rego P., Scortichini M., Napolitano A., 2013. A reappraisal of traditional apple cultivars from Southern Italy as a rich source of phenols with superior antioxidant activity. Food Chem. 140, 672-679.10.1016/j.foodchem.2013.02.12123692752Search in Google Scholar

Planchon V., Lateur M., Dupont P., Lognay G., 2004. Ascorbic acid level of Belgian apple genetic resources. Sci. Hortic. 100, 51-61.10.1016/j.scienta.2003.08.003Search in Google Scholar

Radivojević D., Milivojević J., Oparnica Č., Vulić T., Đorđević B., Ercisli S., 2014. Impact of early cropping on vegetative development, productivity, and fruit quality of Gala and Braeburn apple trees. Turk. J. Agric. For., 38, 773-780.10.3906/tar-1403-83Search in Google Scholar

Saei A., Tustin D.S., Zamani Z., Talaie A., Hall A.J., 2011. Cropping effects on the loss of apple fruit firmness during storage: the relationship between texture retention and fruit dry matter concentration. Sci. Hortic. 130, 256-265.10.1016/j.scienta.2011.07.008Search in Google Scholar

Šavikin K., Mikulič-Petkovšek M., Djordjević B., Zdunić G., Janković T., Djurović D., Veberič R., 2013. Influence of shading net on polyphenol profile and radical scavengingactivity in different varieties of black currant berries. Sci. Hortiic. 160, 20-28.10.1016/j.scienta.2013.05.007Search in Google Scholar

Streif J., 1996. Optimum harvest date for different apple cultivars in the ‘Bodensee’ area. In: The Postharvest Treatment of Fruit and Vegetables: Determination and Prediction of Optimum Harvest Date of Apple and Pears. De Jager, A., Johnson, D., Hohn, E. (Eds.), COST, Brussels, Belgium, 15-20.Search in Google Scholar

Tavarini S., Deglinnocenti E., Remorini D., Massai R., Guidi L., 2008. Antioxidant capacity, ascorbic acid, total phenols and carotenoids changes during harvest and after storage of Hayward kiwifruit. Food Chem. 107, 282-288.10.1016/j.foodchem.2007.08.015Search in Google Scholar

Treder W., Mika A., Krzewińska D., 2010. Relations between tree age, fruit load and mean fruit weight. J. Fruit Ornam. Plant Res. 18, 139-149.Search in Google Scholar

Treutter D., 2005. Significance of flavonoids in plant resistance and enhancement of their biosynthesis. Plant Biol. 7, 581-591.10.1055/s-2005-87300916388461Search in Google Scholar

Tsao R., Yang R., Young J.C., Zhu H., 2003. Polyphenolic profiles in eight apple cultivars using high-performance liquid chromatography (HPLC). J. Agric. Food Chem. 51, 6347-6353.10.1021/jf034629814518966Search in Google Scholar

Usenik V., Mikulic-Petkovsek M., Solar A, Stampar, F., 2004. Flavonols of leaves in relation to apple scab resistance. Z. Pflanzenkr. Pflanzenschutz. 111, 137-144.10.1007/BF03356139Search in Google Scholar

Vanneste J.L., 2000. Fire Blight: The Disease and its Causative Agent, Erwinia amylovora. CABI Publishing, Wallingford, UK.10.1079/9780851992945.0000Search in Google Scholar

Veberic R., Trobec M., Herbinger K., Hofer M., Grill D., Stampar F., 2005. Phenolic compounds in some apple (Malus domestica Borkh) cultivars of organic and integrated production. J. Sci. Food Agric. 85, 1687-1694.10.1002/jsfa.2113Search in Google Scholar

eISSN:
2083-5965
Język:
Angielski
Częstotliwość wydawania:
2 razy w roku
Dziedziny czasopisma:
Life Sciences, Plant Science, Zoology, Ecology, other