Artigos de revistas sobre o tema "Grapes Growth"
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Sopon, Anek, Ekthida Thongdet, Porntep Punnarak e Sucharat Suksai. "The Potential of Sea Grapes (Caulerpa Lentilifera) Extracted Polysaccharide as Prebiotics on Inhibiting Pathogenic Bacteria Vibrio Parahaemolyticus". International Journal of Environmental Science and Development 11, n.º 12 (2020): 572–76. http://dx.doi.org/10.18178/ijesd.2020.11.12.1309.
Texto completo da fonteSusin, Eliane, Wendel Paulo Silvestre e Carine Cocco. "Effect of the application of abscisic acid and ethephon on the quality of Merlot grapes grown in Serra Gaúcha, South Brazil". Research, Society and Development 11, n.º 16 (11 de dezembro de 2022): e370111638513. http://dx.doi.org/10.33448/rsd-v11i16.38513.
Texto completo da fonteTERRA, MICHELLE F., NATHASHA de A. LIRA, FABIANA R. F. PASSAMANI, WILDER DOUGLAS SANTIAGO, MARIA das GRAÇAS CARDOSO e LUÍS ROBERTO BATISTA. "Effect of Fungicides on Growth and Ochratoxin A Production by Aspergillus carbonarius from Brazilian Wine Grapes". Journal of Food Protection 79, n.º 9 (1 de setembro de 2016): 1508–16. http://dx.doi.org/10.4315/0362-028x.jfp-16-037.
Texto completo da fonteGorbunov, I., Aleksey Luk'yanov e Stanislav Mihaylovskiy. "Ecological conditions of growth and variability of the main morpho-biological indicators of wild forms of Kuban grapes". Agrarian Bulletin of the 213, n.º 10 (26 de novembro de 2021): 21–30. http://dx.doi.org/10.32417/1997-4868-2021-213-10-21-30.
Texto completo da fonteWang, Ying, Tingting Xue, Xing Han, Lingxiao Guan, Liang Zhang, Hua Wang e Hua Li. "Kaolin Particle Film Affects Grapevine Berry Quality in cv. Meili in Humid Climate Conditions". HortScience 55, n.º 12 (dezembro de 2020): 1987–2000. http://dx.doi.org/10.21273/hortsci15364-20.
Texto completo da fonteTikhomirova, N. A., M. R. Beibulatov, N. A. Urdenko e R. A. Buival. "ECONOMIC EFFICIENCY OF TABLE GRAPEVINE VARIETIES’ CULTIVATION". Russian Vine 14 (25 de dezembro de 2020): 85–89. http://dx.doi.org/10.32904/2712-8245-2020-14-85-89.
Texto completo da fonteTemplalexis, Charalampos, Paola Giorni, Diamanto Lentzou, Sabrina Mesisca, Dimitrios I. Tsitsigiannis, Paola Battilani e Georgios Xanthopoulos. "Environmental Conditions Affecting Ochratoxin A During Solar Drying of Grapes: The Case of Tunnel and Open Air-Drying". Toxins 13, n.º 6 (3 de junho de 2021): 400. http://dx.doi.org/10.3390/toxins13060400.
Texto completo da fonteSudjarwo, Gogol, Suyadi Suyadi, Aminudin Afandhi e Hagus Tarno. "Strategy for Managing the Potential for the Development of Environmentally Friendly Superior Grapes Products in the Probolinggo City". International Journal of Social Science Research and Review 5, n.º 12 (3 de janeiro de 2023): 692–99. http://dx.doi.org/10.47814/ijssrr.v5i12.844.
Texto completo da fonteMiao, Yubin, Leilei Huang e Shu Zhang. "A Two-Step Phenotypic Parameter Measurement Strategy for Overlapped Grapes under Different Light Conditions". Sensors 21, n.º 13 (1 de julho de 2021): 4532. http://dx.doi.org/10.3390/s21134532.
Texto completo da fonteZaitseva, Olga, Elena Ostroukhova, Irina Peskova e Maria Vyugina. "SO2 binding complex of grapes and factors of its formation". E3S Web of Conferences 285 (2021): 05023. http://dx.doi.org/10.1051/e3sconf/202128505023.
Texto completo da fonteArtem, Victoria, e Arina Oana Antoce. "Enhancement Of Cabernet Sauvignon Wine Volatile Profile By Organic Cultivation Confirmed With An Electronic Nose". “Agriculture for Life, Life for Agriculture” Conference Proceedings 1, n.º 1 (1 de julho de 2018): 244–49. http://dx.doi.org/10.2478/alife-2018-0036.
Texto completo da fonteKanchanomai, Chaorai, Kazuhiro Nakano, Sila Kittiwachana, Chanida Krongchai, Shintaroh Ohashi, Phonkrit Maniwara, Parichat Theanjumpol e Daruni Naphrom. "Seedlessness detection in ‘White Malaga’ table grapes using near-infrared spectroscopy". International Food Research Journal 29, n.º 4 (19 de agosto de 2022): 806–13. http://dx.doi.org/10.47836/ifrj.29.4.08.
Texto completo da fonteBHAT, Zahoor Ahmad, Rizwan RASHID e Javid Ahmad BHAT. "Effect of Plant Growth Regulators on Leaf Number, Leaf Area and Leaf Dry Matter in Grape". Notulae Scientia Biologicae 3, n.º 1 (7 de março de 2011): 87–90. http://dx.doi.org/10.15835/nsb315595.
Texto completo da fonteAlmeida, Rodrigo P. P., e Alexander H. Purcell. "Biological Traits of Xylella fastidiosa Strains from Grapes and Almonds". Applied and Environmental Microbiology 69, n.º 12 (dezembro de 2003): 7447–52. http://dx.doi.org/10.1128/aem.69.12.7447-7452.2003.
Texto completo da fonteANGAMUTHU, Dr R. "A STUDY ON TREND AND GROWTH OF GRAPE IN TAMIL NADU". Psychology and Education Journal 58, n.º 2 (20 de fevereiro de 2021): 6579–85. http://dx.doi.org/10.17762/pae.v58i2.3191.
Texto completo da fontePerl, M., U. Lavi e P. Spiegel Roy. "Estimation of Seed Traces in Grape Berries by Inhibition of Luciferase Activity". HortScience 24, n.º 5 (outubro de 1989): 853. http://dx.doi.org/10.21273/hortsci.24.5.853.
Texto completo da fonteGorbunov, I. V., e A. A. Lukyanov. "New studies of wild-growing grapes of Kuban: ecology, morphology, variability". E3S Web of Conferences 254 (2021): 01021. http://dx.doi.org/10.1051/e3sconf/202125401021.
Texto completo da fonteColombo, Ronan, Deived Carvalho, Maria Cruz, Ciro Sumida, Saeed Ahmed, Paulo Bassoli, Reginaldo Souza e Sergio Roberto. "Cold Storage and Biocontrol Agents to Extend the Storage Period of ‘BRS Isis’ Seedless Table Grapes". Horticulturae 4, n.º 3 (15 de agosto de 2018): 18. http://dx.doi.org/10.3390/horticulturae4030018.
Texto completo da fonteGorbunov, Ivan, Stanislav Mikhailovskiy e Olga Byhalova. "Wild grapes of Kuban, their ecological and biological features of growth". BIO Web of Conferences 25 (2020): 02007. http://dx.doi.org/10.1051/bioconf/20202502007.
Texto completo da fonteLevchenko, Svetlana, Sofia Cherviak, Vladimir Boyko, Dmitriy Belash e Alexander Romanov. "The influence of foliar treatment on the quality of table grape during storage". E3S Web of Conferences 316 (2021): 03015. http://dx.doi.org/10.1051/e3sconf/202131603015.
Texto completo da fonteMaor, Uriel, Omer Barda, Sudharsan Sadhasivam, Yang Bi, Varda Zakin, Dov B. Prusky e Edward Sionov. "Host Factors Modulating Ochratoxin A Biosynthesis during Fruit Colonization by Aspergillus carbonarius". Journal of Fungi 7, n.º 1 (28 de dezembro de 2020): 10. http://dx.doi.org/10.3390/jof7010010.
Texto completo da fonteLi, Wenjie, Jingfeng Huang, Lingbo Yang, Yan Chen, Yahua Fang, Hongwei Jin, Han Sun e Ran Huang. "A Practical Remote Sensing Monitoring Framework for Late Frost Damage in Wine Grapes Using Multi-Source Satellite Data". Remote Sensing 13, n.º 16 (14 de agosto de 2021): 3231. http://dx.doi.org/10.3390/rs13163231.
Texto completo da fonteCOZZI, G., M. HAIDUKOWSKI, G. PERRONE, A. VISCONTI e A. LOGRIECO. "Influence of Lobesia botrana Field Control on Black Aspergilli Rot and Ochratoxin A Contamination in Grapes". Journal of Food Protection 72, n.º 4 (1 de abril de 2009): 894–97. http://dx.doi.org/10.4315/0362-028x-72.4.894.
Texto completo da fonteGadoury, David M., Robert C. Seem, Roger C. Pearson, Wayne F. Wilcox e Richard M. Dunst. "Effects of Powdery Mildew on Vine Growth, Yield, and Quality of Concord Grapes". Plant Disease 85, n.º 2 (fevereiro de 2001): 137–40. http://dx.doi.org/10.1094/pdis.2001.85.2.137.
Texto completo da fontePanova, Maria. "Formation of seedless berries in Codrianka grapes with the use of growth regulators". АгроЭкоИнфо 6, n.º 54 (31 de dezembro de 2022): 28. http://dx.doi.org/10.51419/202126628.
Texto completo da fonteThiéry, D., K. Monceau e J. Moreau. "Different emergence phenology of European grapevine moth (Lobesia botrana, Lepidoptera: Tortricidae) on six varieties of grapes". Bulletin of Entomological Research 104, n.º 3 (7 de junho de 2013): 277–87. http://dx.doi.org/10.1017/s000748531300031x.
Texto completo da fonteCheng, Guo, Sihong Zhou, Jinbiao Liu, Qiyan Feng, Rongfu Wei, Huan Yu, Bo Wang, Ying Zhang e Xianjin Bai. "Widely Targeted Metabolomics Provides New Insights into the Flavonoid Metabolism in ‘Kyoho’ Grapes under a Two-Crop-a-Year Cultivation System". Horticulturae 9, n.º 2 (26 de janeiro de 2023): 154. http://dx.doi.org/10.3390/horticulturae9020154.
Texto completo da fonteMendoza-Espinosa, L. G., A. Cabello-Pasini, V. Macias-Carranza, W. Daessle-Heuser, M. V. Orozco-Borbón e A. L. Quintanilla-Montoya. "The effect of reclaimed wastewater on the quality and growth of grapevines". Water Science and Technology 57, n.º 9 (1 de maio de 2008): 1445–50. http://dx.doi.org/10.2166/wst.2008.242.
Texto completo da fonteKulakiotu, Eleni K., Constantine C. Thanassoulopoulos e Evangelos M. Sfakiotakis. "Postharvest Biological Control of Botrytis cinerea on Kiwifruit by Volatiles of [Isabella] Grapes". Phytopathology® 94, n.º 12 (dezembro de 2004): 1280–85. http://dx.doi.org/10.1094/phyto.2004.94.12.1280.
Texto completo da fonteXue, Hui, Yoshihiko Sekozawa e Sumiko Sugaya. "Investigating the Aromatic Compound Changes in Table Grape Varieties during Growth and Development, Using HS-SPME-GC/MS". Horticulturae 9, n.º 1 (9 de janeiro de 2023): 85. http://dx.doi.org/10.3390/horticulturae9010085.
Texto completo da fonteZARIPOVA, K. F., e A. K. RADZHABOV. "RESULTS OF THE TEST OF NEW GENERATION GEL FERTILIZERS ON THE TABLE GRAPE OF THE ITALY VARIETY IN THE MOUNTAIN VALLEY CRIMEA". Izvestiâ Timirâzevskoj selʹskohozâjstvennoj akademii, n.º 1 (2022): 5–11. http://dx.doi.org/10.26897/0021-342x-2022-1-5-11.
Texto completo da fonteTardáguila, Javier, e Fernando Martínez de Toda. "Assessment of tempranillo grapes quality in the vineyard by Vitur score-sheet". OENO One 42, n.º 1 (31 de março de 2008): 59. http://dx.doi.org/10.20870/oeno-one.2008.42.1.833.
Texto completo da fonteRice, Somchai, Devin Maurer, Anne Fennell, Murlidhar Dharmadhikari e Jacek Koziel. "Evaluation of Volatile Metabolites Emitted In-Vivo from Cold-Hardy Grapes during Ripening Using SPME and GC-MS: A Proof-of-Concept". Molecules 24, n.º 3 (1 de fevereiro de 2019): 536. http://dx.doi.org/10.3390/molecules24030536.
Texto completo da fonteKolesnov, A., M. Zenina, S. Tsimbalaev, G. Tereshenko, L. Torshina, N. Anikina, N. Gnilomedova et al. "Mass-spectrometric study on 13C/12C carbon and 18O/16O oxygen stable isotopes distributions in grapes and wines from the Black Sea regions". BIO Web of Conferences 12 (2019): 02036. http://dx.doi.org/10.1051/bioconf/20191202036.
Texto completo da fonteCyr, Don, Roger D. Hanagriff e Lester M. K. Kwong. "What is Making Investment in the Texas Vineyard Industry Tick? A Real Options Analysis of Entry and Exit". Journal of Wine Economics 5, n.º 2 (2010): 236–55. http://dx.doi.org/10.1017/s1931436100000936.
Texto completo da fonteStevens, C., V. A. Khan, J. Y. Lu, M. K. Kabwe, Z. Haung, M. A. Wilson e J. E. Brown. "THE EFFECT OF SOIL SOLARIZATION ON GROWTH AND UNEVEN RIPENING OF `CARLOS' MUSCADINE GRAPES". HortScience 26, n.º 5 (maio de 1991): 486e—486. http://dx.doi.org/10.21273/hortsci.26.5.486e.
Texto completo da fonteQiu, Chang, Guangzhao Tian, Jiawei Zhao, Qin Liu, Shangjie Xie e Kui Zheng. "Grape Maturity Detection and Visual Pre-Positioning Based on Improved YOLOv4". Electronics 11, n.º 17 (26 de agosto de 2022): 2677. http://dx.doi.org/10.3390/electronics11172677.
Texto completo da fonteVeljovic, Mile, Sasa Despotovic, Milan Stojanovic, Sonja Pecic, Predrag Vukosavljevic, Miona Belovic e Ida Leskosek-Cukalovic. "The fermentation kinetics and physicochemical properties of special beer with addition of Prokupac grape variety". Chemical Industry and Chemical Engineering Quarterly 21, n.º 3 (2015): 391–97. http://dx.doi.org/10.2298/ciceq140415041v.
Texto completo da fonteLu, Jiang, Olusola Lamikanra e Stephen Leong. "Induction of Seedlessness in `Triumph' Muscadine Grape (Vitis rotundifolia Michx.) by Applying Gibberellic Acid". HortScience 32, n.º 1 (fevereiro de 1997): 89–90. http://dx.doi.org/10.21273/hortsci.32.1.89.
Texto completo da fonteChoi, Dong-Yong, e Seon-Kyu Kim. "EFFECT OF TRAINING SYSTEM AND PLANTING DENSITY ON GROWTH, YIELD, AND FRUIT QUALITY OF YOUNG GRAPEVINES". HortScience 27, n.º 6 (junho de 1992): 637b—637. http://dx.doi.org/10.21273/hortsci.27.6.637b.
Texto completo da fontePanova, Maria. "The influence of growth regulators on the quality of the harvest of grapes varieties Moskovskij ustojchivyj and Khasansky Bousa in the conditions of Moscow". АгроЭкоИнфо 6, n.º 48 (18 de dezembro de 2021): 25. http://dx.doi.org/10.51419/20216625.
Texto completo da fonteDONICI, Alina, Claudiu Ioan BUNEA, Anamaria CĂLUGĂR, Eugenia HARSAN e Florin Dumitru BORA. "Investigation of the Copper Content in Vineyard Soil, Grape, Must and Wine in the Main Vineyards of Romania: a Preliminary Study". Bulletin of University of Agricultural Sciences and Veterinary Medicine Cluj-Napoca. Horticulture 76, n.º 1 (12 de junho de 2019): 31. http://dx.doi.org/10.15835/buasvmcn-hort:2018.0017.
Texto completo da fonteGómez-Albarrán, Carolina, Clara Melguizo, Belén Patiño, Covadonga Vázquez e Jéssica Gil-Serna. "Diversity of Mycobiota in Spanish Grape Berries and Selection of Hanseniaspora uvarum U1 to Prevent Mycotoxin Contamination". Toxins 13, n.º 9 (13 de setembro de 2021): 649. http://dx.doi.org/10.3390/toxins13090649.
Texto completo da fonteGorbunov, I., e A. Lukyanova. "Preservation and study of genetic resources of grapes on the ampelographic collection of the Anapa zonal experimental station of viticulture and winemaking". Agrarian Bulletin of the 195, n.º 4 (13 de maio de 2020): 47–55. http://dx.doi.org/10.32417/1997-4868-2020-195-4-47-55.
Texto completo da fonteFang, Xiang, Qinchun Duan, Zhuo Wang, Fuyun Li, Jianxiong Du, Wencan Ke, Diru Liu, Ross C. Beier, Xusheng Guo e Ying Zhang. "Products of Lactobacillus delbrueckii subsp. bulgaricus Strain F17 and Leuconostoc lactis Strain H52 Are Biopreservatives for Improving Postharvest Quality of ‘Red Globe’ Grapes". Microorganisms 8, n.º 5 (30 de abril de 2020): 656. http://dx.doi.org/10.3390/microorganisms8050656.
Texto completo da fonteSpiers, James M., e John H. Braswell. "NITROGEN FERTILIZATION AFFECTS MUSCADINE GRAPES". HortScience 27, n.º 11 (novembro de 1992): 1178c—1178. http://dx.doi.org/10.21273/hortsci.27.11.1178c.
Texto completo da fonteNovikova, Liubov Yu, e Lyudmila G. Naumova. "Dependence of Fresh Grapes and Wine Taste Scores on the Origin of Varieties and Weather Conditions of the Harvest Year in the Northern Zone of Industrial Viticulture in Russia". Agronomy 10, n.º 10 (21 de outubro de 2020): 1613. http://dx.doi.org/10.3390/agronomy10101613.
Texto completo da fonteAgeeva, Natalya Mikhailovna, Vladimir Aramovich Markosov, Irina Anatol'yevna Ilyina e Aleksandr Vyacheslavovich Dergunov. "PHENOLIC COMPOUNDS OF RED GRAPE VARIETIES GROWING IN THE KRASNODAR TERRITORY". chemistry of plant raw material, n.º 2 (10 de junho de 2021): 201–8. http://dx.doi.org/10.14258/jcprm.2021027427.
Texto completo da fonteErgun, Muharrem, e Ezgi Dogan. "Use of hydrogen peroxide, citric acid and sodium hypochlorite as sanitizer for minimally processed table grapes". Ciência e Técnica Vitivinícola 33, n.º 1 (2018): 58–65. http://dx.doi.org/10.1051/ctv/20183301058.
Texto completo da fontePolukhina, E. V., e M. V. Vlasenko. "Assessment of agricultural techniques of grape cultivation in arid conditions of southern Russia based on analysis of variance". IOP Conference Series: Earth and Environmental Science 954, n.º 1 (1 de janeiro de 2022): 012061. http://dx.doi.org/10.1088/1755-1315/954/1/012061.
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