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1521por Nwafor, Chinedu Charles, Gribaudo, Ivana, Schneider, Anna, Wehrens, Ron, Grando, Maria Stella, Costantini, Laura“…Parthenocarpy and stenospermocarpy have been described as the main phenomena responsible for seedlessness in Vitis vinifera. However, the key genes underpinning molecular and cellular processes that play a significant role in seed development are not well characterized. …”
Publicado 2014
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1522“…BACKGROUND: Individual berries in a grape (Vitis vinifera L.) cluster enter the ripening phase at different times leading to an asynchronous cluster in terms of ripening. …”
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1523por Gupta, Vikas, Estrada, April D, Blakley, Ivory, Reid, Rob, Patel, Ketan, Meyer, Mason D, Andersen, Stig Uggerhøj, Brown, Allan F, Lila, Mary Ann, Loraine, Ann E“…Genome-guided assembly of RNA-Seq read alignments combined with output from ab initio gene finders produced around 60,000 gene models, of which more than half were similar to proteins from other species, typically the grape Vitis vinifera. Comparison of gene models to the PlantCyc database of metabolic pathway enzymes identified candidate genes involved in synthesis of bioactive compounds, including bixin, an apocarotenoid with potential disease-fighting properties, and defense-related cyanogenic glycosides, which are toxic. …”
Publicado 2015
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1524por Belli Kullan, Jayakumar, Lopes Paim Pinto, Daniela, Bertolini, Edoardo, Fasoli, Marianna, Zenoni, Sara, Tornielli, Giovanni Battista, Pezzotti, Mario, Meyers, Blake C., Farina, Lorenzo, Pè, Mario Enrico, Mica, Erica“…Here we present a comprehensive picture of miRNA regulation in Vitis vinifera L. plant during its complete life cycle. …”
Publicado 2015
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1525“…RESULTS: In this study, we identified 10, 6, 13 and 28 WRKY III genes in the genomes of Populus trichocarpa, grape (Vitis vinifera), Arabidopsis thaliana and rice (Oryza sativa), respectively. …”
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1526por Rossdeutsch, Landry, Edwards, Everard, Cookson, Sarah J., Barrieu, François, Gambetta, Gregory A., Delrot, Serge, Ollat, Nathalie“…RESULTS: Although transpiration and ABA responses were well-conserved among the genotypes, multifactorial analyses separated Vitis vinifera varieties and V. berlandieri x V. rupestris hybrids (all considered drought tolerant) from the other genotypes studied. …”
Publicado 2016
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1527por Jeudy, Christian, Adrian, Marielle, Baussard, Christophe, Bernard, Céline, Bernaud, Eric, Bourion, Virginie, Busset, Hughes, Cabrera-Bosquet, Llorenç, Cointault, Frédéric, Han, Simeng, Lamboeuf, Mickael, Moreau, Delphine, Pivato, Barbara, Prudent, Marion, Trouvelot, Sophie, Truong, Hoai Nam, Vernoud, Vanessa, Voisin, Anne-Sophie, Wipf, Daniel, Salon, Christophe“…Using this versatile experimental setup, we illustrate how some morphometric root traits can be determined for various species including model (Medicago truncatula), crops (Pisum sativum, Brassica napus, Vitis vinifera, Triticum aestivum) and weed (Vulpia myuros) species grown under non-limiting conditions or submitted to various abiotic and biotic constraints. …”
Publicado 2016
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1528“…The fruit color of Chinese wild grapes is generally black, and the profile of anthocyanins in Chinese wild grapes is significantly different from that of Vitis vinifera. However, V. davidii is the only species that possesses white berry varieties among Chinese wild grape species. …”
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1529por González-Chang, Mauricio, Boyer, Stéphane, Lefort, Marie-Caroline, Nboyine, Jerry, Wratten, Steve D.“…In New Zealand, the endemic scarab pest Costelytra zealandica (White) causes severe defoliation on different horticultural crops, including grape vines (Vitis vinifera). Understanding flight and landing behaviours of this pest can help inform pest management decisions. …”
Publicado 2017
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1530por Gascuel, Quentin, Diretto, Gianfranco, Monforte, Antonio J., Fortes, Ana M., Granell, Antonio“…Similarly, heirloom/traditional varieties could be used to identify which genes contribute to flavor and health quality and, at the same time, serve as a good source of the best alleles for organoleptic quality improvement. Grape (Vitis vinifera L.) and tomato (Solanum lycopersicum L.) produce fleshy, berry-type fruits, among the most consumed in the world. …”
Publicado 2017
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1531“…We report physiological, anatomical and molecular differences in two economically important grapevine (Vitis vinifera L.) cultivars cv. Grenache (near-isohydric) and Chardonnay (anisohydric) in their response to water-stress induced cavitation. …”
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1532por Marasco, Ramona, Rolli, Eleonora, Fusi, Marco, Michoud, Grégoire, Daffonchio, Daniele“…BACKGROUND: The plant compartments of Vitis vinifera, including the rhizosphere, rhizoplane, root endosphere, phyllosphere and carposphere, provide unique niches that drive specific bacterial microbiome associations. …”
Publicado 2018
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1533por Guarnaccia, V., Groenewald, J.Z., Woodhall, J., Armengol, J., Cinelli, T., Eichmeier, A., Ezra, D., Fontaine, F., Gramaje, D., Gutierrez-Aguirregabiria, A., Kaliterna, J., Kiss, L., Larignon, P., Luque, J., Mugnai, L., Naor, V., Raposo, R., Sándor, E., Váczy, K.Z., Crous, P.W.“…In this study we explore the occurrence, diversity and pathogenicity of Diaporthe spp. associated with Vitis vinifera in major grape production areas of Europe and Israel, focusing on nurseries and vineyards. …”
Publicado 2018
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1534por Ruperti, Benedetto, Botton, Alessandro, Populin, Francesca, Eccher, Giulia, Brilli, Matteo, Quaggiotti, Silvia, Trevisan, Sara, Cainelli, Nadia, Guarracino, Paola, Schievano, Elisabetta, Meggio, Franco“…To fill this gap, we aimed to gain insights into the transcriptional and metabolic changes induced by flooding on grapevine roots (K5BB rootstocks), on which cv Sauvignon blanc (Vitis vinifera L.) plants were grafted. A preliminary experiment under hydroponic conditions enabled the identification of transiently and steadily regulated hypoxia-responsive marker genes and drafting a model for response to oxygen deprivation in grapevine roots. …”
Publicado 2019
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1535“…In this study, we surveyed the expression dynamics of lncRNAs in grapevine (Vitis vinifera L.) under cold stress using high-throughput sequencing. …”
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1536por Carlin, Silvia, Masuero, Domenico, Guella, Graziano, Vrhovsek, Urska, Mattivi, Fulvio“…MeSA was found in Vitis riparia grapes, in Vitis vinifera sp. and in the Frontenac interspecific hybrid. …”
Publicado 2019
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1537por Pereira, Giuliano E., Padhi, Emily M. T., Girardello, Raul C., Medina-Plaza, Cristina, Tseng, Dave, Bruce, Robert C., Erdmann, Jesse N., Kurtural, Sahap K., Slupsky, Carolyn M., Oberholster, Anita“…The objective of this study was to evaluate the effect of trunk girdling applied at veraison, in ‘Cabernet Sauvignon’ wine grapes (Vitis vinifera L.), on agronomical and physiological parameters during vine development from the onset of ripening (veraison) to harvest, and additionally to quantify the effect of girdling on primary and secondary metabolism. …”
Publicado 2020
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1538por Sun, Lei, Li, Shenchang, Jiang, Jianfu, Tang, Xiaoping, Fan, Xiucai, Zhang, Ying, Liu, Jihong, Liu, Chonghuai“…To further explore the coloring mechanism of grape berries, the F1 population of Vitis vinifera ‘Red Globe’ × ‘Muscat Hamburg’ was used to map the color locus, and transcriptome analysis was performed to assist in screening candidate genes. …”
Publicado 2020
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1539por Crous, P.W., Wingfield, M.J., Schumacher, R.K., Akulov, A., Bulgakov, T.S., Carnegie, A.J., Jurjević, Ž., Decock, C., Denman, S., Lombard, L., Lawrence, D.P., Stack, A.J., Gordon, T.R., Bostock, R.M., Burgess, T., Summerell, B.A., Taylor, P.W.J., Edwards, J., Hou, L.W., Cai, L., Rossman, A.Y., Wöhner, T., Allen, W.C., Castlebury, L.A., Visagie, C.M., Groenewald, J.Z.“…(Spain); Cylindrium corymbiae on leaves of Corymbia maculata (Australia); Diaporthe tarchonanthi on leaves of Tarchonanthus littoralis (South Africa); Elsinoe eucalyptorum on leaves of Eucalyptus propinqua (Australia); Exophiala quercina on dead wood of Quercus sp., (Germany); Fusarium californicum on cambium of budwood of Prunus dulcis (USA); Hypomyces gamsii on wood of Alnus glutinosa (Ukraine); Kalmusia araucariae on leaves of Araucaria bidwillii (USA); Lectera sambuci on leaves of Sambucus nigra (Russia); Melanomma populicola on fallen twig of Populus canadensis (Netherlands), Neocladosporium syringae on branches of Syringa vulgarishorus (Ukraine); Paraconiothyrium iridis on leaves of Iris pseudacorus (Ukraine); Pararoussoella quercina on branch of Quercus robur (Ukraine); Phialemonium pulveris from bore dust of deathwatch beetle (France); Polyscytalum pinicola on needles of Pinus tecunumanii (Malaysia); Acervuloseptoria fraxini on Fraxinus pennsylvanica (Russia); Roussoella arundinacea on culms of Arundo donax (Spain); Sphaerulina neoaceris on leaves of Acer negundo (Russia); Sphaerulina salicicola on leaves of Salix fragilis (Russia); Trichomerium syzygii on leaves of Syzygium cordatum (South Africa); Uzbekistanica vitis-viniferae on dead stem of Vitis vinifera (Ukraine); Vermiculariopsiella eucalyptigena on leaves of Eucalyptus sp. …”
Publicado 2020
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1540por Wang, Li, Ahmad, Bilal, Liang, Chen, Shi, Xiaoxin, Sun, Ruyi, Zhang, Songlin, Du, Guoqiang“…However, limited information is available about HMs genes in grapes (Vitis vinifera L.). RESULTS: Here, we described detailed genome-wide identification of HMs gene families in grapevine. …”
Publicado 2020
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