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341por Yang, Chenyu, Liang, Yingbo, Qiu, Dewen, Zeng, Hongmei, Yuan, Jingjing, Yang, Xiufen“…BACKGROUND: BcGs1, a cell wall-degrading enzyme (CWDE), was originally derived from Botrytis cinerea. Our previous study revealed that BcGs1 could trigger defense responses and protect plants against various pathogens. …”
Publicado 2018
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342por Cai, Nan, Liu, Caixiu, Feng, Zhihui, Li, Xinghai, Qi, Zhiqiu, Ji, Mingshan, Qin, Peiwen, Ahmed, Wasim, Cui, Zining“…The in vivo and in vitro fungicidal activities against B. cinerea were evaluated. The bioassay results of mycelial growth demonstrated that most compounds exhibited excellent inhibitory activity against B. cinerea at 50 μg mL(−1), and 7 compounds showed lower EC(50) values than boscalid (EC(50) = 4.46 μg mL(−1)) against B. cinerea (CY-09). …”
Publicado 2018
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343“…This work aims to explore the capacity of a Bacillus methylotrophicus (later heterotypic synonym of Bacillus velezensis) strain named XT1 CECT 8661 against the necrotrophic plant pathogen Botrytis cinerea and to identify the compounds responsible for its activity. …”
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344por Langowski, Julian K. A., Schipper, Henk, Blij, Anne, van den Berg, Frank T., Gussekloo, Sander W. S., van Leeuwen, Johan L.“…In this study, we combine histology and synchrotron micro‐computer‐tomography to obtain a comprehensive 3‐D morphological characterisation of the digital pads (in particular of the internal structures involved in the transmission of attachment forces from the ventral pad surface towards the phalanges) of the tree frog Hyla cinerea. A collagenous septum runs from the distal tip of the distal phalanx to the ventral cutis and compartmentalises the subcutaneous pad volume into a distal lymph space and a proximal space, which contains mucus glands opening via long ducts to the ventral pad surface. …”
Publicado 2018
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345“…Although the model agaricomycete Coprinopsis cinerea possess 17 different laccase genes, up to now only four C. cinerea laccases have been purified and characterized to some degree. …”
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346por Righini, Hillary, Baraldi, Elena, García Fernández, Yolanda, Martel Quintana, Antera, Roberti, Roberta“…Water extracts and polysaccharides from Anabaena sp., Ecklonia sp., and Jania sp. were tested for their activity against the fungal plant pathogen Botrytis cinerea. Water extracts at 2.5, 5.0, and 10.0 mg/mL inhibited B. cinerea growth in vitro. …”
Publicado 2019
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347por Vela-Corcía, David, Aditya Srivastava, Dhruv, Dafa-Berger, Avis, Rotem, Neta, Barda, Omer, Levy, Maggie“…The pathogen Botrytis cinerea has variable sensitivity to glucosinolates, but the mechanisms by which it responds to them are mostly unknown. …”
Publicado 2019
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348por Haile, Zeraye Mehari, Nagpala-De Guzman, Ellaine Grace, Moretto, Marco, Sonego, Paolo, Engelen, Kristof, Zoli, Lisa, Moser, Claudio, Baraldi, Elena“…Gray mold caused by Botrytis cinerea is a major cause of economic losses in strawberry fruit production, limiting fruit shelf life and commercialization. …”
Publicado 2019
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349por Bui, Tuyet TA, Wright, Sandra AI, Falk, Anders B, Vanwalleghem, Tanja, Van Hemelrijck, Wendy, Hertog, Maarten LATM, Keulemans, Johan, Davey, Mark W“…BACKGROUND: The fruit of two apple cultivars – ‘Braeburn’, which is susceptible to inoculation with Botrytis cinerea, and the less susceptible cv. ‘Golden Delicious’ – were investigated with respect to their response to inoculation with B. cinerea. …”
Publicado 2019
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350“…In this research, in in vitro tests, the radial growth, conidial germination, and germ tube elongation of Botrytis cinerea was completely inhibited at 0.3% of PB, SSi, and CCh. …”
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351por de Vallée, Amélie, Bally, Pascal, Bruel, Christophe, Chandat, Lucie, Choquer, Mathias, Dieryckx, Cindy, Dupuy, Jean William, Kaiser, Sophie, Latorse, Marie-Pascale, Loisel, Elise, Mey, Géraldine, Morgant, Guillaume, Rascle, Christine, Schumacher, Julia, Simon, Adeline, Souibgui, Eytham, Viaud, Muriel, Villalba, François, Poussereau, Nathalie“…The gray mold fungus Botrytis cinerea is a necrotrophic pathogen able to infect hundreds of host plants, including high-value crops such as grapevine, strawberry and tomato. …”
Publicado 2019
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352por Tzortzakis, Nikolaos“…Botrytis cinerea is an unbearable postharvest threat with significant economic impacts. …”
Publicado 2019
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353por Liu, Xinqiang, Xie, Jiatao, Fu, Yanping, Jiang, Daohong, Chen, Tao, Cheng, Jiasen“…Botrytis cinerea, a ubiquitous necrotrophic plant-pathogenic fungus, is responsible for grey mold and rot disease in a very wide range of plant species. …”
Publicado 2020
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354por Sarven, Most.Sinthia, Hao, Qiuyan, Deng, Junbo, Yang, Fang, Wang, Gaofeng, Xiao, Yannong, Xiao, Xueqiong“…Gray mold disease caused by Botrytis cinerea is a devastating disease that leads to serious financial loss. …”
Publicado 2020
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355por Cui, Kaidi, Zhao, Yunhe, He, Leiming, Ding, Jinfeng, Li, Beixing, Mu, Wei, Liu, Feng“…Benzothiazole (BT) has a strong inhibitory effect on the growth and development of a wide spectrum of fungi and insects, such as Botrytis cinerea and Bradysia odoriphaga, that cause serious losses in agriculture. …”
Publicado 2020
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356“…Observational evidence in some wild J. cinerea populations indicates that naturalized hybrids of J. cinerea with Japanese walnut (Juglans ailantifolia) may be more tolerant to BCD than non-admixed J. cinerea, but this has not been formally tested in a controlled trial. …”
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357“…A real-time loop-mediated isothermal amplification (LAMP) assay was evaluated for the detection of Botrytis cinerea in grapevine bunch trash, immature berries, and ripening berries. …”
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358por Balthazar, Carole, Cantin, Gabrielle, Novinscak, Amy, Joly, David L., Filion, Martin“…Cannabis (Cannabis sativa L.) offers many industrial, agricultural, and medicinal applications, but is commonly threatened by the gray mold disease caused by the fungus Botrytis cinerea. With few effective control measures currently available, the use of beneficial rhizobacteria represents a promising biocontrol avenue for cannabis. …”
Publicado 2020
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359“…Laccases are one of many groups of inducible enzymes produced by the filamentous fungus, Botrytis cinerea during colonisation of host plant tissues. …”
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360“…DNA methylation inhibitors reduced resistance gene methylation levels and enhanced mulberry resistance, suggesting that the hypomethylation of resistance genes affects mulberry resistance to B. cinerea. Virus-induced gene silencing of MnMET1 enhanced the expression of mulberry-resistance genes, thereby increasing the plant’s resistance to B. cinerea. …”
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