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1701por Ieri, Francesca, Cecchi, Lorenzo, Giannini, Elena, Clemente, Clarissa, Romani, Annalisa“…Johnson & K.D. Hill, E. cinerea F. Muell, E. pulverulenta Sims and E. pulverulenta baby blue Sims), cultivated in Tuscany in a system of organic farming, were characterized by solvent dilution (essential oils) or extraction (hydrosols) followed by GC-MS and by HS-SPME-GC×GC-TOFMS analysis. …”
Publicado 2019
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1702por Esposito, Tiziana, Celano, Rita, Pane, Catello, Piccinelli, Anna Lisa, Sansone, Francesca, Picerno, Patrizia, Zaccardelli, Massimo, Aquino, Rita Patrizia, Mencherini, Teresa“…At the highest concentration, CSB-M was also active against Botrytis cinerea both in mycelium and spore form (EC(50) 64.98 and 16.33 mg/mL). …”
Publicado 2019
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1703por Zechmann, Bernd“…Thylakoids on cross-sections of chloroplasts decreased significantly in plants exposed to high light (22%), inoculated with Botrytis cinerea (36%), and senescence (51%). This correlated with a massive increase in plastoglobules on cross-sections of chloroplasts of 88%, 2,306% and 19,617%, respectively. …”
Publicado 2019
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1704por Altimira, Fabiola, De La Barra, Nathalia, Rebufel, Patricia, Soto, Sylvana, Soto, Rodrigo, Estay, Patricia, Vitta, Nancy, Tapia, Eduardo“…OBJECTIVE: Lobesia botrana, the European grapevine moth, affects Vitis vinifera L. and other species of economic importance in a number of countries through damage caused by its larvae in berries and associated secondary diseases such as Botrytis cinerea. Control of the moth in urban areas is difficult due to poor chemical management of infested plants in houses. …”
Publicado 2019
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1705por Liu, Lulu, Gueguen-Chaignon, Virginie, Gonçalves, Isabelle R, Rascle, Christine, Rigault, Martine, Dellagi, Alia, Loisel, Elise, Poussereau, Nathalie, Rodrigue, Agnès, Terradot, Laurent, Condemine, Guy“…Homolog proteins in the phytopathogenic bacterium Dickeya dadantii (IbpS) and the fungal necrotroph Botrytis cinerea (BcIbp) are involved in plant infection. IbpS is secreted, can bind iron and copper, and protects the bacteria against H(2)O(2)-induced death. …”
Publicado 2019
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1706por Gruľová, Daniela, Caputo, Lucia, Elshafie, Hazem S., Baranová, Beáta, De Martino, Laura, Sedlák, Vincent, Gogaľová, Zuzana, Poráčová, Janka, Camele, Ippolito, De Feo, Vincenzo“…The present study focused on (1) comparison of phytotoxic activity of Origanum vulgare EO on monocot (Triticum aestivum and Hordeum vulgare) and dicot species (Lepidium sativum and Sinapis alba); (2) and evaluating other antimicrobial biological activities against phytopatogen bacteria (Clavibacter michiganensis, Pseudomonas syringae pv. phaseolicola, Pseudomonas savastanoi, and Xanthomonas campestris); antifungal activity against Monilinia fructicola, Aspergillus niger, Penicillium expansum, and Botrytis cinerea; cytotoxic activity and antioxidant activity. …”
Publicado 2020
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1707por Luna, Estrella, Flandin, Amélie, Cassan, Cédric, Prigent, Sylvain, Chevanne, Chloé, Kadiri, Camélia Feyrouse, Gibon, Yves, Pétriacq, Pierre“…Here, we demonstrate that the treatment of tomato plants with BABA resulted in a durable induced resistance in tomato fruit against Botrytis cinerea, Phytophthora infestans and Pseudomonas syringae. …”
Publicado 2020
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1708Composition, Antifungal, Phytotoxic, and Insecticidal Activities of Thymus kotschyanus Essential Oilpor Ghasemi, Ghader, Alirezalu, Abolfazl, Ghosta, Youbert, Jarrahi, Azadeh, Safavi, Seyed Ali, Abbas-Mohammadi, Mahdi, Barba, Francisco J., Munekata, Paulo E. S., Domínguez, Rubén, Lorenzo, José M.“…The T. kotschyanus EO was tested against important phytopathogenic fungi (Botrytis cinerea, Aspergillus niger, and Penicillium expansum). …”
Publicado 2020
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1709“…DAPG was applied onto 3-week-old A. thaliana Col-0 and these primed plants showed resistance to the pathogens Botrytis cinerea and Pseudomonas syringae pv. tomato DC3000. …”
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1710por Vallieres, Cindy, Hook, Andrew L., He, Yinfeng, Crucitti, Valentina Cuzzucoli, Figueredo, Grazziela, Davies, Catheryn R., Burroughs, Laurence, Winkler, David A., Wildman, Ricky D., Irvine, Derek J., Alexander, Morgan R., Avery, Simon V.“…We screened hundreds of (meth)acrylate polymers in high throughput, identifying several that reduce attachment of the human pathogen Candida albicans, the crop pathogen Botrytis cinerea, and other fungi. Specific polymer functional groups were associated with weak attachment. …”
Publicado 2020
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1711por Tóth, Liliána, Boros, Éva, Poór, Péter, Ördög, Attila, Kele, Zoltán, Váradi, Györgyi, Holzknecht, Jeanett, Bratschun‐Khan, Doris, Nagy, István, Tóth, Gábor K., Rákhely, Gábor, Marx, Florentine, Galgóczy, László“…Finally, we proved the protective potential of PAF against Botrytis cinerea infection in tomato plant leaves. The lack of any toxic effects on mammalian cells and plant seedlings, as well as the high tolerance to harsh environmental conditions and proteolytic degradation further strengthen our concept for applicability of these proteins and peptide in agriculture.…”
Publicado 2020
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1712“…The transgenic plants conferred higher B. cinerea tolerance than wild-type (WT) plants, and real-time quantitative (qRT)-PCR assays showed that PR3 and PDF1.2 had higher expression levels in transgenic plants, which was consistent with their tolerance to B. cinereal. …”
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1713por Speckbacher, Verena, Ruzsanyi, Veronika, Martinez-Medina, Ainhoa, Hinterdobler, Wolfgang, Doppler, Maria, Schreiner, Ulrike, Böhmdorfer, Stefan, Beccaccioli, Marzia, Schuhmacher, Rainer, Reverberi, Massimo, Schmoll, Monika, Zeilinger, Susanne“…However, we found Lox1 to be involved in T. atroviride conidiation in darkness, in injury-response, in the production of several metabolites, including oxylipins and volatile organic compounds, as well as in the induction of systemic resistance against the plant-pathogenic fungus Botrytis cinerea in Arabidopsis thaliana plants. Our findings give novel insights into the roles of a fungal Ile-group lipoxygenase and expand the understanding of a light-dependent role of these enzymes.…”
Publicado 2020
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1714por Clerck, Caroline De, Maso, Simon Dal, Parisi, Olivier, Dresen, Frédéric, Zhiri, Abdesselam, Jijakli, M. Haissam“…Among the pathogens tested, Botrytis cinerea, Fusarium culmorum, and Fusarium graminearum were the most sensitive, while Colletotrichum lindemuthianum and Phytophthora infestans were the less sensitive. …”
Publicado 2020
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1715por Calder, Alan, Menkiti, Chukwuma Jude, Çağdaş, Aylin, Lisboa Santos, Jefferson, Streich, Ricarda, Wong, Alice, Avini, Amir H., Bojang, Ebrima, Yogamanoharan, Karththeepan, Sivanesan, Nivetha, Ali, Besma, Ashrafi, Mariam, Issa, Abdirizak, Kaur, Tajinder, Latif, Aisha, Mohamed, Hani A. Sheik, Maqsood, Atifa, Tamang, Laxmi, Swager, Emily, Stringer, Alex J., Snyder, Lori A.S.“…Three of the isolates have been identified as Neisseria subflava biovar perflava and one as Neisseria cinerea . Specific gene clusters have been identified within these commensal isolate genome sequences that are believed to encode a Type VI Secretion System, a newly identified CRISPR system, a Type IV Secretion System unlike that in other Neisseria spp., a hemin transporter, and a haem acquisition and utilization system. …”
Publicado 2020
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1716por Reem, Nathan T., Chambers, Lauran, Zhang, Ning, Abdullah, Siti Farah, Chen, Yintong, Feng, Guanhua, Gao, Song, Soto-Burgos, Junmarie, Pogorelko, Gennady, Bassham, Diane C., Anderson, Charles T., Walley, Justin W., Zabotina, Olga A.“…AnPME plants were insensitive to osmotic stress, and their susceptibility to Botrytis cinerea was comparable to wild type plants despite their compromised cell walls. …”
Publicado 2020
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1717por Lim, Jolyn Jia Jia, Koh, Jace, Moo, Jia Rong, Villanueva, Erielle Marie Fajardo, Putri, Dhira Anindya, Lim, Yuen Shan, Seetoh, Wei Song, Mulupuri, Sriya, Ng, Janice Wan Zhen, Nguyen, Nhi Le Uyen, Reji, Rinta, Foo, Herman, Zhao, Margaret Xuan, Chan, Tong Ling, Rodrigues, Edbert Edric, Kairon, Ryanjit Singh, Hee, Ker Min, Chee, Natasha Cassandra, Low, Ann Don, Chen, Zoe Hui Xin, Lim, Shan Chun, Lunardi, Vanessa, Fong, Tuck Choy, Chua, Cherlyn Xin'Er, Koh, Kenny Ting Sween, Julca, Irene, Delli-Ponti, Riccardo, Ng, Jonathan Wei Xiong, Mutwil, Marek“…We exemplify how our tool can elucidate the molecular function, biological process and cellular component of genes involved in various biological processes, by identifying a secondary metabolite pathway producing gliotoxin in Aspergillus fumigatus, the catabolic pathway of cellulose in Coprinopsis cinerea and the conserved DNA replication pathway in Fusarium graminearum and Pyricularia oryzae. …”
Publicado 2020
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1718por Dunker, Florian, Oberkofler, Lorenz, Lederer, Bernhard, Trutzenberg, Adriana, Weiberg, Arne“…Consistent with this, HaCR1 expression in N. benthamiana led to stronger disease symptoms caused by the hemibiotrophic oomycete pathogen Phytophthora capsici, but reduced disease symptoms caused by the necrotrophic fungal pathogen Botrytis cinerea. Expressing HaCR1 in transgenic Arabidopsis confirmed higher susceptibility to H. arabidopsidis and to the bacterial hemibiotrophic pathogen Pseudomonas syringae. …”
Publicado 2020
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1719por Scarboro, Clifton G., Ruzsa, Stephanie M., Doherty, Colleen J., Kudenov, Michael W.“…Gray mold disease caused by the fungus Botrytis cinerea damages many crop hosts worldwide and is responsible for heavy economic losses. …”
Publicado 2021
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1720por Fan, Lingling, Luo, Zhongfu, Yang, Changfei, Guo, Bing, Miao, Jing, Chen, Yang, Tang, Lei, Li, Yong“…The in vivo study further confirmed that compounds 3a, 3c, 3e and 3m displayed good preventative effect against Botrytis cinerea at the concentration of 100 µg/mL. The structure–activity relationships research provides significant reference for the further structural optimization of 2-aminobenzoxazole as potential fungicides. …”
Publicado 2021
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