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2061“…METHODS: In this research, the antimicrobial activities of chloroformic and methanolic extracts of Sophora flavescens, Rhaponticum repens, Alhagi maurorum, Melia azedarach, Peganum harmala, and Juncus conglomeratus were evaluated against 8 bacteria (S. aureus, B. subtilis, R. toxicus, P. aeruginosa, E. coli, P. syringae, X. campestris, P. viridiflava) and 3 fungi (Pyricularia oryzae, Fusarium oxysporum and Botrytis cinerea), through disc diffusion method. Furthermore, the essential oils of plants with the highest antibacterial activity were analyzed utilizing GC/MS. …”
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2062por Grellet Bournonville, Carlos, Filippone, María Paula, Di Peto, Pía de los Ángeles, Trejo, María Fernanda, Couto, Alicia Susana, Mamaní de Marchese, Alicia, Díaz Ricci, Juan Carlos, Welin, Björn, Castagnaro, Atilio Pedro“…Application of SAGs to Arabidopsis thaliana (hereafter Arabidopsis) plants triggered a transient oxidative burst, callose deposition and defense gene expression, accompanied by increased protection against two phytopathogens, Pseudomonas viridiflava and Botrytis cinerea. SAGs-induced disease protection was also demonstrated in soybean infected with the causal agent of target spot, Corynespora cassiicola. …”
Publicado 2020
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2063“…Additionally, the application of 5́-azacytidine and melatonin led to similar effects on mycelial growth of B. cinerea, berry decay rate and flavonoid biosynthesis. …”
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2064por Jeffress, Sarah, Arun-Chinnappa, Kiruba, Stodart, Ben, Vaghefi, Niloofar, Tan, Yu Pei, Ash, Gavin“…A total of 1,280 secreted proteins and 276 candidate effectors were predicted and compared to those of other necrotrophic (Botrytis cinerea, Parastagonospora nodorum, Pyrenophora tritici-repentis, Sclerotinia sclerotiorum and Zymoseptoria tritici), hemibiotrophic (Leptosphaeria maculans, Magnaporthe oryzae, Rhynchosporium commune and Verticillium dahliae) and biotrophic (Ustilago maydis) plant pathogens. …”
Publicado 2020
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2065por Lin, Chia‐Hua, Pan, Ying‐Chieh, Ye, Nai‐Hua, Shih, Yu‐Ting, Liu, Fan‐Wei, Chen, Chao‐Ying“…In contrast, LsGRP1‐transgenic Arabidopsis showed higher resistance to Botrytis cinerea and also to Pseudomonas syringae pv. tomato DC3000 as compared to the wild type, accompanied with the enhancement of callose deposition and ROS accumulation. …”
Publicado 2020
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2066por Panthapulakkal Narayanan, Saritha, Lung, Shiu-Cheung, Liao, Pan, Lo, Clive, Chye, Mee-Len“…Of the six Arabidopsis (Arabidopsis thaliana) ACBPs, AtACBP3 conferred protection in transgenic Arabidopsis against Pseudomonas syringae, but not the necrotrophic fungus, Botrytis cinerea. Similar to Arabidopsis, rice possesses six ACBPs, designated OsACBPs. …”
Publicado 2020
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2067“…Finally, 109 PKs, mostly the receptor-like kinases (RLKs), were found transcriptionally responsive to Botrytis cinerea infection. CONCLUSIONS: The findings of this research expand the understanding of the evolutionary dynamics of PK genes in plant species and provide a potential link between cell signaling pathways and pathogen attack.…”
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2068por Moreno-Ruiz, Dubraska, Lichius, Alexander, Turrà, David, Di Pietro, Antonio, Zeilinger, Susanne“…Purified compounds, including nutrients, the fungal secondary metabolite 6-amyl-α-pyrone (6-pentyl-α-pyrone, 6-PP) and the plant oxylipin 13-(s)-HODE, as well as culture supernatants derived from fungal preys, including Rhizoctonia solani, Botrytis cinerea and Fusarium oxysporum, were used to evaluate chemotropic responses of conidial germlings, microcolonies and fully differentiated mycelia. …”
Publicado 2020
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2069“…Among 16 species tested, 1 species exhibited good-moderate (Sphaeranthus indicus, IC(50)6.59 μg/mL), 4 weak (Artemisia chinensis, Artemisia vulgaris, Tridax procumbens, and Blumea balsamifera), and 3 very weak (Eupatorium capillifolium, Wedelia trilobata, and Vernonia cinerea). Generated phylogenetic tree by ITS data was able to separate the tested species into their tribal classification. …”
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2070“…SER3 showed good capacity to inhibit the growth of Botrytis cinerea and Fusarium brachygibbosum in strawberry fruit, affecting mycelial development. …”
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2071por Nascimento, Francisco X., Urón, Paola, Glick, Bernard R., Giachini, Admir, Rossi, Márcio J.“…Strain SC5 also limited the in vitro growth of the pathogens Botrytis cinerea and Pseudomonas syringae DC3000 indicating active biological control activities. …”
Publicado 2021
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2072por Kiesewalter, Heiko T., Lozano-Andrade, Carlos N., Wibowo, Mario, Strube, Mikael L., Maróti, Gergely, Snyder, Dan, Jørgensen, Tue Sparholt, Larsen, Thomas O., Cooper, Vaughn S., Weber, Tilmann, Kovács, Ákos T.“…While plipastatin alone is sufficient to inhibit Fusarium spp., a combination of plipastatin and surfactin is required to hinder growth of Botrytis cinerea. Detailed genomic analysis revealed that altered nonribosomal peptide production profiles in specific isolates are due to missing core genes, nonsense mutation, or potentially altered gene regulation. …”
Publicado 2021
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2073por Muñoz-Shugulí, Cristina, Rodríguez-Mercado, Francisco, Mascayano, Carolina, Herrera, Andrea, Bruna, Julio E., Guarda, Abel, Galotto, María J.“…The water sorption capacity of inclusion complexes depended on relative humidity, and they exhibited a strong fungicide activity against Botrytis cinerea. Furthermore, the AITC release to headspace occurred in three stages, which were related with changes in β-CD conformational structure by water sorption and the presence of the different coexisting structures. …”
Publicado 2022
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2074“…For this, we analyzed the genome of Botrytis cinerea and found 9 genes encoding cellulose lytic monooxygenases (AA9 family), of which BcAA9C was overexpressed in cellulose-inducible conditions. …”
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2075“…The antimicrobial activity was carried out against Monilinia fructicola, Aspergillus flavus, Penicillium italicum, Botrytis cinerea, Escherichia coli, Bacillus cereus, Pseudomonas fluorescens, and P. aeruginosa. …”
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2076por Leite, Gabriela, Barlow, Gillian M., Hosseini, Ava, Parodi, Gonzalo, Pimentel, Maya L., Wang, Jiajing, Fiorentino, Alyson, Rezaie, Ali, Pimentel, Mark, Mathur, Ruchi“…This was driven by lower RA of unknown Prevotella and Porphyromonas species, and Neisseria subflava and N. cinerea, in CS. In contrast, RA of Enterobacteriaceae and Lactobacillaceae (associated with decreased diversity), were significantly higher in CS, due to higher RA of Escherichia-Shigella, Klebsiella and Lactobacillus species. …”
Publicado 2022
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2077por Berlanga-Clavero, M. V., Molina-Santiago, C., Caraballo-Rodríguez, A. M., Petras, D., Díaz-Martínez, L., Pérez-García, A., de Vicente, A., Carrión, V. J., Dorrestein, P. C., Romero, D.“…In turn, this results in two different plant growth developmental programmes: TasA and fengycin stimulate the development of radicles, and fengycin alone stimulate the growth of adult plants and resistance in the phylloplane to the fungus Botrytis cinerea. Understanding mechanisms of bacterial growth promotion will enable the design of bespoke growth promotion strains.…”
Publicado 2022
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2078por Vicente, Cláudia S. L., Soares, Miguel, Faria, Jorge M. S., Espada, Margarida, Mota, Manuel, Nóbrega, Filomena, Ramos, Ana P., Inácio, Maria L.“…They could outcompete the other species, especially O. ips, and significantly reduce the development of PWN populations when compared to Botrytis cinerea (routinely used for PWN lab culturing), suggesting this to be a natural antagonist not only for the other blue-stain species but also for the PWN.…”
Publicado 2022
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2079por Ren, Weichao, Jiang, Zhehui, Zhang, Meiqi, Kong, Lingyang, Zhang, Houliang, Liu, Yunwei, Fu, Qifeng, Ma, Wei“…Analysis of the IR borders showed that the IRa and IRb regions of S. floderusii and Salix caprea were shorter than those of Salix cinerea, which may affect plastome evolution. Furthermore, four highly variable regions were found, including the rpl22 coding region, psbM/trnD-GUC non-coding region, petA/psbJ non-coding region, and ycf1 coding region. …”
Publicado 2022
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2080por Lachguer, Khadija, El Merzougui, Soumaya, Boudadi, Imane, Laktib, Asma, Ben El Caid, Mohamed, Ramdan, Btissam, Boubaker, Hassan, Serghini, Mohammed Amine“…Both SFEs showed antifungal antagonism towards key fungi species involved in post-harvest mold and crop yield losses. Botrytis cinerea was more susceptible than Fusarium solani, Penicillium expansum, and Penicillium digitatum. …”
Publicado 2022
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