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1901por Al-Yahya’ei, Mohamed N., Oehl, Fritz, Vallino, Marta, Lumini, Erica, Redecker, Dirk, Wiemken, Andres, Bonfante, Paola“…Based on spore morphotyping, the AMF communities under the date palms appeared to be quite diverse at both plantations and more similar to each other than to the communities under the ruderal plant, Polygala erioptera, growing at the experimental station on the dry strip between the palm trees, and to the communities uncovered under the native vegetation (Zygophyllum hamiense, Salvadora persica, Prosopis cineraria, inter-plant area) of adjacent undisturbed arid habitat. …”
Publicado 2010
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1902“…Prosopis cineraria (Fabaceae) is known as Khejri in India or the golden tree of Indian deserts. …”
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1903por Xie, Chang Gen, Jin, Ping, Xu, Jiamin, Li, Shangze, Shi, Tiantian, Wang, Rui, Jia, Shuangwei, Zhang, Zixuan, Guo, Weike, Hao, Wenfang, Zhou, Xiaona, Liu, Jun, Gao, Ying“…The expression pattern of members of PHL2 subclade homologous genes in Brassica juncea (BjPHL2) after Botrytis cinerea infection were determined, and BjPHL2a was isolated from a yeast one-hybrid screen with the promoter of BjCHI1 as bait. …”
Publicado 2023
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1904por Skhosana, Felix V., Thenga, Humbelani F., Mateyisi, Mohau J., von Maltitz, Graham, Midgley, Guy F., Stevens, Nicola“…Changes in partitioning were dependent on plant functional type; rainfall interception by the fine‐leaved multi‐stemmed shrub Dichrostachys cinerea was almost double that of the broad‐leaved tree Terminalia sericea at the highest levels of woody encroachment (i.e., 49.7% vs. 29.1% of total rainfall intercepted at tree basal area of 31.4 m(2)/ha). …”
Publicado 2023
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1905“…RESULTS: In this study, the chloroplast genomes of two Knema species, Knema globularia (Lam.) Warb. and Knema cinerea (Poir.) Warb., were characterized. Comparing the genome structure of these two species with those of other eight published species, including three Horsfieldia species, four Knema species, and one Myristica species, it was found that the chloroplast genomes of these species were relatively conserved, retaining the same gene order. …”
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1906por López-Casado, Gloria, Sánchez-Raya, Cristina, Ric-Varas, Pablo D, Paniagua, Candelas, Blanco-Portales, Rosario, Muñoz-Blanco, Juan, Pose, Sara, Matas, Antonio J, Mercado, Jose A“…Edited fruits showed a reduced softening rate during postharvest, displayed a reduced transpirational water loss, and were less damaged by Botrytis cinerea inoculation. The analysis of four potential off-target sites revealed no mutation events. …”
Publicado 2023
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1907por Tetorya, Meenakshi, Li, Hui, Djami‐Tchatchou, Arnaud Thierry, Buchko, Garry W., Czymmek, Kirk J., Shah, Dilip M.“…Additionally, it exhibited potent cation‐tolerant antifungal activity against the plant fungal pathogen Botrytis cinerea, the causal agent of grey mould disease in fruits and vegetables. …”
Publicado 2023
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1908por Boiu-Sicuia, Oana-Alina, Toma, Radu Cristian, Diguță, Camelia Filofteia, Matei, Florentina, Cornea, Călina Petruța“…Regardless of the in vitro test methods (using living bacterial cells, bacterial-cell-free supernatant (CFS), and volatile active compounds (VOCs)), B. velezensis strains revealed strong and broad antifungal activity against grape and grapevine fungal pathogens such as Aspergillus spp., Botrytis cinerea, Penicillium expansum, Diplodia seriata, Eutypa lata, Fusarium spp., Clonostachys rosea, Neofusicoccum parvum, and Stereum hirsutum. …”
Publicado 2023
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1909por Paasch, Bradley C., Sohrabi, Reza, Kremer, James M., Nomura, Kinya, Cheng, Yu Ti, Martz, Jennifer, Kvitko, Brian, Tiedje, James M., He, Sheng Yang“…Axenic plants exhibited hypersusceptibility to infection by the bacterial pathogen Pseudomonas syringae pv. tomato DC3000 and the fungal pathogen Botrytis cinerea. Microbiota-mediated immunocompetence was suppressed by rich nutrient conditions, indicating a tripartite interaction between the host, microbiota and abiotic environment. …”
Publicado 2023
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1910por Muangkaew, Penthip, De Roo, Vic, Zhou, Lu, Girard, Léa, Cesa-Luna, Catherine, Höfte, Monica, De Mot, René, Madder, Annemieke, Geudens, Niels, Martins, José C.“…In permeabilization assays, using propidium iodide entolysin B has a higher antifungal activity compared to entolysin A against Botrytis cinerea and Pyricularia oryzae spores. The fact that configurational homologues are produced by the same NRPS system in a Pseudomonas strain adds a new level of structural and functional diversification to those already known from substrate flexibility during the recruitment of the amino acids and fatty acids and underscores the importance of complete stereochemical elucidation of non-ribosomal lipopeptide structures.…”
Publicado 2023
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1911por Shiryaev, Anton G., Zmitrovich, Ivan V., Senator, Stepan A., Minogina, Elena N., Tkachenko, Oleg B.“…Only six (Antrodia gossypium, Hyphodontia arguta, Lyomyces sambuci, Peniophora cinerea, Ramariopsis kunzei, and Trechispora farinacea) local species (10.5%) were collected in all the three cities. …”
Publicado 2023
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1912“…RESULTS: In total, 22 PRP8 inteins have been detected in species from three different orders of euascomycetes, including Aspergillus nidulans and Aspergillus fumigatus (Eurotiales), Paracoccidiodes brasiliensis, Uncinocarpus reesii and Histoplasma capsulatum (Onygales) and Botrytis cinerea (Helotiales). These inteins are all at the same site in the PRP8 sequence as the original Cryptococcus neoformans intein. …”
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1913por Chehab, E. Wassim, Kaspi, Roy, Savchenko, Tatyana, Rowe, Heather, Negre-Zakharov, Florence, Kliebenstein, Dan, Dehesh, Katayoon“…These genotypes were subsequently challenged with a phloem-feeding insect (aphids: Myzus persicae), an insect herbivore (leafminers: Liriomyza trifolii), and two different necrotrophic fungal pathogens (Botrytis cinerea and Alternaria brassicicola). We also characterized the volatiles emitted by these plants upon aphid infestation or mechanical wounding and identified hexenyl acetate as the predominant compound in these volatile blends. …”
Publicado 2008
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1914“…Both the loss-of-function mutants and transgenic overexpression lines were examined for responses to the biotrophic bacterial pathogen Pseudomonas syringae and the necrotrophic fungal pathogen Botrytis cinerea. The wrky3 and wrky4 single and double mutants exhibited more severe disease symptoms and support higher fungal growth than wild-type plants after Botrytis infection. …”
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1915“…The ocp1 and nrpd2 mutants showed increases in disease susceptibility when confronted with the necrotrophic fungal pathogens Botrytis cinerea and Plectosphaerella cucumerina. Studies were extended to other mutants affected in different steps of the RdDM pathway, such as nrpd1, nrpe1, ago4, drd1, rdr2, and drm1drm2 mutants. …”
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1916“…We have analyzed in silico the complete sets of putatively secretory proteins coded by eight fungal genomes (Botrytis cinerea, Magnaporthe grisea, Sclerotinia sclerotiorum, Ustilago maydis, Aspergillus nidulans, Neurospora crassa, Trichoderma reesei, and Saccharomyces cerevisiae) in search of Ser/Thr-rich regions as well as regions predicted to be highly O-glycosylated by NetOGlyc (http://www.cbs.dtu.dk). …”
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1917por Yan, Liuhua, Zhai, Qingzhe, Wei, Jianing, Li, Shuyu, Wang, Bao, Huang, Tingting, Du, Minmin, Sun, Jiaqiang, Kang, Le, Li, Chang-Bao, Li, Chuanyou“…Here we describe the characterization of the tomato suppressor of prosystemin-mediated responses8 (spr8) mutant, which was isolated as a suppressor of (pro)systemin-mediated signaling. spr8 plants exhibit a series of JA-dependent immune deficiencies, including the inability to express wound-responsive genes, abnormal development of glandular trichomes, and severely compromised resistance to cotton bollworm (Helicoverpa armigera) and Botrytis cinerea. Map-based cloning studies demonstrate that the spr8 mutant phenotype results from a point mutation in the catalytic domain of TomLoxD, a chloroplast-localized lipoxygenase involved in JA biosynthesis. …”
Publicado 2013
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1918por Nguyen, Nga N. T., Ranwez, Vincent, Vile, Denis, Soulié, Marie-Christine, Dellagi, Alia, Expert, Dominique, Gosti, Françoise“…In addition, A. halleri was found to be more tolerant to the necrotrophic pathogen Botrytis cinerea than A. thaliana. Since PDF1s are known to be promiscuous antifungal proteins able to convey zinc tolerance, we propose, on the basis of the findings of this study, that high constitutive PDF1 transcript accumulation in A. halleri is a potential way to skip the JA signaling activation step required to increase the PDF1 transcript level in the A. thaliana model species. …”
Publicado 2014
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1919Arabidopsis membrane-associated acyl-CoA-binding protein ACBP1 is involved in stem cuticle formationpor Xue, Yan, Xiao, Shi, Kim, Juyoung, Lung, Shiu-Cheung, Chen, Liang, Tanner, Julian A., Suh, Mi Chung, Chye, Mee-Len“…Also, the mutant stems consistently showed a decline in expression of cuticular wax and cutin biosynthetic genes in comparison with the wild type, and the mutant leaves were more susceptible to infection by the necrotrophic pathogen Botrytis cinerea. Taken together, these findings suggest that AtACBP1 participates in Arabidopsis stem cuticle formation by trafficking VLC acyl-CoAs.…”
Publicado 2014
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1920por Duan, Yanjiao, Jiang, Yuanzhong, Ye, Shenglong, Karim, Abdul, Ling, Zhengyi, He, Yunqiu, Yang, Siqi, Luo, Keming“…Overexpression of PtrWRKY73 in Arabidopsis thaliana resulted in increased resistance to a virulent strain of the bacterial pathogen Pseudomonas syringae (PstDC3000), but more sensitivity to the necrotrophic fungal pathogen Botrytis cinerea. The SA-mediated defense-associated genes, such as PR1, PR2 and PAD4, were markedly up-regulated in transgenic plants overexpressing PtrWRKY73. …”
Publicado 2015
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