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3521por Nguyen, Viet Tru, Sakata, Nanami, Usuki, Giyu, Ishiga, Takako, Hashimoto, Yoshiteru, Ishiga, Yasuhiro“…Next, we spray-inoculated soybean leaves with these mutants and demonstrated that the algU mutant showed significantly reduced virulence together with reduced bacterial populations in planta. Expression profiles comparison between the Psg wild-type (WT) and algU mutant in HSC broth revealed that expression of coronatine (COR)-related genes (including cmaA and corR) were down-regulated in the algU mutant compared with Psg WT. …”
Publicado 2021
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3522por Hoff, Grégory, Arguelles Arias, Anthony, Boubsi, Farah, Pršić, Jelena, Meyer, Thibault, Ibrahim, Heba M. M., Steels, Sébastien, Luzuriaga, Patricio, Legras, Aurélien, Franzil, Laurent, Lequart-Pillon, Michelle, Rayon, Catherine, Osorio, Victoria, de Pauw, Edwin, Lara, Yannick, Deboever, Estelle, de Coninck, Barbara, Jacques, Philippe, Deleu, Magali, Petit, Emmanuel, Van Wuytswinkel, Olivier, Ongena, Marc“…In this specific nutritional context, the bacterium also modulates qualitatively the pattern of surfactin homologues coproduced in planta and forms mainly variants that are the most active at triggering plant immunity. …”
Publicado 2021
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3523“…Through the bimolecular fluorescence complementation assay in Arabidopsis protoplasts, two candidate proteins with chloroplast localization, DJC31 and HCF145, were confirmed to interact with GUN1 in planta. Genes for these GUN1-interacting proteins showed different fluctuations in the WT and gun1 mutant under norflurazon and lincomycin treatments. …”
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3524por Oufensou, Safa, Dessì, Alessandro, Dallocchio, Roberto, Balmas, Virgilio, Azara, Emanuela, Carta, Paola, Migheli, Quirico, Delogu, Giovanna“…In this work, 15 naturally occurring compounds that belong to the structural phenol and hydroxylated biphenyl classes were tested in vitro and in planta (durum wheat) to determine their inhibitory activity towards TRI5. …”
Publicado 2021
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3525por Fernando, Krishni, Reddy, Priyanka, Vassiliadis, Simone, Spangenberg, German C., Rochfort, Simone J., Guthridge, Kathryn M.“…To assess antifungal bioactivity, nine Epichloë related compounds, namely peramine hemisulfate, n-formylloline-d3, n-acetylloline hydrochloride, lolitrem B, janthitrem A, paxilline, terpendole E, terpendole C, and ergovaline, and four Claviceps purpurea ergot alkaloids, namely ergotamine, ergocornine, ergocryptine, and ergotaminine, were tested at concentrations higher than observed in planta in glasshouse and field settings using in vitro agar well diffusion assays against three common pasture and turf phytopathogens, namely Ceratobasidium sp., Drechslera sp., and Fusarium sp. …”
Publicado 2021
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3526por Bento, Artur, Moreira, Carlos J. S., Correia, Vanessa G., Escórcio, Rita, Rodrigues, Rúben, Tomé, Ana S., Geneix, Nathalie, Petit, Johann, Bakan, Bénédicte, Rothan, Christophe, Mykhaylyk, Oleksandr O., Silva Pereira, Cristina“…[Image: see text] Polyesters, as they exist in planta, are promising materials with which to begin the development of “green” replacements. …”
Publicado 2021
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3527por Pescador, Leyre, Fernandez, Iván, Pozo, María J, Romero-Puertas, María C, Pieterse, Corné M J, Martínez-Medina, Ainhoa“…Using an NO scavenger and the Arabidopsis lines myb72 and nia1nia2 in in planta bioassays, we demonstrate that NO signalling is required in the roots for activation of Trichoderma VCs-mediated ISR against the leaf pathogen Botrytis cinerea. …”
Publicado 2021
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3528por Matsumoto, Ayumi, Schlüter, Titus, Melkonian, Katharina, Takeda, Atsushi, Nakagami, Hirofumi, Mine, Akira“…Investigation of plant-bacteria interactions requires quantification of in planta bacterial titers by means of cumbersome and time-consuming colony-counting assays. …”
Publicado 2021
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3529por Uwaremwe, Constantine, Yue, Liang, Wang, Yun, Tian, Yuan, Zhao, Xia, Liu, Yang, Zhou, Qin, Zhang, Yubao, Wang, Ruoyu“…Both HSB1 and FZB42 were found to inhibit fungal mycelial growth, in vitro and in planta, as well as to promote the growth of wolfberry seedlings. …”
Publicado 2022
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3530por Majumdar, Rajtilak, Strausbaugh, Carl A., Galewski, Paul J., Minocha, Rakesh, Rogers, Christopher W.“…We hypothesized that the absence of plant cell-wall-degrading enzymes in L. mesenteroides and their supply by R. solani during close contact, causes increased damage. In planta root inoculation with or without cell-wall-degrading enzymes showed greater rot when L. mesenteroides was combined with cellulase (22 mm rot), polygalacturonase (47 mm), and pectin lyase (57 mm) versus these enzymes (0–26 mm), R. solani (20 mm), and L. mesenteroides (13 mm) individually. …”
Publicado 2022
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3531por Aiello, Dalia, Leonardi, Giuseppa Rosaria, Di Pietro, Chiara, Vitale, Alessandro, Polizzi, Giancarlo“…Comprehensively, bacterial cells, filtrates, and VOCs were able to significantly reduce the average mycelial diameter of P. tracheiphilus, with some variability according to pathogen isolate. In planta experiments showed that the biological products on average were less effective than fungicides, although all formulates were able to significantly reduce disease incidence and symptom severity, except B. amyloliquefaciens strain D747 (Amylo-X) for symptom severity (SS) 20 days after inoculation. …”
Publicado 2022
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3532por Montes-Osuna, Nuria, Cernava, Tomislav, Gómez-Lama Cabanás, Carmen, Berg, Gabriele, Mercado-Blanco, Jesús“…Results suggest that volatiles emitted by these endophytes may differ in their modes of action, and that potential benefits for the host needs further investigation in planta.…”
Publicado 2022
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3533por Wu, Zi-Han, Su, Yi, Luo, Zhou-Fei, Sun, Zhi-Liang, Gong, Zhi-Hong, Xiao, Lang-Tao“…The distribution of pharmatically important alkaloids gelsemine, koumine, and gelsenicine in Gelsemium elegans tissues is a hot topic attracting research attention. Regretfully, the in planta visual distribution details of these alkaloids are far from clear although several researches reported the alkaloid quantification in G. elegans by LC-MS/MS. …”
Publicado 2022
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3534por Špetík, Milan, Balík, Josef, Híc, Pavel, Hakalová, Eliška, Štůsková, Kateřina, Frejlichová, Lucie, Tříska, Jan, Eichmeier, Aleš“…Subsequently, the efficiency of the extract was supported by an in planta experiment. Commercial grafts of Vitis vinifera were treated with the extract and planted. …”
Publicado 2022
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3535por Ladha, Jagdish K., Peoples, Mark B., Reddy, Pallavolu M., Biswas, Jatish C., Bennett, Alan, Jat, Mangi L., Krupnik, Timothy J.“…We conclude by considering the challenges of introducing in planta BNF into cereals and reflect on the potential for BNF in both conventional and alternative crop management systems to encourage the ecological intensification of cereal and legume production.…”
Publicado 2022
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3536“…Potential beneficial effects of the strains were also evaluated in planta by measuring various growth and physiological parameters of inoculated Sulla plants grown in sterilized sand. …”
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3537por Hu, Shuai, Li, Baiying, Wu, Fan, Zhu, Dongmei, Zouhar, Jan, Gao, Caiji, Shimada, Tomoo, Rojo, Enrique, Hara-Nishimura, Ikuko, Jiang, Liwen, Shen, Jinbo“…We show that ALIX colocalizes and physically interacts with the retromer core subunits Vps26 and Vps29 in planta. Moreover, double-mutant analysis reveals the genetic interaction of ALIX with Vps26 and Vps29 for regulating trafficking of soluble vacuolar proteins. …”
Publicado 2022
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3538por Nathawat, Rajkanwar, Maku, Roshan V., Patel, Hitendra K., Sankaranarayanan, Rajan, Sonti, Ramesh V.“…Interestingly, the secreted form of CbsA lacks the FnIII domain during in planta growth. Here we show that the presence of the FnIII domain inhibits the enzyme activity of CbsA on polysaccharide substrates like carboxymethylcellulose. …”
Publicado 2022
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3539por Leong, Bryan J., Hurney, Steven, Fiesel, Paul, Anthony, Thilani M., Moghe, Gaurav, Jones, Arthur Daniel, Last, Robert L.“…Surprisingly, the in vitro triacylinositol products of these enzymes are distinct from those that accumulate in planta. This suggests that additional enzymes are required in acylinositol biosynthesis. …”
Publicado 2022
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3540por Muchlinski, Andrew, Jia, Meirong, Tiedge, Kira, Fell, Jason S., Pelot, Kyle A., Chew, Lisl, Davisson, Danielle, Chen, Yuxuan, Siegel, Justin, Lovell, John T., Zerbe, Philipp“…Transcriptional co‐expression patterns and the presence of select diterpenoids in switchgrass roots support the occurrence of P450‐derived furanoditerpenoids in planta. Integrating molecular dynamics, structural analysis and targeted mutagenesis identified active site determinants that contribute to the distinct catalytic specificities underlying the broad substrate promiscuity of CYP71Z25–CYP71Z29 for native and non‐native diterpenoids.…”
Publicado 2021
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