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221por Crook, Matthew B., Mitra, Shubhajit, Ané, Jean-Michel, Sadowsky, Michael J., Gyaneshwar, Prasad“…Rhizobium sp. strain IRBG74 is the first known nitrogen-fixing symbiont in the Agrobacterium/Rhizobium clade that nodulates the aquatic legume Sesbania sp. and is also a growth-promoting endophyte of wetland rice. …”
Publicado 2013
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223“…Proteins involved in polymerization and transport of exopolysaccharide (EPS) in Rhizobium leguminosarum are encoded within the chromosomal Pss-I cluster. …”
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224por Yuan, Songli, Li, Rong, Chen, Shuilian, Chen, Haifeng, Zhang, Chanjuan, Chen, Limiao, Hao, Qingnan, Shan, Zhihui, Yang, Zhonglu, Qiu, Dezhen, Zhang, Xiaojuan, Zhou, XinanEnlace del recurso
Publicado 2016
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225por Santillán, Orlando, Ramírez-Romero, Miguel A., Lozano, Luis, Checa, Alberto, Encarnación, Sergio M., Dávila, Guillermo“…In contrast, we have found that SigA, the primary sigma factor of Rhizobium etli, an α-proteobacteria, is able to transcribe E. coli promoters, although it exhibits only 48% identity (98% coverage) to RpoD. …”
Publicado 2016
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226“…Rhizobium sp. GHKF11 is an organophosphate-degrading bacterial strain that was isolated from farmland soil in Pecan Grove, Texas, USA. …”
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227por Shamseldin, Abdelaal, Nelson, Matthew S., Staley, Christopher, Guhlin, Joseph, Sadowsky, Michael J.“…Four Rhizobium strains were isolated from berseem clover in Egypt. …”
Publicado 2016
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228por Poinsot, Véréna, Crook, Matthew B., Erdn, Stéphanie, Maillet, Fabienne, Bascaules, Adeline, Ané, Jean-Michel“…By analyzing a collection of in-frame deletion mutants of key nod genes in the bacterium Rhizobium sp. IRBG74 by mass spectrometry, we were able to shed light on the possible substitution order of LCO decorations, and we discovered that the prevailing view is probably erroneous. …”
Publicado 2016
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229“…Rhizobium esperanzae CNPSo 668(T) is a nitrogen-fixing symbiont of Phaseolus vulgaris isolated from Mexican soils. …”
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230por Marek-Kozaczuk, Monika, Wdowiak-Wróbel, Sylwia, Kalita, Michał, Chernetskyy, Mykhaylo, Deryło, Kamil, Tchórzewski, Marek, Skorupska, Anna“…T. rubens did not exhibit strict selectivity in regard to the symbionts and rhizobia closely related to Rhizobium grahamii, Rhizobium galegae and Agrobacterium radiobacter, which did not nodulate Trifolium spp., were found amongst T. rubens nodule isolates. …”
Publicado 2017
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231por Ruíz-Valdiviezo, Víctor Manuel, Rogel-Hernandez, Marco Antonio, Guerrero, Gabriela, Rincón-Molina, Clara Ivette, García-Perez, Luis Galdino, Gutiérrez-Miceli, Federico Antonio, Villalobos-Maldonado, Juan José, López-López, Aline, Martinez-Romero, Esperanza, Rincón-Rosales, Reiner“…We report here the complete genome sequence of Rhizobium sp. strain ACO-34A, isolated from Agave americana L. rhizosphere. …”
Publicado 2017
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232por Arthikala, Manoj-Kumar, Montiel, Jesús, Sánchez-López, Rosana, Nava, Noreide, Cárdenas, Luis, Quinto, Carmen“…These combined results indicate that PvRbohA is crucial for effective Rhizobium infection and its release into the nodule cells. …”
Publicado 2017
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233por Jun, Dong, Minic, Zoran, Bhat, Supriya V., Vanderlinde, Elizabeth M., Yost, Chris K., Babu, Mohan, Dahms, Tanya E. S.“…Gel-electrophoresis and mass spectrometric-based techniques were used to identify proteins impacted by deficiency of a C-terminal protease, CtpA, in Rhizobium leguminosarum bv. viciae 3841. Predicted CtpA substrates from 2D silver stained gels were predominantly outer membrane and transport proteins. …”
Publicado 2018
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234por Guo, Yong, Matsuoka, Yuuto, Nishizawa, Tomoyasu, Ohta, Hiroyuki, Narisawa, Kazuhiko“…Bacteria harbored in/on the hyphae of the dark septate endophyte, Veronaeopsis simplex Y34, were identified as a single Rhizobium species by molecular analyses of bacterial 16S rRNA genes, and were successfully isolated from the endophyte. …”
Publicado 2018
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235por Kosolapova, Anastasiia O., Belousov, Mikhail V., Sulatskaya, Anna I., Belousova, Maria E., Sulatsky, Maksim I., Antonets, Kirill S., Volkov, Kirill V., Lykholay, Anna N., Shtark, Oksana Y., Vasileva, Ekaterina N., Zhukov, Vladimir A., Ivanova, Alexandra N., Zykin, Pavel A., Kuznetsova, Irina M., Turoverov, Konstantin K., Tikhonovich, Igor A., Nizhnikov, Anton A.“…In this study, using the previously developed proteomic method for screening and identification of amyloids (PSIA), we identified amyloidogenic proteins in the proteome of the root nodule bacterium Rhizobium leguminosarum. Among 54 proteins identified, we selected two proteins, RopA and RopB, which are predicted to have β-barrel structure and are likely to be involved in the control of plant-microbial symbiosis. …”
Publicado 2019
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236por Zilli, Jerri Édson, Simoes-Araujo, Jean Luiz, Rouws, Luc Felicianus Marie, de Barros Soares, Luis Henrique“…We report here the annotated draft genome sequence of the rhizobium strain BR 2003. This strain is able to establish symbiosis and to fix nitrogen with a broad range of leguminous species. …”
Publicado 2020
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237por Cavassim, Maria Izabel A., Moeskjær, Sara, Moslemi, Camous, Fields, Bryden, Bachmann, Asger, Vilhjálmsson, Bjarni J., Schierup, Mikkel Heide, W. Young, J. Peter, Andersen, Stig U.“…Rhizobia supply legumes with fixed nitrogen using a set of symbiosis genes. These can cross rhizobium species boundaries, but it is unclear how many other genes show similar mobility. …”
Publicado 2020
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239por Ortíz, José, Sanhueza, Carolina, Romero-Munar, Antònia, Hidalgo-Castellanos, Javier, Castro, Catalina, Bascuñán-Godoy, Luisa, Coba de la Peña, Teodoro, López-Gómez, Miguel, Florez-Sarasa, Igor, Del-Saz, Néstor Fernández“…The in vivo metabolic regulation of AOX activity by phosphorus (P) and nitrogen (N) and during plant symbioses with Arbuscular mycorrhizal fungi (AMF) and Rhizobium bacteria is still not fully understood. We highlight several findings and open questions concerning the in vivo regulation of AOX activity and its impact on plant metabolism during P deficiency and symbiosis with AMF. …”
Publicado 2020
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240por Ouyabe, Michel, Tanaka, Naoto, Shiwa, Yuh, Fujita, Nobuyuki, Kikuno, Hidehiko, Babil, Pachakkil, Shiwachi, Hironobu“…Two bacterial strains of the genus Rhizobium , S-93(T) and S-62, were isolated. The phylogenetic tree, based on the almost-complete 16S rRNA gene sequences (1476 bp for each strain), placed them in a distinct clade, with Rhizobium miluonense CCBAU 41251(T), Rhizobium hainanense I66(T), Rhizobium multihospitium HAMBI 2975(T), Rhizobium freirei PRF 81(T) and Rhizobium tropici CIAT 899(T) being their closest species. …”
Publicado 2020
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