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941“…Members of the family Rhizobiaceae, such as Sinorhizobium and Rhizobium were mainly associated with clover, whereas Acholeplasma (wall-less bacteria transmitted by insects) was unique to barley. …”
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942por Barrière, Quentin, Guefrachi, Ibtissem, Gully, Djamel, Lamouche, Florian, Pierre, Olivier, Fardoux, Joël, Chaintreuil, Clémence, Alunni, Benoît, Timchenko, Tatiana, Giraud, Eric, Mergaert, Peter“…Legumes harbor in their symbiotic nodule organs nitrogen fixing rhizobium bacteria called bacteroids. Some legumes produce Nodule-specific Cysteine-Rich (NCR) peptides in the nodule cells to control the intracellular bacterial population. …”
Publicado 2017
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943por Bartling, Pascal, Brinkmann, Henner, Bunk, Boyke, Overmann, Jörg, Göker, Markus, Petersen, Jörn“…In this study, we surveyed type-strain genomes from the One Thousand Microbial Genomes (KMG-I) project and identified a roseobacter-specific RepABC-type operon in the draft genome of the marine rhizobium Martelella mediterranea DSM 17316(T). PacBio genome sequencing demonstrated the presence of three circular ECRs with sizes of 593, 259, and 170-kb. …”
Publicado 2017
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944por Castellano-Hinojosa, Antonio, Correa-Galeote, David, Carrillo, Presentación, Bedmar, Eulogio J., Medina-Sánchez, Juan M.“…In addition to genera Polymorphum, Paracoccus, Azospirillum, Pseudomonas, Hyphomicrobium, Thauera, and Methylophaga, which were present in the clone libraries, Arthrobacter, Burkholderia, and Rhizobium were also detected in culture media that were not found in the clone libraries. …”
Publicado 2017
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945por Siegel-Hertz, Katarzyna, Edel-Hermann, Véronique, Chapelle, Emilie, Terrat, Sébastien, Raaijmakers, Jos M., Steinberg, Christian“…OTUs found more abundant in Fusarium wilt-suppressive soils were affiliated to the bacterial genera Adhaeribacter, Massilia, Microvirga, Rhizobium, Rhizobacter, Arthrobacter, Amycolatopsis, Rubrobacter, Paenibacillus, Stenotrophomonas, and Geobacter. …”
Publicado 2018
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946“…Sandwich-like docking configurations of the heterodimeric complex of NFR5 and K1 Vicia sativa receptor-like kinases together with the putative ligand, Nod factor (NF) of Rhizobium leguminosarum bv. viciae, were modeled and two of the most probable configurations were assessed through the analysis of the mutual polymorphisms and conservatism. …”
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947por Thiem, Dominika, Gołębiewski, Marcin, Hulisz, Piotr, Piernik, Agnieszka, Hrynkiewicz, Katarzyna“…Sequences affiliated with Rhodanobacter, Granulicella, and Sphingomonas dominated at the saline site, while Bradyrhizobium and Rhizobium were more abundant at the non-saline site. …”
Publicado 2018
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948por Zhu, Yunping, Zhang, Feifei, Zhang, Chengnan, Yang, Li, Fan, Guangsen, Xu, Youqiang, Sun, Baoguo, Li, Xiuting“…Pantoea, Pediococcus, Lactococcus and Rhizobium played an important role in the early stage; Lactobacillus was dominant in the medium stage (67.72%); and Acetobacter, Komagataeibacter and Kroppenstedtia were the key bacteria in the later stage. …”
Publicado 2018
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949por Osińska-Jaroszuk, Monika, Jaszek, Magdalena, Starosielec, Magdalena, Sulej, Justyna, Matuszewska, Anna, Janczarek, Monika, Bancerz, Renata, Wydrych, Jerzy, Wiater, Adrian, Jarosz-Wilkołazka, Anna“…Four bacterial EPSs extracted from Rhizobium leguminosarum bv. trifolii Rt24.2, Sinorhizobium meliloti Rm1021, Bradyrhizobium japonicum USDA110, and Bradyrhizobium elkanii USDA76 were determined towards their metal ion adsorption properties and possible modification of Cerrena unicolor laccase properties. …”
Publicado 2018
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950por Pontonio, Erica, Di Cagno, Raffaella, Tarraf, Waed, Filannino, Pasquale, De Mastro, Giuseppe, Gobbetti, Marco“…Various genera were detectable, but oregano harbored mainly Methylobacterium, Sphingomonas, Rhizobium and Aurantimonas throughout phenological stages. …”
Publicado 2018
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951por Gully, Djamel, Czernic, Pierre, Cruveiller, Stéphane, Mahé, Frédéric, Longin, Cyrille, Vallenet, David, François, Philippe, Nidelet, Sabine, Rialle, Stéphanie, Giraud, Eric, Arrighi, Jean-François, DasGupta, Maitrayee, Cartieaux, Fabienne“…Nod factors (NF) were assumed to be indispensable for the establishment of a rhizobium-legume symbiosis until the discovery that certain Bradyrhizobium strains interacting with certain Aeschynomene species lack the canonical nodABC genes required for their synthesis. …”
Publicado 2018
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952“…In this work we functionally characterized the role of the node conformed by micro-RNA319 (miR319) – TEOSINTE BRANCHED/CYCLOIDEA/PCF (TCP) transcription factor in the common bean (Phaseolus vulgaris) – Rhizobium tropici symbiosis. The miR319d, one of nine miR319 isoforms from common bean, was highly expressed in root and nodules from inoculated plants as compared to roots from fertilized plants. …”
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953por Xu, Jin, Zhang, Yunzeng, Zhang, Pengfan, Trivedi, Pankaj, Riera, Nadia, Wang, Yayu, Liu, Xin, Fan, Guangyi, Tang, Jiliang, Coletta-Filho, Helvécio D., Cubero, Jaime, Deng, Xiaoling, Ancona, Veronica, Lu, Zhanjun, Zhong, Balian, Roper, M. Caroline, Capote, Nieves, Catara, Vittoria, Pietersen, Gerhard, Vernière, Christian, Al-Sadi, Abdullah M., Li, Lei, Yang, Fan, Xu, Xun, Wang, Jian, Yang, Huanming, Jin, Tao, Wang, Nian“…The core citrus rhizosphere microbiome comprises Pseudomonas, Agrobacterium, Cupriavidus, Bradyrhizobium, Rhizobium, Mesorhizobium, Burkholderia, Cellvibrio, Sphingomonas, Variovorax and Paraburkholderia, some of which are potential plant beneficial microbes. …”
Publicado 2018
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954“…Gcd genes came mainly from the genera of Rhizobium (1.63–77.99%), Ensifer (0.13–56.95%), Shinella (0.32–25.49%), and Sinorhizobium (0.16–11.88%) in the phylum of Proteobacteria (25.10–98.85%). …”
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955“…Besides, the classical transformation system using Agrobacteria tumefaciens or Rhizobium rhizogenes, other transformation technologies have become available and additional methods are on its way to the plant sector. …”
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956por Gutiérrez-García, Karina, Bustos-Díaz, Edder D, Corona-Gómez, José Antonio, Ramos-Aboites, Hilda E, Sélem-Mojica, Nelly, Cruz-Morales, Pablo, Pérez-Farrera, Miguel A, Barona-Gómez, Francisco, Cibrián-Jaramillo, Angélica“…Diazotrophic plant endophytes, including Bradyrhizobium, Burkholderia, Mesorhizobium, Rhizobium, and Nostoc species, dominated the epiphyte-free sub-communities. …”
Publicado 2018
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957por Zhang, Yang, Blaby-Haas, Crysten E., Steimle, Stefan, Verissimo, Andreia F., Garcia-Angulo, Victor A., Koch, Hans-Georg, Daldal, Fevzi, Khalfaoui-Hassani, Bahia“…Copper and riboflavin uptake abilities of these strains were compared with those expressing R. capsulatus CcoA and Rhizobium leguminosarum RibN as bona fide copper and riboflavin importers, respectively. …”
Publicado 2019
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958por Serova, Tatiana A., Tsyganova, Anna V., Tikhonovich, Igor A., Tsyganov, Viktor E.“…The development of nitrogen-fixing nodules formed during Rhizobium–legume symbiosis is strongly controlled by phytohormones. …”
Publicado 2019
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959“…Gibberellin (GA) plays a controversial role in the legume-rhizobium symbiosis. Recent studies have shown that the GA level in legumes must be precisely controlled for successful rhizobial infection and nodule organogenesis. …”
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960por Irisarri, Pilar, Cardozo, Gerónimo, Tartaglia, Carolina, Reyno, Rafael, Gutiérrez, Pamela, Lattanzi, Fernando A., Rebuffo, Mónica, Monza, Jorge“…This study lays out a strategy followed for selecting a Rhizobium leguminosarum sv. trifolii strain for white clover (Trifolium repens) with competitive nodule occupancy. …”
Publicado 2019
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