نتایج جستجو برای: sinorhizobium meliloti

تعداد نتایج: 2270  

Journal: :Genetics 1993
J A Swanson J T Mulligan S R Long

The early steps of symbiotic nodule formation by Rhizobium on plants require coordinate expression of several nod gene operons, which is accomplished by the activating protein NodD. Three different NodD proteins are encoded by Sym plasmid genes in Rhizobium meliloti, the alfalfa symbiont. NodD1 and NodD2 activate nod operons when Rhizobium is exposed to host plant inducers. The third, NodD3, is...

2012
Hansheng Zhao Mao Li Kechi Fang Wenfeng Chen Jing Wang

BACKGROUND Sinorhizobium meliloti is a soil bacterium, known for its capability to establish symbiotic nitrogen fixation (SNF) with leguminous plants such as alfalfa. S. meliloti 1021 is the most extensively studied strain to understand the mechanism of SNF and further to study the legume-microbe interaction. In order to provide insight into the metabolic characteristics underlying the SNF mech...

Journal: :Microbiology Resource Announcements 2019

Journal: :Molecular plant-microbe interactions : MPMI 2001
E Kiss A Kereszt F Barta S Stephens B L Reuhs A Kondorosi P Putnoky

The rkp-3 region is indispensable for capsular polysaccharide (K antigen) synthesis in Sinorhizobium meliloti Rm41. Strain Rm41 produces a K antigen of strain-specific structure, designated as the KR5 antigen. The data in this report show that the rkp-3 gene region comprises 10 open reading frames involved in bacterial polysaccharide synthesis and export. The predicted amino acid sequences for ...

Journal: :Journal of bacteriology 1992
E Huala J Stigter F M Ausubel

Sigma 54-dependent transcriptional activators such as Escherichia coli NtrC, Rhizobium meliloti NifA, and Rhizobium leguminosarum DctD share similar central and carboxy-terminal domains but differ in the structure and function of their amino-terminal domains. We have deleted the amino-terminal and carboxy-terminal domains of R. leguminosarum DctD and have demonstrated that the central domain of...

Journal: :FEMS microbiology letters 1998
S Zekri N Toro

The insertion sequence ISRm8 was identified by sequence analysis of the cryptic plasmid pRmeGR4b of Sinorhizobium meliloti GR4. ISRm8 is 1451 bp in length and carries 22/24-bp terminal imperfect inverted repeats with seven mismatches and a direct target site duplication of 3 bp. ISRm8 carries a unique open reading frame whose putative protein showed significant similarity to the insertion seque...

Journal: :Applied and environmental microbiology 2008
Jodi L Humann Brenda K Schroeder Michael W Mortimer Brent L House Svetlana N Yurgel Scott C Maloney Kristel L Ward Heather M Fallquist Hope T Ziemkiewicz Michael L Kahn

The Sinorhizobium meliloti ORFeome project cloned 6,314 open reading frames (ORFs) into a modified Gateway entry vector system from which the ORFs could be transferred to destination vectors in vivo via bacterial conjugation. In this work, a reporter gene destination vector, pMK2030, was constructed and used to generate ORF-specific transcriptional fusions to beta-glucuronidase (gusA) and green...

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