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1. Wang  X, Sahr  F, Xue  T, Sun  B,     ( 2007 )

Methylobacterium salsuginis sp. nov., isolated from seawater.

International journal of systematic and evolutionary microbiology 57 (Pt 8)
PMID : 17684240  :   DOI  :   10.1099/ijs.0.64877-0    
Abstract >>
Three pink-pigmented, facultatively methylotrophic strains, designated MP1, MP2 and MR(T), were isolated from seawater from southern China and characterized. Analysis of their complete 16S rRNA gene sequences revealed that they constituted three separate phylogenetic groups, showing the highest levels of similarity with respect to some members of the genus Methylobacterium. PCR amplification also showed the gene coding for the alpha-subunit of methanol dehydrogenase (mxaF) to be present in all strains, indicating a methylotrophic metabolism. All three strains utilized d-fructose, ethanol and nutrient agar as carbon sources, but did not utilize sucrose, citrate, acetate or formaldehyde. On the basis of the phenotypic, phylogenetic and genotypic analyses, strain MR(T) represents a novel species, for which the name Methylobacterium salsuginis sp. nov. is proposed, with MR(T) (=CGMCC 1.6474(T) =NCCB 100140(T)) as the type strain. Strains MP1 and MP2 respectively represent novel strains of the species Methylobacterium oryzae and Methylobacterium lusitanum.
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2. Meena  KK, Kumar  M, Kalyuzhnaya  MG, Yandigeri  MS, Singh  DP, Saxena  AK, Arora  DK,     ( 2012 )

Epiphytic pink-pigmented methylotrophic bacteria enhance germination and seedling growth of wheat (Triticum aestivum) by producing phytohormone.

Antonie van Leeuwenhoek 101 (4)
PMID : 22200783  :   DOI  :   10.1007/s10482-011-9692-9    
Abstract >>
Methylotrophic bacteria were isolated from the phyllosphere of different crop plants such as sugarcane, pigeonpea, mustard, potato and radish. The methylotrophic isolates were differentiated based on growth characteristics and colony morphology on methanol supplemented ammonium mineral salts medium. Amplification of the mxaF gene helped in the identification of the methylotrophic isolates as belonging to the genus Methylobacterium. Cell-free culture filtrates of these strains enhanced seed germination of wheat (Triticum aestivum) with highest values of 98.3% observed using Methylobacterium sp. (NC4). Highest values of seedling length and vigour were recorded with Methylobacterium sp. (NC28). HPLC analysis of production by bacterial strains ranged from 1.09 to 9.89 �gg ml(-1) of cytokinins in the culture filtrate. Such cytokinin producing beneficial methylotrophs can be useful in developing bio-inoculants through co-inoculation of pink-pigmented facultative methylotrophs with other compatible bacterial strains, for improving plant growth and productivity, in an environment-friendly manner.
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