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2006年06月30日

【期刊论文】Rhizobium yanglingense sp. nov., isolated from arid and semi-arid regions in China

陈文新, Zhi Yuan Tan, , Feng Ling Kan, Gui Xiang Peng, En Tao Wang, Barbara Reinold-Hurek and Wen Xina Chen

International Journal of Systematic and Evolutionary Microbiology (2001), 51 909-914,-0001,():

-1年11月30日

摘要

A novel rhizobial group cluster 9 defined in previous research Tan Z. Y., Wang E. T., Peng G. X. Zhu M.E., Martinez-ROMERO E Chen W. X. (1999) Int J Syst Bacteriol 49 1457-1469 was further characterized by determination of DNA base composition whole-cell protein SDS-PAGE analysis DNA-DNA hybridization 165 rRNA gene sequencing and host specificity These isolates were collected from the wild legumes Amphicarpaea trisperma Coronilla varia and Gueldenstaedtia multiflora growing in arid and semi-arid regions in north-wesern China lsolated within cluster 9 grouped into a single cluster above a similarity level of 90.6% in a cluster analysis based on protein SDS-PAGE and they were differentiated from defined rhizobial species comparative analysis of 165 rRNA gene sequences showed that isolate CCBAU 71623, representing cluster 9 was most related to Rhizobium gallicum and Rhizobium mongolense The DNA-DNA homologies were lower thatn 42.4% among cluster 9 and defined species including R. gallicum and R. MONGOLENSE Theese data indicated that cluster 9 was a unique genomic species lsoateds within this cluster could share their host plants They clould nt nodulate Galega orientalis and Leucarena leucocephala and formed inefeective nodulels on phaseolus vuaris This Group could also be differentiated from defined species by phenotypic characteristics it is therefore proposed as a new species Rhizobium yanglingense with isolate CCBAU 71623 as the type strain.

Rhizobium yanglingense,, Amphlearpaen trisperma,, Coronilla xaria,, Gueldenstaedtia multifiora,, phylogeny

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2006年06月30日

【期刊论文】Rhizobium indigoferae sp. Nov. and Sinorhizobium kummerowiae sp. Nov., respectively solated from Indigofera spp. And Kummerowia stipulacea

陈文新, Ge Hong Wei, , En Tao Wang, Zhi Yuan Tan, Ming E Zhu and Wen Xin Chen

International Journal of Systematic and Evolutionary Microbiology (2002), 52, 2231-2239,-0001,():

-1年11月30日

摘要

Forty-eight rhizobial isolates from root nodules of Indigofera and Kummerowia, two genera of annual or perennial wild legumes growing in the Loess Plateau in north-western China, were characterized by a polyphasic approach, Two main goups cluster 1 and cluster 2, were defined based upon the results of numerical taxonomy SDS-PAGE of whole-cell proteins and DNA relatedness All the isolates within cluster 1 were isolated from Indigofera and they were identified as Rhizobium strins by 165 Rrna gene analysis DNA relatedness of 29.5-48.9% was obtained among the cluster 1 isotates and the reference strains for defined Rhizobium specties Cluster 2 consisted of isolates from Kummerowia stipulacea and was identified as belonging to Sinorhizobium by 165 Rrna gene analyses DNA relatedness varied from 5.2 to 41.7% among the isolates of cluster 2 and reference strains for Sinorhizbium species considering the existence of distinctive features among these two groups and related species within the genera Rhizobium and Sinohizobium we propose two novel species Rhizobium indigoferae sp. Nov for cluster 1, with isolate CCBAU 71714(=AS 1.3046') as the type strain and Sinorhizobium kummerowiae sp. Nov. for cluster 2, with isolate CCBAU 71042' (=AS 1.3045') as the type strain.

Rhisobiton indigoferac,, Sinorchiobium kummerouiae,, diversity,, phyologeny

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2006年06月30日

【期刊论文】Rhizobium huakuii sp. Nov. Isolated from the Root Nodules of Astragalus sinicus

陈文新, W.X. CHEN*, G.S. LI., Y.L. QI., E.T. WNAG., H.L QI., E.T. WANG, H.L. YUAN, AND J.L. LI

INTERNATIONAL JOURNAL OF SYSTEMATIC BACTERIOLOGY Apr 1991 p. 275-280,-0001,():

-1年11月30日

摘要

Nine bacterial strains isotated from root nodules of Astragalus sinicus were compated with 41 reference strains Including the type strains of the type speciers of the genera Rhigobium Bradyrhigobium and Agrobacterium by performing a aumerical analysis of 200 henotypefeatures Represntativestrains belonging to different clusters were further compared with similar bacteria by using data from gelelectroporesis of whole-cell proteins DNA G+C content data and DNA-DNA hybridization data The rhizobial strains isolated from nodules of A Ssinicus constitute a ditincl homology group that isquite dfferent from previously described Rhizobium Radyrhizobium and Agrobacterium species and from strains isotaled from other Astragalus species we propose the name Rhizobium huakuil sp nov for the strains isolated rom A sinicus Type strain CCBAU 2609(=103) has been deposited in the Culture Collection of Beijing Agricultural University Beijing, Prople's Republic of China.

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2006年06月30日

【期刊论文】Rhizobium hainanense sp. Nov., Isolated from Tropical Legumes

陈文新, WEN-SIN CHEN, *, ZHI-YUAN TAN, JUN-LIAN GAO, YING LI, AND EN-TAO WANG

INTERNATIONAL JOURNAL OFSYSTEMATIC BACTENOLOGY July 1997. p. 870-873,-0001,():

-1年11月30日

摘要

A fast-growing rhizobial group isolated from teguminous plants in Hainan Province a tropical region of China is prouposed as a new Rhizobium species on the basis of 16S rRNA gene sequencing DNA-DNA hybridization andphenotypic characterization This new species belongs to the phylogenetic branch which includes Rhizobium leguminosarum We propose the name Rhizoblum hainanense sp. Nov. for this species The strain CCBAU 57015 (166) is the type strain; it has been deposited in the cluture collection of Beijing Agricultural University People's Republic of China

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2006年06月30日

【期刊论文】Numerical Taxonomic Study of Fast-Growing Soybean Rhizobia and a Proosal that Rhizobium fredii Be Assigned to Sinorhizobium gen nov.

陈文新, W.X. CHEN., *, G.H. YAN. AND J.L. LI

INTERNATIONAL JOURNAL OF SYSTEMATIC BACTERIOLOGY OCT 1988, po. 392-397,-0001,():

-1年11月30日

摘要

A total of 33 strains of fast-growing soybean rhizobia isolated from soil and soybean nodules collected in China and 25 strains beioning to the genera Rhizobium Radythizobium and Agrobacterium were compared by numerical taxonomic techniques using 240 different characters Ou resultsindicatied that all of the strains of fast-growing soybean rhizobia which we examined are closely related guanine-plus-eytosine content, 59.9 to 63.8 mol% and are separated from Rhizobium and Bradyshizobium at the generic level Based on numerical taxonomy deoxyribonucleic acid (DNA) base ratio determinations DNA-DNA hybridization data serologica analysis data the composition of extracellultar gum bacteriophage typing data and soluble rpotein patterns we propose that the fast growing soybean rhizobia represent members of a new genuw rather that a species of Rhizobium Rhizobium fredio; we propose Sinorhizobium gen nov as an appropriate generic name The type species of the new genus is Sinorhizobium fredii comb nov (basonym Rhizobium fredii Scholla and Elkan 1984) and the type strain is strain ATCC 35423 (=USDA 205) For the other species we propose the name Sinorhizobium xinjaingenis sp. Nov.; the type strain of this pecies is strain CCBAU 110, which has been deposited in the Beijing Agricultural Univesity Culture Collection Beijing People's Republic of China.

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    中国农业大学,北京

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