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大豆根瘤菌新种,一种与大豆属物种相关的根瘤菌。

Ensifer glycinis sp. nov., a rhizobial species associated with species of the genus Glycine.

作者信息

Yan Hui, Yan Jun, Sui Xin Hua, Wang En Tao, Chen Wen Xin, Zhang Xiao Xia, Chen Wen Feng

机构信息

State Key Laboratory of Agro-Biotechnology, College of Biological Sciences and Rhizobium Research Center, China Agricultural University; MOA Key Laboratory of Soil Microbiology, Beijing 100193, PR China.

Key Laboratory of Mollisols Agroecology, Northeast Institute of Geography and Agroecology, Chinese Academy of Sciences, Harbin 150081, PR China.

出版信息

Int J Syst Evol Microbiol. 2016 Sep;66(8):2910-2916. doi: 10.1099/ijsem.0.001120. Epub 2016 Apr 28.

Abstract

Rhizobial strains from root nodules of Astragalus mongholicus and soybean (Glycine max) were characterized phylogenetically as members of the genus Ensifer (formerly named Sinorhizobium), based on 16S rRNA gene sequence comparisons. Results based upon concatenated sequence analysis of three housekeeping genes (recA, atpD and glnII, ≤ 93.8 % similarities to known species) and average nucleotide identity (ANI) values of whole genome sequence comparisons (ranging from 89.6 % to 83.4 % to Ensifer fredii and Ensifer saheli, respectively) indicated the distinct positions of these novel strains within the genus Ensifer. Phylogeny of symbiotic genes (nodC and nifH) of three novel strains clustered them with rhizobial species Ensifer fredii and Ensifer sojae, both isolated from nodules of Glycine max. Cross-nodulation tests showed that the representative strain CCBAU 23380T could form root nodules with nitrogen fixation capability on Glycine soja, Albizia julibrissin, Vigna unguiculata and Cajanus cajan, but failed to nodulate Astragalus mongholicus, its original host legume. Strain CCBAU 23380T formed inefficient nodules on G. max, and it did not contain 18 : 0, 18 : 1ω7c 11-methyl or summed feature 1 fatty acids, which differed from other related strains. Failure to utilize malonic acid as a carbon source distinguished strain CCBAU 23380T from the type strains of related species. The genome size of CCBAU 23380T was 6.0 Mbp, comprising 5624 predicted genes with DNA G+C content of 62.4 mol%. Based on the results above, a novel species, Ensifer glycinis sp. nov., is proposed, with CCBAU 23380T (=LMG 29231T =HAMBI 3645T) as the type strain.

摘要

基于16S rRNA基因序列比较,从蒙古黄芪和大豆(Glycine max)根瘤中分离得到的根瘤菌菌株在系统发育上被鉴定为Ensifer属(以前称为中华根瘤菌属)的成员。基于三个管家基因(recA、atpD和glnII,与已知物种的相似性≤93.8%)的串联序列分析结果以及全基因组序列比较的平均核苷酸同一性(ANI)值(分别为89.6%至83.4%,与费氏中华根瘤菌和萨赫勒中华根瘤菌相比)表明,这些新菌株在Ensifer属内具有独特的位置。三种新菌株的共生基因(nodC和nifH)的系统发育将它们与均从大豆根瘤中分离得到的费氏中华根瘤菌和大豆中华根瘤菌聚集在一起。交叉结瘤试验表明,代表菌株CCBAU 23380T能与野生大豆、合欢、豇豆和木豆形成具有固氮能力的根瘤,但不能使其原始宿主豆科植物蒙古黄芪结瘤。菌株CCBAU 23380T在大豆上形成低效根瘤,且不含有18 : 0、18 : 1ω7c 11-甲基或特征性脂肪酸总和1,这与其他相关菌株不同。不能利用丙二酸作为碳源使菌株CCBAU 23380T与相关物种的模式菌株区分开来。CCBAU 23380T的基因组大小为6.0 Mbp,包含5624个预测基因,DNA G+C含量为62.4 mol%。基于上述结果,提出了一个新物种,即大豆中华根瘤菌(Ensifer glycinis sp. nov.),以CCBAU 23380T(=LMG 29231T =HAMBI 3645T)作为模式菌株。

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