水稻内生层游离固氮细菌的分类学研究

Annales de microbiologie Pub Date : 1983-09-01
J L Garcia, S Roussos, D Gauthier, G Rinaudo, M Mandel
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引用次数: 0

摘要

对从塞内加尔水稻土壤中分离的20株水稻内生固氮细菌进行了形态、生理、生化和营养等方面的研究。半数为革兰氏阴性小杆状体,具极性鞭毛,表现为严格的呼吸代谢;它们是假单胞菌属的特征。第一组6株菌株与cepacia-P有亲缘关系。边缘群,特征为厚毛鞭毛;它们积累了聚羟基丁酸盐,吸收了精氨酸和甜菜碱,在41℃下生长,DNA GC%为67-68,显示出广泛的营养谱。第二组4株菌株与P. lemoignei组相关,因为(a)其单毛鞭毛,(b)聚β -羟基丁酸积累,(c)不能同化精氨酸和甜菜碱,不能在41℃下生长,(d)缺乏精氨酸二水解酶,(e)营养谱狭窄。DNA GC%为65。这4株菌株也是反硝化菌。有6株菌株与藻藻属有亲缘关系,因为它们具有严格的呼吸代谢和周围的鞭毛;它们的营养谱是可变的,其中一种是反营养物。DNA GC%为68。1株与弧菌科嗜水气单胞菌有亲缘关系;它由革兰氏阴性和氧化酶阳性的小杆状体组成,具有单色极性鞭毛,呼吸和发酵代谢不产生气体。该菌株主要吸收糖,其DNA GC%为63。另一个菌株是革兰氏酶和氧化酶阴性的小杆状菌,有氮周鞭毛,呼吸和发酵代谢伴气体演化。糖、有机酸和氨基酸被同化。DNA GC%为53。该菌株与肠杆菌科的阴沟肠杆菌有关,但它显示出额外的反硝化能力。最后研究的两个菌株是水蛭属具有两肢鞭毛特征的螺旋体。它们表现出严格的呼吸代谢,DNA CG%为60-64。这项研究使我们能够展示假单胞菌,碱性单胞菌和气单胞菌的n2固定能力,这些物种在此之前一直缺乏n2固定细菌。所有研究的菌株都是嗜微气的,用于固定N2。
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[Taxonomic study of free nitrogen-fixing bacteria isolated from the endorhizosphere of rice].

Twenty strains of free-living N2-fixing bacteria, isolated from the endorhizosphere of rice in rice soils of Senegal, were studied on the basis of 259 morphological, physiological, biochemical and nutritional characters. Half of them were Gram-negative small rods with polar flagella and showing a strictly respiratory metabolism; they were characteristic of the genus Pseudomonas. A first group of 6 strains was related to the P. cepacia-P. marginata group characterized by lophotrichous flagella; they accumulated polyhydroxybutyrate, assimilated arginine and betaine, grew at 41 degrees C and showed a wide nutritional spectrum with DNA GC% of 67-68. The second group of 4 strains was related to the P. lemoignei group because of (a) its monotrichous flagella, (b) poly-beta-hydroxybutyrate accumulation, (c) failure to assimilate arginine and betaine and to grow at 41 degrees C, (d) lack of arginine dihydrolase and (e) its narrow nutritional spectrum. DNA GC% was 65. These 4 strains were also denitrifying bacteria. Six strains were related to the genus Alcaligenes because of their strictly respiratory metabolism and their peritrichous flagella; their nutritional spectrum was variable and one of them was a denitrifier. DNA GC% was 68. One strain was related to Aeromonas hydrophila of the Vibrionaceae family; it consisted of Gram-negative and oxidase-positive small rods with monotrichous polar flagella and respiratory and fermentative metabolism without gas evolution. This strain essentially assimilated sugars and its DNA GC% was 63. Another strain was a Gram- and oxidase-negative small rod with peritrichous flagella and respiratory and fermentative metabolism with gas evolution. Sugars, organic acids and amino acids were assimilated. The DNA GC% was 53. This strain was related to Enterobacter cloacae of the Enterobacteriaceae family, but it showed the additional faculty of denitrification. The last two strains studied were spirilla with amphitrichous flagella characteristic of the genus Aquaspirillum. They showed a strictly respiratory metabolism and a DNA CG% of 60-64. This study allowed us to show the N2-fixing capacity of species of Pseudomonas, Alcaligenes and Aeromonas which had been devoid of N2-fixing bacteria until this time. All strains studied were microaerophilic for N2 fixation.

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