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对肿瘤有抑制作用的假单胞菌新种——济南假单胞菌
引用本文:蔡妙英,路德硕,王大耜,何祖泽,王吉昌.对肿瘤有抑制作用的假单胞菌新种——济南假单胞菌[J].微生物学报,1989,29(3):155-160.
作者姓名:蔡妙英  路德硕  王大耜  何祖泽  王吉昌
作者单位:中国科学院微生物研究所 北京;山东省医学科学院 济南
摘    要:1973年自山东省无影山表土中分离出一株革兰氏阴性杆菌(编号161)。它对小鼠的宫颈癌、肝癌和黑色素瘤有明显抑制作用;对金黄色葡萄球菌、枯草芽孢杆菌和微球菌也有拮抗作用。

关 键 词:肿瘤  抑制作用  济南假单胞菌

A sarcoma-static new species of Pseudomonas, Pseudomonas jinanensis sp. nov
M Y Cai,D S Lu,D S Wang,Z Z He,J H Wang.A sarcoma-static new species of Pseudomonas, Pseudomonas jinanensis sp. nov[J].Acta Microbiologica Sinica,1989,29(3):155-160.
Authors:M Y Cai  D S Lu  D S Wang  Z Z He  J H Wang
Abstract:A strain of Gram negative bacteria was isolated from the surface soil of Wuying Hill at Jinan, Shandong province with Gause's medium in 1973. It is a strain of antagonistic bacteria for hysterocervicoma, hepatoma and melanoma of mice screened from 2100 strains of bacteria. It is also antagonistic to Staphylococcus aureus, Bacillus subtilis and Micrococcus. It is a Gram negative bacterium with lophotrichous polar flagella. Straight rods in shape or with a little slightly curved rods, 0.5-0.6 X 1-2 microns, randomly arranged, poly-beta-hydroxybutyrate granules are accumulated in cells after 2-5 days cultivation. Water green soluble pigment and green fluorescent pigment are produced. Respiratory metabolism, chemoorganotroph, many carbon-containing organic compounds can be used as carbon sources, such as glucose, trehalose, ethanol, cellulobiose, fucose, arginine and betaine, but propionic acid or tartaric acid is not utilized. Inorganic nitrogen containing compounds can be used ae the sole source of nitrogen. No growth factor is necessary for growth. Gelatin is hydrolyzed. Starch and cellulose are not hydrolyzed. Nitrate is not reduced. Arginine dihydrolase is produced. Levan is produced from sucrose. Growth occurs from 7 degrees C to 37 degrees C and from pH 5.65-8.40. No growth occurs at 40 degrees C and at pH value below 4.86. It can not grow autotrophically with hydrogen. Its G + C contents in DNA is 58.1 mol%. DNA-DNA hybridization experiments reveals a relatedness value of 58.6% between this strain and Ps. fluorescens. The above evidence shows that this strain differs from all species known in Pseudomonas, such as Pseudomonas fluorescens group. Pseudomonas caryophylli, Pseudomonas cepacia, Pseudomonas marginata, Pseudomonas acidovorans, Pseudomonas testosteroni and Pseudomonas delafieldii.(ABSTRACT TRUNCATED AT 250 WORDS)
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