Prokulevich V A, Fomichev Iu K
Mol Gen Mikrobiol Virusol. 1988 Sep(9):46-8.
Cells of 56 pectolytic Erwinia strains of different origin tested are prone to filamentation after UV-irradiation. The fact makes one possible to consider them natural fil+ organisms. Bacteria E. herbicola (9 strains) that are unable to synthesize pectatelyases are not transformed into filaments after NV-irradiation. The function of fil+ genes is recA-dependent in bacteria E. chrysanthemi ENA49 and is phenotypically analogous to fil+ gene function in E. coli B or lon- mutation in E. coli K12.
对56株不同来源的果胶溶解欧文氏菌菌株进行测试,其细胞在紫外线照射后易于形成丝状。这一事实使得有可能将它们视为天然的fil+生物。不能合成果胶酸酶的草本欧文氏菌(9株)在紫外线照射后不会转化为丝状。在菊欧文氏菌ENA49中,fil+基因的功能是recA依赖性的,并且在表型上类似于大肠杆菌B中的fil+基因功能或大肠杆菌K12中的lon-突变。