Basu S, Majumdar S, Das S K, Bose S K
Department of Biochemistry, Calcutta, India.
J Appl Bacteriol. 1987 Jul;63(1):53-61. doi: 10.1111/j.1365-2672.1987.tb02417.x.
Antibiotically active producer mutants derived from the spontaneous degenerate parent Aspergillus versicolor N5 possessed not only mutual but also self-sensitive activity. The producer mutants, like the inactive parent, were only 3.5-fold less sensitive than the most sensitive unrelated organism, Trichophyton rubrum. The germination of spores is generally more sensitive than growth of vegetative cells. The antifungal spectrum of these mutual and self-sensitive mutants was fairly wide, unlike the host range specificity of bacteriocinogenic strains acting on organisms closely related to the producers. The self and mutual growth inhibitory principle was finally identified as the antibiotics mycoversilin and versilin in the case of producer mutants (N5)17 and N5T10(7), respectively, or Vx, an antibiotic of unknown molecular species, in the case of another producer mutant N5T10(8). Thus self-sensitivity, instead of self-resistance, of these antibiotically active mutant derivatives is a unique property among filamentous fungi in having simultaneously expressed two loci of contradictory functions, one for synthesis of, and the other for sensitivity towards, the same or related antibiotics.
源自自发退化亲本杂色曲霉N5的具有抗生素活性的生产突变体不仅具有相互敏感活性,还具有自身敏感活性。这些生产突变体与无活性亲本一样,其敏感性仅比最敏感的无关生物体红色毛癣菌低3.5倍。孢子萌发通常比营养细胞生长更敏感。与作用于与生产者密切相关的生物体的产细菌素菌株的宿主范围特异性不同,这些相互敏感和自身敏感突变体的抗真菌谱相当广泛。最终确定,对于生产突变体(N5)17和N5T10(7),自身和相互生长抑制原理分别是抗生素霉菌素和杂色菌素;对于另一个生产突变体N5T10(8),则是一种分子种类未知的抗生素Vx。因此,这些具有抗生素活性的突变衍生物的自身敏感性而非自身抗性,是丝状真菌中一种独特的特性,即同时表达了两个相互矛盾功能的位点,一个用于合成相同或相关抗生素,另一个用于对其敏感。