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Chromogenesis mirabilis in Streptomyces griseus

机译:灰链霉菌中的生色异常

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A number of chromogenic Streptomyces, producing diffusible melanoid pigment on complex organic media, fail to form melanin pigment on conventionally used synthetic tyrosine agar. By means of our new melanin formation test, almost all the chromogenic streptomyces can now be detected in chemically defined medium. In contrast to ordinary chromogenic streptomyces, two streptomyces species of the International Streptomyces Project, S. griseus ISP 5236 and S. ornatus ISP 5307, produce melanin pigment only on synthetic tyrosine agar, without showing chromogenicity on complex organic media. From the results obtained with S. griseus ISP 5236 and S. phaeochromogenes ISP 5073, it was revealed that melanin formation by Streptomyces, in general, is inhibited by L-cysteine present in organic nitrogen sources incorporated into natural media. Most chromogenic species of streptomyces produce a higher level of tyrosinase and rapidly utilize L-cysteine in the culture media which result in the manifestation of good chromogenicity on natural media. Peculiarity of chromogenicity of S. griseus and S. ornatus might be due to the lower ability to produce tyrosinase and to utilize L-cysteine in the culture medium.
机译:许多发色链霉菌在复杂的有机介质上产生可扩散的黑色素色素,却无法在常规使用的合成酪氨酸琼脂上形成黑色素色素。通过我们新的黑色素形成测试,现在几乎可以在化学成分确定的培养基中检测到所有发色链霉菌。与普通发色链霉菌相比,国际链霉菌项目的两种链霉菌种,S。griseus ISP 5236和S. ornatus ISP 5307,仅在合成酪氨酸琼脂上产生黑色素色素,而在复杂的有机介质上不显示发色性。从用灰链霉菌ISP 5236和嗜盐链霉菌ISP 5073获得的结果表明,链霉菌的黑色素形成通常被掺入天然培养基中的有机氮源中的L-半胱氨酸抑制。链霉菌的大多数发色物种产生较高水平的酪氨酸酶并在培养基中迅速利用L-半胱氨酸,这导致在自然培养基上表现出良好的发色性。 S. griseus和S. ornatus发色性的特殊性可能是由于在培养基中产生酪氨酸酶和利用L-半胱氨酸的能力较低。

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