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鼠伤寒沙门氏菌温度敏感型无噻唑突变体的己糖生长抑制作用

Growth inhibition by hexoses of a temperature-sensitive thiazoleless mutant of Salmonella typhimurium.

作者信息

Parada J L, Ortega M V

出版信息

J Bacteriol. 1967 Sep;94(3):707-11. doi: 10.1128/jb.94.3.707-711.1967.

Abstract

A Salmonella typhimurium mutant showing impairment in the utilization of hexoses was isolated after treatment with N-methyl-N'-nitro-N-nitrosoguanidine. At 30 C, it grew with hexoses (glucose, fructose, galactose, mannitol), glycerol, succinate, or acid-hydrolyzed casein. At 37 C, it failed to grow with any of the hexoses. Enzymatic determinations demonstrated, however, that the enzymes of the glycolytic pathway (up to the formation of triose phosphates) were present and active at 25 and 32 C. At 42 C, the mutant did not grow with any of the carbon sources used. At both 37 and 42 C, the mutant grew perfectly well with hexoses if yeast extract was present. The metabolite required for growth was thiamine or, specifically, its thiazole moiety. If glucose was added to a culture growing in glycerol, at 37 C, growth was inhibited. This inhibition was relieved by the addition of thiamine or thiazole. Thus, at 37 C and only in the presence of hexoses, the mutant manifests a requirement for thiazole. This auxotrophy is absolute at 42 C. These data indicate that, in this mutant, some derivative of hexoses inhibits the synthesis of thiazole, and that this inhibition is also dependent on the temperature of incubation. The position in the bacterial chromosome of the genetic locus of this lesion (thz(-)) was determined by conjugation and found to coincide with the only thiamine (thi) locus so far reported.

摘要

在用N-甲基-N'-硝基-N-亚硝基胍处理后,分离出一株鼠伤寒沙门氏菌突变体,该突变体在己糖利用方面存在缺陷。在30℃时,它能利用己糖(葡萄糖、果糖、半乳糖、甘露醇)、甘油、琥珀酸盐或酸水解酪蛋白生长。在37℃时,它不能利用任何一种己糖生长。然而,酶活性测定表明,糖酵解途径的酶(直至磷酸丙糖形成)在25℃和32℃时存在且有活性。在42℃时,该突变体不能利用所使用的任何一种碳源生长。在37℃和42℃时,如果有酵母提取物存在,该突变体就能很好地利用己糖生长。生长所需的代谢物是硫胺素,具体来说是其噻唑部分。如果将葡萄糖添加到在甘油中生长的培养物中,在37℃时,生长会受到抑制。添加硫胺素或噻唑可缓解这种抑制。因此,在37℃且仅在己糖存在的情况下,该突变体表现出对噻唑的需求。这种营养缺陷在42℃时是绝对的。这些数据表明,在这个突变体中,己糖的某些衍生物会抑制噻唑的合成,而且这种抑制也取决于培养温度。通过接合确定了该病变(thz(-))的遗传位点在细菌染色体上的位置,发现它与迄今为止报道的唯一硫胺素(thi)位点一致。

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