Barnsley E A
J Bacteriol. 1976 Feb;125(2):404-8. doi: 10.1128/jb.125.2.404-408.1976.
The enzymes of naphthalene metabolism are induced in Pseudomonas putida ATCC 17484, PpG7, NCIB 9816, and PG and in Pseudomonas sp. ATCC 17483 during growth on naphthalene or salicylate; 2-aminobenzoate is a gratuitous inducer of these enzymes. The meta-pathway enzymes of catechol metabolism are induced in ATCC 17483 and PPG7 during growth on naphthalene or salicylate or during growth in the presence of 2-aminobenzoate, but in ATCC 17484 and NCIB 9816 the ortho-pathway enzymes of catechol metabolism are induced during growth on naphthalene or salicylate. 2-Aminobenzoate does not induce any enzymes of catechol metabolism in the latter two organisms. In Pseudomonas PG the meta-pathway enzymes are present at high levels under all conditions of growth, but this organism and PpG7 can induce ortho-pathway enzymes during naphthalene or salicylate metabolism. Salicylate appears to be the inducer of the enzymes of naphthalene metabolism in all of the organisms studied and, where they are inducible, of the meta-pathway enzymes, but the properties of Pseudomonas PG suggest that separate, regulatory systems may exist.
在恶臭假单胞菌ATCC 17484、PpG7、NCIB 9816和PG以及假单胞菌属ATCC 17483中,萘代谢酶在以萘或水杨酸盐为碳源生长时被诱导;2-氨基苯甲酸是这些酶的安慰诱导物。在ATCC 17483和PPG7中,儿茶酚代谢的间位途径酶在以萘或水杨酸盐为碳源生长时,或在有2-氨基苯甲酸存在的情况下生长时被诱导,但在ATCC 17484和NCIB 9816中,儿茶酚代谢的邻位途径酶在以萘或水杨酸盐为碳源生长时被诱导。2-氨基苯甲酸在这后两种微生物中不诱导儿茶酚代谢的任何酶。在假单胞菌PG中,间位途径酶在所有生长条件下都高水平存在,但该菌和PpG7在萘或水杨酸盐代谢过程中可诱导邻位途径酶。水杨酸盐似乎是所有研究的微生物中萘代谢酶的诱导物,并且在可诱导的情况下,也是间位途径酶的诱导物,但假单胞菌PG的特性表明可能存在独立的调控系统。