O'Brian M R, Kirshbom P M, Maier R J
J Bacteriol. 1987 Mar;169(3):1089-94. doi: 10.1128/jb.169.3.1089-1094.1987.
Two Bradyrhizobium japonicum cytochrome mutants were obtained by Tn5 mutagenesis of strain LO and were characterized in free-living cultures and in symbiosis in soybean root nodules. One mutant strain, LO501, expressed no cytochrome aa3 in culture; it had wild-type levels of succinate oxidase activity but could not oxidize NADH or N,N,N',N'-tetramethyl-p-phenylenediamine (TMPD). The cytochrome content of LO501 root nodule bacteroids was nearly identical to that of the wild type, but the mutant expressed over fourfold more bacteroid cytochrome c oxidase activity than was found in strain LO. The Tn5 insertion of the second mutant, LO505, had a pleiotropic effect; this strain was missing cytochromes c and aa3 in culture and had a diminished amount of cytochrome b as well. The oxidations of TMPD, NADH, and succinate by cultured LO505 cells were very similar to those by the cytochrome aa3 mutant LO501, supporting the conclusion that cytochromes c and aa3 are part of the same branch of the electron transport system. Nodules formed from the symbiosis of strain LO505 with soybean contained no detectable amount of leghemoglobin and had no N2 fixation activity. LO505 bacteroids were cytochrome deficient but contained nearly wild-type levels of bacteroid cytochrome c oxidase activity. The absence of leghemoglobin and the diminished bacterial cytochrome content in nodules from strain LO505 suggest that this mutant may be deficient in some aspect of heme biosynthesis.
通过对LO菌株进行Tn5诱变获得了两株日本慢生根瘤菌细胞色素突变体,并在自由生活培养物和大豆根瘤共生体系中对其进行了表征。其中一个突变菌株LO501在培养物中不表达细胞色素aa3;它具有野生型水平的琥珀酸氧化酶活性,但不能氧化NADH或N,N,N',N'-四甲基对苯二胺(TMPD)。LO501根瘤类菌体的细胞色素含量与野生型几乎相同,但该突变体表达的类菌体细胞色素c氧化酶活性比LO菌株中发现的活性高四倍以上。第二个突变体LO505的Tn5插入具有多效性;该菌株在培养物中缺少细胞色素c和aa3,细胞色素b的含量也减少。培养的LO505细胞对TMPD、NADH和琥珀酸的氧化与细胞色素aa3突变体LO501的氧化非常相似,支持了细胞色素c和aa3是电子传递系统同一分支的一部分这一结论。由LO505菌株与大豆共生形成 的根瘤中未检测到豆血红蛋白,也没有固氮活性。LO505类菌体缺乏细胞色素,但含有接近野生型水平的类菌体细胞色素c氧化酶活性。LO505菌株根瘤中豆血红蛋白的缺失和细菌细胞色素含量的减少表明,该突变体可能在血红素生物合成的某些方面存在缺陷。