Hom S S, Graham L A, Maier R J
J Bacteriol. 1985 Mar;161(3):882-7. doi: 10.1128/jb.161.3.882-887.1985.
Recombinant cosmids containing a Rhizobium japonicum gene involved in both hydrogenase (Hup) and nitrogenase (Nif) activities were isolated. An R. japonicum gene bank utilizing broad-host-range cosmid pLAFR1 was conjugated into Hup- Nif- R. japonicum strain SR139. Transconjugants containing the nif/hup cosmid were identified by their resistance to tetracycline (Tcr) and ability to grow chemoautotrophically (Aut+) with hydrogen. All Tcr Aut+ transconjugants possessed high levels of H2 uptake activity, as determined amperometrically. Moreover, all Hup+ transconjugants tested possessed the ability to reduce acetylene (Nif+) in soybean nodules. Cosmid DNAs from 19 Hup+ transconjugants were transferred to Escherichia coli by transformation. When the cosmids were restricted with EcoRI, 15 of the 19 cosmids had a restriction pattern with 13.2-, 4.0-, 3.0-, and 2.5-kilobase DNA fragments. Six E. coli transformants containing the nif/hup cosmids were conjugated with strain SR139. All strain SR139 transconjugants were Hup+ Nif+. Moreover, one nif/hup cosmid was transferred to 15 other R. japonicum Hup- mutants. Hup+ transconjugants of six of the Hup- mutants appeared at a frequency of 1.0, whereas the transconjugants of the other nine mutants remained Hup-. These results indicate that the nif/hup gene cosmids contain a gene involved in both nitrogenase and hydrogenase activities and at least one and perhaps other hup genes which are exclusively involved in H2 uptake activity.
分离出了含有与氢化酶(Hup)和固氮酶(Nif)活性均有关的日本根瘤菌基因的重组黏粒。利用广宿主范围黏粒pLAFR1构建的日本根瘤菌基因文库被接合到Hup-Nif-日本根瘤菌菌株SR139中。通过对四环素的抗性(Tcr)以及利用氢气进行化学自养生长(Aut+)的能力,鉴定出含有nif/hup黏粒的接合子。如通过电流分析法所测定,所有Tcr Aut+接合子都具有高水平的氢气摄取活性。此外,所有测试的Hup+接合子在大豆根瘤中都具有还原乙炔的能力(Nif+)。来自19个Hup+接合子的黏粒DNA通过转化转移到大肠杆菌中。当用EcoRI对这些黏粒进行酶切时,19个黏粒中有15个具有13.2、4.0、3.0和2.5千碱基DNA片段的酶切图谱。将6个含有nif/hup黏粒的大肠杆菌转化子与菌株SR139进行接合。所有菌株SR139的接合子都是Hup+ Nif+。此外,一个nif/hup黏粒被转移到另外15个日本根瘤菌Hup-突变体中。6个Hup-突变体的Hup+接合子出现的频率为1.0,而其他9个突变体的接合子仍然是Hup-。这些结果表明,nif/hup基因黏粒包含一个与固氮酶和氢化酶活性均有关的基因,以及至少一个或许还有其他专门参与氢气摄取活性的hup基因。