Baginsky Cecilia, Palacios Jose-Manuel, Imperial Juan, Ruiz-Argüeso Tomás, Brito Belén
Laboratorio de Microbiología, Departamento de Biotecnología-E.T.S. Ingenieros Agrónomos, Universidad Politécnica de Madrid, 28040 Madrid, Spain.
FEMS Microbiol Lett. 2004 Aug 15;237(2):399-405. doi: 10.1016/j.femsle.2004.07.003.
In this work, we report the cloning and sequencing of the Azorhizobium caulinodans ORS571 hydrogenase gene cluster. Sequence analysis revealed the presence of 20 open reading frames hupTUVhypFhupSLCDFGHJK hypABhupRhypCDEhupE. The physical and genetic organization of A. caulinodans ORS571 hydrogenase system suggests a close relatedness to that of Rhodobacter capsulatus. In contrast to the latter species, a gene homologous to Rhizobium leguminosarum hupE was identified downstream of the hyp operon. A hupSL mutation drastically reduced the high levels of hydrogenase activity induced by the A. caulinodans ORS571 wild-type strain in symbiosis with Sesbania rostrata plants. However, no significant effects on dry weight and nitrogen content of S. rostrata plants inoculated with the hupSL mutant were observed in plant growth experiments.
在本研究中,我们报道了茎瘤固氮根瘤菌ORS571氢化酶基因簇的克隆与测序。序列分析显示存在20个开放阅读框hupTUVhypFhupSLCDFGHJK hypABhupRhypCDEhupE。茎瘤固氮根瘤菌ORS571氢化酶系统的物理和遗传组织表明其与荚膜红细菌的系统密切相关。与后一种菌不同的是,在hyp操纵子下游鉴定出了一个与豌豆根瘤菌hupE同源的基因。hupSL突变极大地降低了茎瘤固氮根瘤菌ORS571野生型菌株与喙荚田菁植物共生时诱导产生的高水平氢化酶活性。然而,在植物生长实验中,未观察到接种hupSL突变体的喙荚田菁植物的干重和氮含量受到显著影响。