Brito B, Monza J, Imperial J, Ruiz-Argüeso T, Palacios J M
Laboratorio de Microbiología, Escuela Técnica Superior de Ingenieros Agrónomos, Universidad Politécnica de Madrid, 28040 Madrid, Spain.
Appl Environ Microbiol. 2000 Mar;66(3):937-42. doi: 10.1128/AEM.66.3.937-942.2000.
A limited number of Rhizobium and Bradyrhizobium strains possess a hydrogen uptake (Hup) system that recycles the hydrogen released from the nitrogen fixation process in legume nodules. To extend this ability to rhizobia that nodulate agronomically important crops, we investigated factors that affect the expression of a cosmid-borne Hup system from Rhizobium leguminosarum bv. viciae UPM791 in R. leguminosarum bv. viciae, Rhizobium etli, Mesorhizobium loti, and Sinorhizobium meliloti Hup(-) strains. After cosmid pAL618 carrying the entire hup system of strain UPM791 was introduced, all recipient strains acquired the ability to oxidize H(2) in symbioses with their hosts, although the levels of hydrogenase activity were found to be strain and species dependent. The levels of hydrogenase activity were correlated with the levels of nickel-dependent processing of the hydrogenase structural polypeptides and with transcription of structural genes. Expression of the NifA-dependent hupSL promoter varied depending on the genetic background, while the hyp operon, which is controlled by the FnrN transcriptional regulator, was expressed at similar levels in all recipient strains. With the exception of the R. etli-bean symbiosis, the availability of nickel to bacteroids strongly affected hydrogenase processing and activity in the systems tested. Our results indicate that efficient transcriptional activation by heterologous regulators and processing of the hydrogenase as a function of the availability of nickel to the bacteroid are relevant factors that affect hydrogenase expression in heterologous rhizobia.
少数根瘤菌和慢生根瘤菌菌株拥有氢摄取(Hup)系统,该系统可回收豆科植物根瘤中固氮过程释放的氢气。为了将这种能力扩展到能与具有重要农艺价值作物结瘤的根瘤菌,我们研究了影响来自豌豆根瘤菌生物变种viciae UPM791的粘粒携带的Hup系统在豌豆根瘤菌生物变种viciae、菜豆根瘤菌、百脉根中生根瘤菌和苜蓿中华根瘤菌Hup(-)菌株中表达的因素。在导入携带菌株UPM791完整hup系统的粘粒pAL618后,所有受体菌株在与宿主共生时都获得了氧化H₂的能力,尽管发现氢化酶活性水平因菌株和物种而异。氢化酶活性水平与氢化酶结构多肽的镍依赖性加工水平以及结构基因的转录相关。依赖NifA的hupSL启动子的表达因遗传背景而异,而由FnrN转录调节因子控制的hyp操纵子在所有受体菌株中的表达水平相似。除了菜豆根瘤菌 - 菜豆共生体系外,类菌体可利用的镍对所测试体系中的氢化酶加工和活性有强烈影响。我们的结果表明,异源调节因子的有效转录激活以及氢化酶作为类菌体可利用镍的函数的加工是影响异源根瘤菌中氢化酶表达的相关因素。