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Effects of Temperature Stress on Bean-Nodulating Rhizobium Strains

机译:温度胁迫对菜豆根瘤菌菌株的影响

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High soil temperatures in tropical areas limit nodulation and dinitrogen fixation by strains of Rhizobium. Several heat-tolerant bean-nodulating Rhizobium strains have been isolated previously. However, the basis of their resistance to heat remains unknown. In this study, we compared the effects of heat on symbiotic nitrogen fixation, cell survival, amino acid uptake, and protein synthesis in a heat-tolerant (CIAT899) and a heat-sensitive (CNPAF512) bean-nodulating Rhizobium strain. Acetylene reduction activity of nodulated roots excised from unstressed plants was strongly diminished at 35 or 40°C when plants were nodulated either by CIAT899 or by CNPAF512. When these strains were tested under free-living conditions, survival at 40°C as well as the kinetics of l-[35S]methionine uptake and protein synthesis at 35 and 40°C indicated the higher tolerance of CIAT899 than of CNPAF512 to thermal stress. The synthesis of heat shock proteins was detected in both strains, although at different temperatures. Increased synthesis of 14 heat shock proteins in CNPAF512 and of 6 heat shock proteins in CIAT899 was observed at 40 and 45°C, respectively. A heat shock protein of approximately 21 kDa, of which the synthesis was strongest in both Rhizobium strains upon a temperature shift up, was also conserved in several other bean-nodulating rhizobia. Acquired thermotolerance in CIAT899 was shown to depend on protein synthesis.
机译:热带地区的高土壤温度限制了根瘤菌的根瘤和固氮作用。先前已经分离了几种耐热结瘤的豆根瘤菌菌株。然而,其耐热性的基础仍然未知。在这项研究中,我们比较了耐热性对豆结瘤的根瘤菌(CIAT899)和热敏性(CNPAF512)豆根瘤菌菌株共生固氮,细胞存活,氨基酸摄取和蛋白质合成的影响。当通过CIAT899或CNPAF512对植物进行根瘤处理时,在35或40°C下,从无胁迫植物中切除的根瘤根的乙炔还原活性会大大降低。在自由活动条件下测试这些菌株时,在40°C的存活率以及1-[35S]蛋氨酸的摄取动力学和在35和40°C的蛋白质合成动力学表明,CIAT899的耐高温性高于CNPAF512。 。尽管在不同温度下,在两种菌株中均检测到热激蛋白的合成。在40和45°C下,分别观察到CNPAF512中14种热激蛋白和CIAT899中6种热激蛋白的合成增加。大约21kDa的热激蛋白,在温度升高时,在两个根瘤菌菌株中合成最强,在其他几种豆结瘤的根瘤菌中也保守。 CIAT899中获得的耐热性显示取决于蛋白质合成。

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