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Rhizobial Factors Required for Stem Nodule Maturation and Maintenance in Sesbania rostrata-Azorhizobium caulinodans ORS571 Symbiosis

机译:Sesbania rostrata-Azorhizobium caulinodans ORS571共生中茎结节成熟和维持所需的根瘤因子。

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摘要

The molecular and physiological mechanisms behind the maturation and maintenance of N2-fixing nodules during development of symbiosis between rhizobia and legumes still remain unclear, although the early events of symbiosis are relatively well understood. Azorhizobium caulinodans ORS571 is a microsymbiont of the tropical legume Sesbania rostrata, forming N2-fixing nodules not only on the roots but also on the stems. In this study, 10,080 transposon-inserted mutants of A. caulinodans ORS571 were individually inoculated onto the stems of S. rostrata, and those mutants that induced ineffective stem nodules, as displayed by halted development at various stages, were selected. From repeated observations on stem nodulation, 108 Tn5 mutants were selected and categorized into seven nodulation types based on size and N2 fixation activity. Tn5 insertions of some mutants were found in the well-known nodulation, nitrogen fixation, and symbiosis-related genes, such as nod, nif, and fix, respectively, lipopolysaccharide synthesis-related genes, C4 metabolism-related genes, and so on. However, other genes have not been reported to have roles in legume-rhizobium symbiosis. The list of newly identified symbiosis-related genes will present clues to aid in understanding the maturation and maintenance mechanisms of nodules.
机译:固氮菌和豆类植物共生发展过程中固氮N2结节的成熟和维持背后的分子和生理机制仍然不清楚,尽管共生的早期事件已得到相当的了解。满江红假单胞菌ORS571是热带豆科植物Sesbania rostrata的微共生体,不仅在根部而且在茎部上都形成了N2固定的根瘤。在这项研究中,将10,080株经转座子插入的A. caulinodans ORS571突变体分别接种到S. rostrata的茎上,并选择了诱导无效茎结节的突变体,如在各个阶段停止发育所显示的。从对茎节结的重复观察中,选择了108个Tn5突变体,并根据大小和N2固定活性将其分为7种节结类型。在众所周知的结瘤,固氮和共生相关基因(例如nod,nif和fix),脂多糖合成相关基因,C4代谢相关基因等中发现了一些突变体的Tn5插入。然而,尚未报道其他基因在豆科-根瘤菌共生中起作用。新近发现的与共生相关的基因清单将提供线索,以帮助理解结节的成熟和维持机制。

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