首页> 美国卫生研究院文献>Applied and Environmental Microbiology >The Sesbania Root Symbionts Sinorhizobium saheli and S. teranga bv. sesbaniae Can Form Stem Nodules on Sesbania rostrata although They Are Less Adapted to Stem Nodulation than Azorhizobium caulinodans
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The Sesbania Root Symbionts Sinorhizobium saheli and S. teranga bv. sesbaniae Can Form Stem Nodules on Sesbania rostrata although They Are Less Adapted to Stem Nodulation than Azorhizobium caulinodans

机译:Sesbania根共生菌Sahirhizobium saheli和S. teranga bv。尽管比起固氮假单胞菌它们仍能在Sesbania rostrata上形成茎结节。

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摘要

Sesbania species can establish symbiotic interactions with rhizobia from two taxonomically distant genera, including the Sesbania rostrata stem-nodulating Azorhizobium sp. and Azorhizobium caulinodans and the newly described Sinorhizobium saheli and Sinorhizobium teranga bv. sesbaniae, isolated from the roots of various Sesbania species. A collection of strains from both groups were analyzed for their symbiotic properties with different Sesbania species. S. saheli and S. teranga bv. sesbaniae strains were found to effectively stem nodulate Sesbania rostrata, showing that stem nodulation is not restricted to Azorhizobium. Sinorhizobia and azorhizobia, however, exhibited clear differences in other aspects of symbiosis. Unlike Azorhizobium, S. teranga bv. sesbaniae and S. saheli did not induce effective stem nodules on plants previously inoculated on the roots, although stem nodulation was arrested at different stages. For Sesbania rostrata root nodulation, Sinorhizobium appeared more sensitive than Azorhizobium to the presence of combined nitrogen. S. saheli and S. teranga bv. sesbaniae were effective symbionts with all Sesbania species tested, while Azorhizobium strains fixed nitrogen only in symbiosis with Sesbania rostrata. In a simple screening test, S. saheli and S. teranga bv. sesbaniae were incapable of asymbiotic nitrogenase activity. Thus, Azorhizobium can easily be distinguished from Sinorhizobium among Sesbania symbionts on the basis of symbiotic and free-living nitrogen fixation. The ability of Azorhizobium to overcome the systemic plant control appears to be a stem adaptation function. This last property, together with its host-specific symbiotic nitrogen fixation, makes Azorhizobium highly specialized for stem nodulation of the aquatic legume Sesbania rostrata.
机译:Sesbania物种可以与两个在分类学上相距较远的属(包括Sesbania rostrata结瘤的Azorhizobium sp)建立与根瘤菌的共生相互作用。以及拟南芥(Azorhizobium caulinodans)以及新近描述的saherhizobium saheli和terranga bv。 sesbaniae,分离自各种Sesbania物种的根。分析了两组菌株与不同塞斯巴尼亚物种的共生特性。 S. saheli和S. teranga bv。已发现sesbaniae菌株可有效茎结瘤Sesbania rostrata,表明茎结瘤不仅限于偶氮根瘤菌。然而,根瘤菌和共生菌在共生的其他方面表现出明显的差异。不像满生根瘤菌,S。teranga bv。尽管茎节结在不同阶段被阻止,但sesbaniae和S. saheli并未在先前接种过根部的植物上诱导有效的茎节结。对于Sesbania rostrata根瘤结节,中华根瘤菌比氮杂根瘤菌对结合氮的敏感性更高。 S. saheli和S. teranga bv。 sesbaniae是所有Sesbania物种的有效共生体,而Azorhizobium菌株仅在与Sesbania rostrata共生的情况下才固定氮。在一个简单的筛选测试中,S。saheli和S. teranga bv。芝麻素没有共生酶的活性。因此,基于共生和自由固氮作用,塞巴尼亚共生体中的根瘤菌很容易与根瘤菌区别开来。根瘤菌克服系统性植物控制的能力似乎是茎适应功能。这最后的特性,加上其宿主特有的共生固氮特性,使天生的根瘤菌高度专化用于水生豆科植物五味子的茎结节。

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