首页> 美国卫生研究院文献>Plant Physiology >Invasion of Lotus japonicus root hairless 1 by Mesorhizobium loti Involves the Nodulation Factor-Dependent Induction of Root Hairs
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Invasion of Lotus japonicus root hairless 1 by Mesorhizobium loti Involves the Nodulation Factor-Dependent Induction of Root Hairs

机译:介孢菌侵染莲j根无毛1涉及根瘤的根瘤因子依赖性诱导。

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摘要

In many legumes, including Lotus japonicus and Medicago truncatula, susceptible root hairs are the primary sites for the initial signal perception and physical contact between the host plant and the compatible nitrogen-fixing bacteria that leads to the initiation of root invasion and nodule organogenesis. However, diverse mechanisms of nodulation have been described in a variety of legume species that do not rely on root hairs. To clarify the significance of root hairs during the L. japonicus-Mesorhizobium loti symbiosis, we have isolated and performed a detailed analysis of four independent L. japonicus root hair developmental mutants. We show that although important for the efficient colonization of roots, the presence of wild-type root hairs is not required for the initiation of nodule primordia (NP) organogenesis and the colonization of the nodule structures. In the genetic background of the L. japonicus root hairless 1 mutant, the nodulation factor-dependent formation of NP provides the structural basis for alternative modes of invasion by M. loti. Surprisingly, one mode of root colonization involves nodulation factor-dependent induction of NP-associated cortical root hairs and epidermal root hairs, which, in turn, support bacterial invasion. In addition, entry of M. loti through cracks at the cortical surface of the NP is described. These novel mechanisms of nodule colonization by M. loti explain the fully functional, albeit significantly delayed, nodulation phenotype of the L. japonicus ROOT HAIRLESS mutant.
机译:在许多豆科植物中,包括日本莲和截叶苜蓿,易感的根毛是宿主植物与相容性固氮细菌之间初始信号感知和物理接触的主要部位,从而导致根部入侵和根瘤器官发生。但是,已经在不依赖根毛的多种豆类物种中描述了多种结瘤机制。为了阐明在L. japonicus-Mesorhizobium loti共生过程中根毛的重要性,我们分离并进行了四个独立的L. japonicus根毛发育突变体的详细分析。我们表明,尽管对于根的有效定殖很重要,但野生型根毛的存在对于结节原基(NP)器官发生和结节结构定植不是必需的。在刺参根无毛1突变体的遗传背景中,结瘤因子依赖性NP的形成为M. loti入侵提供了结构基础。令人惊讶地,一种根定殖模式涉及结节因子依赖性诱导NP相关的皮层根毛和表皮根毛,从而支持细菌入侵。另外,还描述了洛蒂分支杆菌通过NP皮层表面的裂缝进入。这些新的结节菌定植机理解释了L. japonicus ROOT HAIRLESS突变体的功能齐全,尽管显着延迟了,其结瘤表型。

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