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首页> 外文期刊>Journal of bacteriology >Succinoglycan Is Required for Initiation and Elongation of Infection Threads during Nodulation of Alfalfa byRhizobium meliloti
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Succinoglycan Is Required for Initiation and Elongation of Infection Threads during Nodulation of Alfalfa byRhizobium meliloti

机译:苜蓿根瘤菌对苜蓿的结瘤过程中需要使用琥珀聚糖来引发和延长感染线。

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Rhizobium meliloti Rm1021 must be able to synthesize succinoglycan in order to invade successfully the nodules which it elicits on alfalfa and to establish an effective nitrogen-fixing symbiosis. Using R. meliloti cells that express green fluorescent protein (GFP), we have examined the nature of the symbiotic deficiency of exo mutants that are defective or altered in succinoglycan production. Our observations indicate that anexoY mutant, which does not produce succinoglycan, is symbiotically defective because it cannot initiate the formation of infection threads. An exoZ mutant, which produces succinoglycan without the acetyl modification, forms nitrogen-fixing nodules on plants, but it exhibits a reduced efficiency in the initiation and elongation of infection threads. An exoHmutant, which produces symbiotically nonfunctional high-molecular-weight succinoglycan that lacks the succinyl modification, cannot form extended infection threads. Infection threads initiate at a reduced rate and then abort before they reach the base of the root hairs. Overproduction of succinoglycan by theexoS96::Tn5 mutant does not reduce the efficiency of infection thread initiation and elongation, but it does significantly reduce the ability of this mutant to colonize the curled root hairs, which is the first step of the invasion process. TheexoR95::Tn5 mutant, which overproduces succinoglycan to an even greater extent than theexoS96::Tn5 mutant, has completely lost its ability to colonize the curled root hairs. These new observations lead us to propose that succinoglycan is required for both the initiation and elongation of infection threads during nodule invasion and that excess production of succinoglycan interferes with the ability of the rhizobia to colonize curled root hairs.
机译:苜蓿根瘤菌 Rm1021必须能够合成琥珀聚糖,才能成功入侵其在苜蓿上引起的根瘤并建立有效的固氮共生作用。使用 R。表达绿色荧光蛋白(GFP)的meliloti 细胞,我们检查了琥珀糖聚糖生产中有缺陷或发生改变的 exo 突变体共生缺陷的性质。我们的观察结果表明,不产生琥珀聚糖的 exoY 突变体具有共生缺陷,因为它无法启动感染线的形成。一个 exoZ 突变体,其产生没有乙酰基修饰的琥珀聚糖,在植物上形成固氮结节,但在感染线的萌生和伸长方面表现出降低的效率。一个 exoH 突变体,其产生缺乏琥珀酰修饰的共生非功能性高分子量琥珀糖聚糖,不能形成延长的感染线。感染线以降低的速率启动,然后在到达根毛根部之前终止。通过 exoS96 :: Tn 5 突变体过量生产琥珀聚糖不会降低感染线的起始和伸长效率,但会显着降低该突变体定植在大肠杆菌中的能力。卷曲的根毛,这是入侵过程的第一步。 exoR95 :: Tn 5 突变体,与 exoS96 :: Tn 5 突变体,已经完全丧失了定植卷曲的根毛的能力。这些新发现促使我们提出,在结节侵袭期间,感染链的起始和伸长都需要琥珀聚糖,琥珀聚糖的过量生产会干扰根瘤菌定植卷曲的根毛的能力。

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