首页> 美国卫生研究院文献>Journal of Bacteriology >Modulation of development growth dynamics wall crystallinity and infection sites in white clover root hairs by membrane chitolipooligosaccharides from Rhizobium leguminosarum biovar trifolii.
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Modulation of development growth dynamics wall crystallinity and infection sites in white clover root hairs by membrane chitolipooligosaccharides from Rhizobium leguminosarum biovar trifolii.

机译:三叶草根瘤菌中的膜壳脂寡糖对白三叶草根毛中发育生长动力学壁结晶度和感染部位的调节。

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摘要

We used bright-field, time-lapse video, cross-polarized, phase-contrast, and fluorescence microscopies to examine the influence of isolated chitolipooligosaccharides (CLOSs) from wild-type Rhizobium leguminosarum bv. trifolii on development of white clover root hairs, and the role of these bioactive glycolipids in primary host infection. CLOS action caused a threefold increase in the differentiation of root epidermal cells into root hairs. At maturity, root hairs were significantly longer because of an extended period of active elongation without a change in the elongation rate itself. Time-series image analysis showed that the morphological basis of CLOS-induced root hair deformation is a redirection of tip growth displaced from the medial axis as previously predicted. Further studies showed several newly described infection-related root hair responses to CLOSs, including the localized disruption of the normal crystallinity in cell wall architecture and the induction of new infection sites. The application of CLOS also enabled a NodC- mutant of R. leguminosarum bv. trifolii to progress further in the infection process by inducing bright refractile spot modifications of the deformed root hair walls. However, CLOSs did not rescue the ability of the NodC- mutant to induce marked curlings or infection threads within root hairs. These results indicate that CLOS Nod factors elicit several host responses that modulate the growth dynamics and symbiont infectibility of white clover root hairs but that CLOSs alone are not sufficient to permit successful entry of the bacteria into root hairs during primary host infection in the Rhizobium-clover symbiosis.
机译:我们使用明场,延时视频,交叉极化,相衬和荧光显微镜检查从野生型豆科根瘤菌分离的壳脂寡糖(CLOSs)的影响。三叶草对白三叶草根毛发育的影响,以及这些生物活性糖脂在原发宿主感染中的作用。 CLOS作用导致根表皮细胞向根毛的分化增加了三倍。在成熟时,由于延长的活性伸长期而不改变伸长率本身,所以根毛明显更长。时间序列图像分析表明,CLOS诱导的根毛变形的形态学基础是尖端生长的重定向,其方向偏离了先前预测的中轴。进一步的研究显示了几种新描述的与感染相关的根毛对CLOS的反应,包括细胞壁结构正常结晶度的局部破坏和新感染部位的诱导。 CLOS的应用还使豆科植物念珠菌的NodC突变成为可能。通过诱导变形的根发壁的明亮的折射斑点修饰,三叶草在感染过程中进一步发展。然而,CLOS不能挽救NodC突变体在根毛内引起明显的卷曲或感染线的能力。这些结果表明,CLOS Nod因子引发了几种宿主反应,这些反应调节白三叶草根毛的生长动力学和共生菌感染性,但仅CLOS不足以使根瘤菌在初次宿主感染过程中成功进入根毛中。共生。

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