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Nod factor perception during infection thread growth fine-tunes nodulation.

机译:感染线生长期间的点头因子感知可微调结节。

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Bacterial nodulation factors (NFs) are essential signaling molecules for the initiation of a nitrogen-fixing symbiosis in legumes. NFs are perceived by the plant and trigger both local and distant responses, such as curling of root hairs and cortical cell divisions. In addition to their requirement at the start, NFs are produced by bacteria that reside within infection threads. To analyze the role of NFs at later infection stages, several phases of nodulation were studied by detailed light and electron microscopy after coinoculation of adventitious root primordia of Sesbania rostrata with a mixture of Azorhizobium caulinodans mutants ORS571-V44 and ORS571-X15. These mutants are deficient in NF production or surface polysaccharide synthesis, respectively, but they can complement each other, resulting in functional nodules occupied by ORS571-V44. The lack of NFs within the infection threads was confirmed by the absence of expression of an early NF-induced marker, leghaemoglobin 6 of S. rostrata. NF production within the infection threads is shown to be necessary for proper infection thread growth and for synchronization of nodule formation with bacterial invasion. However, local production of NFs by bacteria that are taken up by the plant cells at the stage of bacteroid formation is not required for correct symbiosome development..
机译:细菌结瘤因子(NFs)是豆类固氮共生引发的重要信号分子。 NF被植物感知并触发局部和远距离响应,例如根毛卷曲和皮层细胞分裂。除了起初需要外,NFs还由感染线内的细菌产生。为了分析NF在后续感染阶段的作用,在将陆生根瘤菌突变体ORS571-V44和ORS571-X15的混合物共混入陆生根的不定根原基后,通过详细的光学和电子显微镜研究了结瘤的几个阶段。这些突变体分别缺乏NF生成或表面多糖合成,但它们可以相互补充,导致ORS571-V44占据功能性结节。感染线中缺乏NFs可以通过早期NF诱导的标记物S. rostrata的血红蛋白6的表达来证实。已显示出感染线内的NF生成对于正确的感染线生长以及结节形成与细菌入侵的同步是必要的。但是,正确的共生体发育不需要由细菌在类细菌形成阶段吸收的细菌局部产生NF。

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