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Rhizobium nod factors reactivate the cell cycle during infection and nodule primordium formation but the cycle is only completed in primordium formation.

机译:根瘤结节因子在感染和结节原基形成过程中重新激活细胞周期但该周期仅在原基形成中完成。

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摘要

Rhizobia induce the formation of root nodules on the roots of leguminous plants. In temperate legumes, nodule organogenesis starts with the induction of cell divisions in regions of the root inner cortex opposite protoxylem poles, resulting in the formation of nodule primordia. It has been postulated that the susceptibility of these inner cortical cells to Rhizobium nodulation (Nod) factors is conferred by an arrest at a specific stage of the cell cycle. Concomitantly with the formation of nodule primordia, cytoplasmic rearrangement occurs in the outer cortex. Radially aligned cytoplasmic strands form bridges, and these have been called preinfection threads. It has been proposed that the cytoplasmic bridges are related to phragmosomes. By studying the in situ expression of the cell cycle genes cyc2, H4, and cdc2 in pea and alfalfa root cortical cells after inoculation with Rhizobium or purified Nod factors, we show that the susceptibility of inner cortical cells to Rhizobium is not conferred by an arrest at the G2 phase and that the majority of the dividing cells are arrested at the G0/G1 phase. Furthermore, the outer cortical cells forming a preinfection thread enter the cell cycle although they do not divide.
机译:根瘤菌诱导在豆科植物的根部形成根瘤。在温带豆科植物中,根瘤内器官发生始于在与内生皮层极相对的根内皮层区域中诱导细胞分裂,从而导致根瘤原基的形成。据推测,这些内部皮层细胞对根瘤结节(Nod)因子的敏感性是通过在细胞周期的特定阶段停滞而产生的。与结节原基的形成同时,在外皮层中发生细胞质重排。放射状排列的胞质链形成桥,这些桥被称为感染前线。已经提出细胞质桥与膜小体有关。通过研究接种根瘤菌或纯化的Nod因子后,豌豆和苜蓿根皮层细胞中细胞周期基因cyc2,H4和cdc2的原位表达,我们表明内层皮层细胞对根瘤菌的敏感性不因停药而赋予在G2期,大多数分裂细胞停滞在G0 / G1期。此外,形成预感染线的外部皮层细胞虽然不分裂,但进入细胞周期。

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