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首页> 外文期刊>Frontiers in Plant Science >Auxin is a long-range signal that acts independently of ethylene signaling on leaf abscission in Populus
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Auxin is a long-range signal that acts independently of ethylene signaling on leaf abscission in Populus

机译:生长素是一种远距离信号,与乙烯信号独立作用于 Populus 中的叶片脱落

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Timing of leaf abscission is an important trait for biomass production and seasonal acclimation in deciduous trees. The signaling leading to organ separation, from the external cue (decreasing photoperiod) to ethylene-regulated hydrolysis of the middle lamellae in the abscission zone, is only poorly understood. Data from annual species indicate that the formation of an auxin gradient spanning the abscission zone regulates the timing of abscission. We established an experimental system in Populus to induce leaf shedding synchronously under controlled greenhouse conditions in order to test the function of auxin in leaf abscission. Here, we show that exogenous auxin delayed abscission of dark-induced leaves over short and long distances and that a new auxin response maximum preceded the formation of an abscission zone. Several auxin transporters were down-regulated during abscission and inhibition of polar auxin transport delayed leaf shedding. Ethylene signaling was not involved in the regulation of these auxin transporters and in the formation of an abscission zone, but was required for the expression of hydrolytic enzymes associated with cell separation. Since exogenous auxin delayed abscission in absence of ethylene signaling auxin likely acts independently of ethylene signaling on cell separation.
机译:脱落时间是落叶树生物量生产和季节驯化的重要特征。导致器官分离的信号,从外部线索(光周期降低)到脱落区中片的乙烯调节水解的信号知之甚少。来自一年生物种的数据表明,跨越脱落带的生长素梯度的形成调节了脱落的时间。为了测试生长素在叶片脱落过程中的功能,我们在胡杨中建立了一个实验系统,以在受控温室条件下同步诱导叶片脱落。在这里,我们表明外源生长素在短距离和长距离上延迟了黑暗诱导的叶片的脱落,并且新的生长素响应最大值先于脱落区域的形成。脱落期间几种生长素转运蛋白被下调,极性生长素转运的抑制抑制了叶片的脱落。乙烯信号传导并不参与这些植物生长素转运蛋白的调节和脱落区的形成,但是表达与细胞分离有关的水解酶是必需的。由于外源生长素在没有乙烯信号传导的情况下延迟了脱落,因此生长素可能在细胞分离中独立于乙烯信号传导。

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