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Jasmonic acid levels decline in advance of the transition to the adult phase in maize

机译:Jasmonic酸水平在玉米中过渡到成人阶段的提前下降

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Leaf-derived signals drive the development of the shoot, eventually leading to flowering. In maize, transcripts of genes that facilitate jasmonic acid (JA) signaling are more abundant in juvenile compared to adult leaf primordia; exogenous application of JA both extends the juvenile phase and delays the decline in miR156 levels. To test the hypothesis that JA promotes juvenility, we measured JA and meJA levels using LC-MS in successive stages of leaf one development and in later leaves at stages leading up to phase change in both normal maize and phase change mutants. We concurrently measured gibberellic acid (GA), required for the timely transition to the adult phase. Jasmonic acid levels increased from germination through leaf one differentiation, declining in later formed leaves as the shoot approached phase change. In contrast, levels of GA were low in leaf one after germination and increased as the shoot matured to the adult phase. Multiple doses of exogenous JA resulted in the production of as many as three additional juvenile leaves. We analyzed two transcript expression datasets to investigate when gene regulation by miR156 begins in the context of spatiotemporal patterns of JA and GA signaling. Quantifying these hormones in phase change mutants provided insight into how these two hormones control phase-specific patterns of differentiation. We conclude that the hormone JA is a leaf-provisioned signal that influences the duration, and possibly the initiation, of the juvenile phase of maize by controlling patterns of differentiation in successive leaf primordia.? 2019 The Authors. Plant Direct published by American Society of Plant Biologists and the Society for Experimental Biology and John Wiley & Sons Ltd.
机译:叶衍生信号驱动拍摄的发展,最终导致开花。在玉米中,与成年叶原叶相比,促进茉莉酸(JA)信号传导的基因的转录物更丰富; JA的外源应用均延伸了少年阶段,延迟了MiR156水平的下降。为了测试JA促进少女的假设,我们使用LC-MS在叶片一个开发的连续阶段测量JA和MEJA水平,并且在后来的叶片以正常玉米和相变突变体中的相变的阶段。我们同时测量甘草酸(GA),需要及时过渡到成人阶段。茉莉酸水平从叶片的萌芽增加,在射击接近相变时,后来形成的叶片下降。相比之下,萌发后,Ga水平低,并且随着成人阶段的芽而增加,随着成人阶段的芽而增加。多剂量的外源JA导致生产多达三种额外的少年叶。我们分析了两种转录表达数据集来研究MiR156的基因调节在JA和GA信号的时空模式的背景下。在相变突变体中定量这些激素提供了深入了解这两个激素如何控制相位的分化模式。我们得出结论,激素JA是通过控制连续叶原叶中的分化模式来影响持续时间,并且可能发生玉米幼年相的叶子吞吐量信号。 2019年的作者。植物直接发表美国植物生物学家和实验生物学协会和约翰瓦里和儿子有限公司

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