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Disruption of auxin transport is associated with aberrant leaf development in maize

机译:生长素运输的中断与玉米叶片发育异常有关

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摘要

Despite recent progress, the mechanisms governing shoot morphogenesis in higher plants are only partially understood. Classical physiological studies have suggested that gradients of the plant growth regulator auxin may play a role in controlling tissue differentiation in shoots. More recent molecular genetic studies have also identified knotted1 like homeobox (knox) genes as important regulators of shoot development. The maize (Zea mays L.) mutant rough sheath2 (rs2) displays ectopic expression of at least three knox genes and consequently conditions a range of shoot and leaf phenotypes, including aberrant vascular development, ligular displacements, and dwarfism (R. Schneeberger, M. Tsiantis, M. Freeling, J.A. Langdale [1998] Development 125: 2857-2865). In this report, we show that rs2 mutants also display decreased polar auxin transport in the shoot. We also demonstrate that germination of wild-type maize seedlings on agents known to inhibit polar auxin transport mimics aspects of the rs2 mutant phenotype. The phenotype elaborated in inhibitor-treated plants is not correlated with ectopic KNOX protein accumulation.
机译:尽管有最新进展,但对高等植物中芽形态发生的控制机制仅得到部分了解。经典的生理学研究表明,植物生长调节剂生长素的梯度可能在控制芽的组织分化中起作用。最近的分子遗传学研究还确定像同源异型盒(knox)基因这样的打结蛋白1是芽发育的重要调节剂。玉米(Zea mays L.)突变体粗糙鞘2(rs2)显示至少三个诺克斯基因的异位表达,因此可调节一系列芽和叶的表型,包括异常的血管发育,叶状位移和侏儒症(R. Schneeberger,M Tsiantis,M.Freeling,JA Langdale [1998] Development 125:2857-2865)。在此报告中,我们表明rs2突变体还显示出芽中极性生长素转运减少。我们还证明了已知抑制极地生长素运输的试剂对野生型玉米幼苗的发芽模拟了rs2突变表型的各个方面。在抑制剂处理过的植物中阐述的表型与异位KNOX蛋白质的积累无关。

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