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Requirement of the Auxin Polar Transport System in Early Stages of Arabidopsis Floral Bud Formation.

机译:拟南芥花芽形成早期对生长素极地运输系统的需求。

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摘要

The pin-formed mutant pin 1-1, one of the Arabidopsis flower mutants, has several structural abnormalities in inflorescence axes, flowers, and leaves. In some cases, pin1-1 forms a flower with abnormal structure (wide petals, no stamens, pistil-like structure with no ovules in the ovary) at the top of inflorescence axes. In other cases, no floral buds are formed on the axes. An independently isolated allelic mutant (pin1-2) shows similar phenotypes. These mutant phenotypes are exactly the same in wild-type plants cultured in the presence of chemical compounds known as auxin polar transport inhibitors: 9-hydroxyfluorene-9-carboxylic acid or N-(1-naphthyl)phthalamic acid. We tested the polar transport activity of indole-3-acetic acid and the endogenous amount of free indole-3-acetic acid in the tissue of inflorescence axes of the pin1 mutants and wild type. The polar transport activity in the pin 1-1 mutant and in the pin1-2 mutant was decreased to 14% and 7% of wild type, respectively. These observations strongly suggest that the normal level of polar transport activity in the inflorescence axes is required in early developmental stages of floral bud formation in Arabidopsis and that the primary function of the pin1 gene is auxin polar transport in the inflorescence axis.
机译:拟南芥花突变体之一的针形突变体pin 1-1在花序轴,花和叶上具有一些结构异常。在某些情况下,pin1-1在花序轴的顶部形成具有异常结构的花朵(花瓣宽,没有雄蕊,雌蕊状结构,在子房中没有胚珠)。在其他情况下,轴上没有形成花蕾。独立分离的等位基因突变体(pin1-2)显示相似的表型。这些突变型与在生长素极性转运抑制剂(9-羟基芴-9-羧酸或N-(1-萘基)邻苯二甲酸)存在的化学物质存在下培养的野生型植物中的突变表型完全相同。我们在pin1突变体和野生型花序轴的组织中测试了吲哚-3-乙酸的极性转运活性和内源性游离吲哚-3-乙酸的量。 pin 1-1突变体和pin1-2突变体中的极性转运活性分别降至野生型的14%和7%。这些观察结果强烈表明,拟南芥中花蕾形成的早期发育阶段需要在花序轴上正常水平的极性转运活性,而pin1基因的主要功能是在花序轴上的生长素极性转运。

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