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Focus Issue on Light Signaling: LAF3 a Novel Factor Required for Normal Phytochrome A Signaling

机译:光信号传输的焦点问题:LAF3这是正常植物色素A信号传输所需要的新因素

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摘要

Phytochrome A (phyA) is the photolabile plant light receptor that mediates broad spectrum very low-fluence responses and high irradiance responses to continuous far-red light (FRc). An Arabidopsis mutant laf3-1 (long after far-red 3) was recovered from a screen for transposon-tagged mutants that exhibit reduced inhibition of hypocotyl elongation in FRc. The laf phenotype correlated well with a strongly attenuated disappearance of XTR7 transcript in FRc. The effects of laf3-1 on phyA-controlled CAB, CHS, and PET H expression were more subtle, and the mutation had no clear effects on PET E and ASN1 transcript levels in FRc. The use of two alternative transcription initiation sites in the LAF3 gene generates two isoforms that differ only at their N termini. Transcripts encoding both isoforms were induced during germination and were present at slightly higher levels in de-etiolated seedlings than in those grown in darkness. No significant differential regulation of the two isoforms was observed upon exposure to either FRc or continuous red light. Transcripts encoding the shorter isoform (LAF3ISF2) always appear to be more abundant than those encoding the longer isoform (LAF3ISF1). However, both isoforms were capable of full complementation of the laf3-1 hypocotyl phenotype in FRc. When fused to a yellow fluorescent protein, both isoforms localize to the perinuclear region, suggesting that LAF3 encodes a product that might regulate nucleo-cytoplasmic trafficking of an intermediate(s) involved in phyA signal transduction.
机译:植物色素A(phyA)是光不稳定的植物光受体,可调节广谱的低通量响应和对连续远红光(FRc)的高辐照度响应。从转座子标记的突变体的筛选中筛选出了拟南芥突变体laf3-1(远在远红3以后),该突变体在FRc中对下胚轴延伸的抑制作用降低。 Laf表型与FRc中XTR7转录物的强烈减弱消失密切相关。 laf3-1对phyA控制的CAB,CHS和PET H表达的影响更加微妙,并且该突变对FRc中的PET E和ASN1转录水平没有明显影响。在LAF3基因中使用两个替代转录起始位点可产生两个仅在其N末端不同的同工型。编码这两种同工型的转录本在发芽过程中被诱导出来,并且在去毛化的幼苗中的含量略高于在黑暗中生长的那些。暴露于FRc或连续红光下,未观察到两种同工型的显着差异调节。编码较短同工型(LAF3ISF2)的转录物似乎总是比编码较长同工型(LAF3ISF1)的转录物丰富。但是,这两种同工型都能够完全互补FRc中的laf3-1下胚轴表型。当与黄色荧光蛋白融合时,两种同工型均位于核周区域,这表明LAF3编码的产物可能调节参与phyA信号转导的中间体的核质转运。

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