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A role for an alternative splice variant of PIF6 in the control of Arabidopsis primary seed dormancy

机译:PIF6的另一个剪接变体在拟南芥原种子休眠控制中的作用

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摘要

Phytochrome interacting factor (PIF) transcription factors have been shown to be important in the regulation of seed dormancy and germination by environmental cues. Many PIF-family transcription factors are expressed in seeds but only PIF1 and SPATULA (SPT) have been tested for a role in germination control. Here we show that PIF6 is expressed strongly during seed development, and that two splice variants exist, one full length (the α form), and a second, the β form, in which a cryptic intron containing the potential DNA binding domain is spliced out, predicted to lead to the generation of a premature stop codon. Loss of PIF6 increases primary seed dormancy, whereas overexpression of the β form, but not the α form, reduce dormancy. Our data show the potential for natural splice variants of PIF transcription factors to be important in the evolution of the control of environmental signalling in plants.
机译:植物色素相互作用因子(PIF)转录因子已被证明在通过环境线索调节种子休眠和萌发中很重要。许多PIF家族转录因子在种子中表达,但仅PIF1和SPATULA(SPT)在萌发控制中的作用得到了测试。在这里,我们显示PIF6在种子发育过程中强烈表达,并且存在两种剪接变体,一种是全长(α形式),第二种是β形式,其中剪接了含有潜在DNA结合域的隐含内含子,预计会导致过早终止密码子的产生。 PIF6的丢失增加了种子的初次休眠,而β形式而不是α形式的过表达降低了休眠。我们的数据表明,PIF转录因子的天然剪接变体在植物环境信号的控制进化中具有重要作用。

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