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Transcriptional programs related to phytochrome A function in Arabidopsis seed germination. (Special Issue: Pollen tube and reproduction.)

机译:与拟南芥种子发芽中植物色素A功能有关的转录程序。 (特刊:花粉管和繁殖。)

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In Arabidopsis seeds, germination is promoted only by phytochromes, principally phytochrome B (phyB) and phytochrome A (phyA). Despite the abundant information concerning the molecular basis of phyB signaling downstream of PIF1/PIL5, the signaling network inducing germination by phyA is poorly known. Here, we describe the influence of phyA on the transcriptome of Arabidopsis seeds when germination is induced by a far-red (FR) pulse. The expression of 11% of the genome was significantly regulated by phyA. Most of the genes were up-regulated and the changes noted late (i.e. 5 h after a FR pulse), whereas changes in down-regulated genes were more abundant earlier (i.e. 0.5 h after a FR pulse). Auxin- and GA-associated elements were overrepresented in the genes that were modified by phyA. A significant number of genes whose expression was affected by phyA had not been previously reported to be dependent on PIL5. Among them, homozygotic mutant seeds of MYB66, a SAUR-like protein, PIN7, and GASA4 showed an impaired promotion of germination by phyA. Natural variation at the transcriptional level was found in early signaling and GA metabolic genes, but not in ABA metabolic and expansin genes between Columbia and Landsberg erecta accessions. Although phyA and phyB/PIL5 signaling pathways share some molecular components, our data suggest that phyA signaling is partially independent of PIL5 when germination is promoted by very low fluences of light.
机译:在拟南芥种子中,发芽仅通过植物色素,主要是植物色素B(phyB)和植物色素A(phyA)促进。尽管有关PIF1 / PIL5下游phyB信号传导分子基础的信息丰富,但通过phyA诱导发芽的信号网络知之甚少。在这里,我们描述了当远红(FR)脉冲诱导发芽时phyA对拟南芥种子转录组的影响。 phyA显着调节了11%的基因组表达。大多数基因被上调,并且变化注意到较晚(即FR脉冲后5小时),而下调基因的变化更早(即FR脉冲后0.5小时)更丰富。生长素和GA相关元素在phyA修饰的基因中过分表达。以前尚未报道过许多表达受phyA影响的基因依赖于PIL5。其中,MYB66,SAUR样蛋白,PIN7和GASA4的纯合突变种子显示phyA促进了发芽。在转录水平和GA代谢基因中发现了转录水平的自然变异,但在哥伦比亚和Landsberg直立种之间没有ABA代谢和弹性蛋白基因。尽管phyA和phyB / PIL5信号通路共享一些分子成分,但我们的数据表明,当通过非常低的光通量促进萌发时,phyA信号传导部分独立于PIL5。

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