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A phytochrome-dependent embryonic factor modulates gibberellin responses in the embryo and micropylar endosperm of Datura ferox seeds

机译:植物色素依赖的胚胎因子调节曼陀罗种子的胚和胚珠胚乳中的赤霉素反应

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摘要

The promotion of germination by phytochrome is associated with extensive changes both in the embryo and in the micropylar region of the endosperm (ME) of Datura ferox seeds. These changes require de novo gibberellins (GAs) biosynthesis in the embryo, the site where the light stimulus is perceived. GAs stimulate embryo growth potential and move to ME, promoting the expression of genes related with weakening. We report here that, in addition, phytochrome stimulates the sensitivity of the seeds to gibberellic acid (GA). The phytochrome-induced signal is produced in the embryo and enhances the stimulus by GA of embryo growth potential (EGP) and the promotion of the expression of proteins thought to participate in ME weakening: endo-β-mannanase (EC 3.2.1.78), endo-β-mannosidase (EC 3.2.1.25) and expansin. Our results suggest that the cytokinins may be a component of the embryonic signal. Phytochrome also modulates DfPHOR and DfMYB transcript levels in ME. These genes show a high identity with components of GAs signaling identified in other species. Expression of DfPHOR in the ME is apparently regulated by phytochrome through the supply of GAs from the embryo to ME, whereas DfMYB expression is regulated by an embryonic factor with some of the characteristics of the one that modulates seed sensitivity to GAs.
机译:植物色素对发芽的促进与胚胎和曼陀罗种子的胚乳(ME)的毛孔区域的广泛变化有关。这些变化需要在胚胎中进行从头赤霉素(GAs)的生物合成,而胚胎是感知光刺激的部位。 GAs刺激胚胎的生长潜能并向ME移动,从而促进了与衰弱相关的基因的表达。我们在这里报告,此外,植物色素还刺激了种子对赤霉素(GA)的敏感性。由植物色素引起的信号在胚胎中产生,并通过GA增强了胚胎的生长潜能(EGP)的刺激作用,并促进了被认为参与ME减弱的蛋白质的表达:β-甘露聚糖内切酶(EC 3.2.1.78), β-甘露糖苷内切酶(EC 3.2.1.25)和expansin。我们的结果表明,细胞分裂素可能是胚胎信号的组成部分。植物色素还调节ME中的DfPHOR和DfMYB转录水平。这些基因与在其他物种中鉴定出的GAs信号成分具有高度同一性。 DfPHOR在ME中的表达显然是由植物色素通过从胚向ME提供GA来调节的,而DfMYB的表达受胚胎因子调节,该因子具有调节种子对GAs敏感性的一些特征。

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