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Brassinosteroids and gibberellins promote tobacco seed germination by distinct pathways

机译:油菜素类固醇和赤霉素通过不同途径促进烟草种子发芽

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Seed germination of Nicotiana tabacum L. cv. Havana 425 is determined by the balance of forces between the growth potential of the embryo and the mechanical restraint of the micropylar endosperm. In contrast to the gibberellin GA4, the brassinosteroid (BR) brassinolide (BL) did not release photodormancy of dark-imbibed photodormant seeds. Brassinolide promoted seedling elongation and germination of non-photodormant seeds, but did not appreciably affect the induction of class I β-1,3-glucanase (βGLU I) in the micropylar endosperm. Brassinolide, but not GA4, accelerated endosperm rupture of tobacco seeds imbibed in the light. Brassinolide and GA4 promoted endosperm rupture of dark-imbibed non-photodormant seeds, but only GA4 enhanced βGLU I induction. Promotion of endosperm rupture by BL was dose-dependent and 0.01 µM BL was most effective. Brassinolide and GA4 promoted abscisic acid (ABA)-inhibited dark-germination of non-photodormant seeds, but only GA4 replaced light in inducing βGLU I. These results indicate that BRs and GAs promote tobacco seed germination by distinct signal transduction pathways and distinct mechanisms. Gibberellins and light seem to act in a common pathway to release photodormancy, whereas BRs do not release photodormancy. Induction of βGLU I in the micropylar endosperm and promotion of release of 'coat-enhanced' dormancy seem to be associated with the GA-dependent pathway, but not with BR signalling. It is proposed that BRs promote seed germination by directly enhancing the growth potential of the emerging embryo in a GA- and βGLU I-independent manner.
机译:烟草的种子萌发哈瓦那425是由胚胎的生长潜力与毛孔胚乳的机械约束力之间的平衡所决定的。与赤霉素GA4 相反,油菜素甾体(BR)油菜素内酯(BL)不会释放暗吸光休眠种子的光休眠。油菜素内酯可促进非光休眠种子的幼苗伸长和萌发,但不会显着影响在毛孔胚乳中诱导的I类β-1,3-葡聚糖酶(βGLUI)。油菜素内酯,而不是GA4 ,可加速吸光的烟草种子的胚乳破裂。油菜素内酯和GA4 促进了暗吸非光休眠种子的胚乳破裂,但只有GA4 增强了βGLUI的诱导。 BL促进胚乳破裂是剂量依赖性的,而0.01 µM BL最有效。油菜素内酯和GA4 促进了脱落酸(ABA)抑制了非光休眠种子的黑暗发芽,但只有GA4 替代了光,从而诱导了βGLUI。这些结果表明,BRs和GAs通过以下方式促进烟草种子发芽:不同的信号转导途径和不同的机制。赤霉素和光似乎在释放光休眠的共同途径中起作用,而BR则不释放光休眠。在小孔胚乳中诱导βGLUI和促进“被毛增强的”休眠释放的促进似乎与GA依赖性途径有关,但与BR信号无关。提出BRs通过以GA和βGLUI非依赖性方式直接增强新兴胚的生长潜力来促进种子发芽。

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