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Convergent starvation signals and hormone crosstalk in regulating nutrient mobilization upon germination in cereals.

机译:谷物发芽时收敛的饥饿信号和激素串扰可调节营养素的动员。

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摘要

Germination is a unique developmental transition from metabolically quiescent seed to actively growing seedling that requires an ensemble of hydrolases for coordinated nutrient mobilization to support heterotrophic growth until autotrophic photosynthesis is established. This study reveals two crucial transcription factors, MYBS1 and MYBGA, present in rice (Oryza sativa) and barley (Hordeum vulgare), that function to integrate diverse nutrient starvation and gibberellin (GA) signaling pathways during germination of cereal grains. Sugar represses but sugar starvation induces MYBS1 synthesis and its nuclear translocation. GA antagonizes sugar repression by enhancing conuclear transport of the GA-inducible MYBGA with MYBS1 and the formation of a stable bipartite MYB-DNA complex to activate the alpha -amylase gene. We further discovered that not only sugar but also nitrogen and phosphate starvation signals converge and interconnect with GA to promote the conuclear import of MYBS1 and MYBGA, resulting in the expression of a large set of GA-inducible but functionally distinct hydrolases, transporters, and regulators associated with mobilization of the full complement of nutrients to support active seedling growth in cereals.
机译:萌发是从代谢静止的种子到活跃生长的幼苗的独特的发育过渡,需要大量的水解酶来协调营养动员以支持异养生长,直到建立自养光合作用。这项研究揭示了水稻(Oryza sativa)和大麦(Hordeum vulgare)中存在的两个关键转录因子,MYBS1和MYBGA,在谷物发芽过程中起着整合多种营养饥饿和赤霉素(GA)信号传导途径的作用。糖抑制但糖饥饿诱导MYBS1合成及其核易位。 GA通过增强MYBS1与GA诱导的MYBGA的核转运和形成稳定的二分MYB-DNA复合物以激活α-淀粉酶基因来拮抗糖的抑制作用。我们进一步发现,不仅糖,而且氮和磷饥饿信号会聚并与GA相互连接,以促进MYBS1和MYBGA的核输入,从而导致大量GA诱导但在功能上不同的水解酶,转运蛋白和调节剂的表达。与调动全部营养素以支持谷物中的幼苗活跃生长有关。

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