首页> 外文期刊>Plant Cell Reports >Gibberellins and abscisic acid signal crosstalk: living and developing under unfavorable conditions. (Special Issue: Plant hormone signaling (Volume II).)
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Gibberellins and abscisic acid signal crosstalk: living and developing under unfavorable conditions. (Special Issue: Plant hormone signaling (Volume II).)

机译:赤霉素和脱落酸信号串扰:在不利条件下生活和发育。 (特刊:植物激素信号传导(第二卷)。)

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摘要

Plants adapt to adverse environments by integrating growth and development to environmentally activated cues. Within the adaptive signaling networks, plant hormones tightly control convergent developmental and stress adaptive processes and coordinate cellular responses to external and internal conditions. Recent studies have uncovered novel antagonizing roles of the plant hormones gibberellin (GA) and abscisic acid (ABA) in integrating growth and development in plants with environmental signaling. According to current concepts, GRAS transcription factors of the DELLA and SCARECROW-LIKE (SCL) types have a key role as major growth regulators and have pivotal functions in modulating GA signaling. Significantly, current models emphasize a function of DELLA proteins as central regulators in GA homeostasis. DELLA proteins interact with the cellular GA receptor GID1 (GA-INSENSITIVE DWARF1) and degradation of DELLAs activates the function of GA. Supplementary to the prevailing view of a pivotal role of GRAS family transcriptional factors in plant growth regulation, recent work has suggested that the DELLA and SCL proteins integrate generic GA responses into ABA-controlled abiotic stress tolerance. Here, we review and discuss how GRAS type proteins influence plant development and versatile adaptation as hubs in GA and ABA triggered signaling pathways.
机译:植物通过将生长发育整合到环境激活的线索中来适应不利的环境。在适应性信号网络中,植物激素严格控制收敛的发育和逆境适应过程,并协调细胞对外部和内部条件的反应。最近的研究发现了植物激素赤霉素(GA)和脱落酸(ABA)在整合植物生长发育与环境信号方面的新型拮抗作用。根据当前的概念,DELLA和SCARECROW-LIKE(SCL)类型的GRAS转录因子作为主要的生长调节剂具有关键作用,并且在调节GA信号传导中起关键作用。重要的是,当前模型强调了DELLA蛋白作为GA稳态中的中央调节剂的功能。 DELLA蛋白与细胞GA受体GID1(GA-INSENSITIVE DWARF1)相互作用,DELLAs的降解激活了GA的功能。作为对GRAS家族转录因子在植物生长调节中的关键作用的主流观点的补充,最近的工作表明DELLA和SCL蛋白将通用GA反应整合到ABA控制的非生物胁迫耐受性中。在这里,我们回顾和讨论GRAS型蛋白如何影响植物发育和作为GA和ABA的集线器触发信号传导途径的通用适应性。

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