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MADS-Box Transcription Factor AGL21 Regulates Lateral Root Development and Responds to Multiple External and Physiological Signals

机译:MADS框转录因子AGL21调节侧根发育并响应多种外部和生理信号

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MADS-box transcription factor AGL21 is responsive to several phytohormones as well as environmental cues and positively regulates auxin accumulation in lateral root primordia and lateral roots by enhancing local auxin biosynthesis, thus stimulating lateral root initiation and growth. Therefore, AGL21 may be involved in various environmental and physiological signals-mediated lateral root development.Plant root system morphology is dramatically influenced by various environmental cues. The adaptation of root system architecture to environmental constraints, which mostly depends on the formation and growth of lateral roots, is an important agronomic trait. Lateral root development is regulated by the external signals coordinating closely with intrinsic signaling pathways. MADS-box transcription factors are known key regulators of the transition to flowering and flower development. However, their functions in root development are still poorly understood. Here we report that AGL21, an AGL17-clade MADS-box gene, plays a crucial role in lateral root development. AGL21 was highly expressed in root, particularly in the root central cylinder and lateral root primordia. AGL21 overexpression plants produced more and longer lateral roots while agl21 mutants showed impaired lateral root development, especially under nitrogen-deficient conditions. AGL21 was induced by many plant hormones and environmental stresses, suggesting a function of this gene in root system plasticity in response to various signals. Furthermore, AGL21 was found positively regulating auxin accumulation in lateral root primordia and lateral roots by enhancing local auxin biosynthesis, thus stimulating lateral root initiation and growth. We propose that AGL21 may be involved in various environmental and physiological signals-mediated lateral root development and growth.
机译:MADS-box转录因子AGL21对几种植物激素和环境线索有反应,并通过增强局部植物生长素的生物合成,积极调节侧根原基和侧根中的生长素积累,从而刺激侧根的起始和生长。因此,AGL21可能参与各种环境和生理信号介导的侧根发育。植物根系形态受到多种环境线索的显着影响。根系体系结构适应环境限制(这主要取决于侧根的形成和生长)是一项重要的农艺性状。根的侧向发育受与内在信号传导途径密切配合的外部信号调控。 MADS-box转录因子是已知的向开花和花朵发育过渡的关键调控因子。但是,它们在根发育中的功能仍然知之甚少。在这里我们报告说,AGL21,AGL17覆盖MADS框基因,在侧根发育中起关键作用。 AGL21在根中高表达,特别是在根中央圆柱体和侧根原基中。 AGL21过表达植物产生更多和更长的侧根,而agl21突变体显示出侧根发育受损,尤其是在氮缺乏条件下。 AGL21是由许多植物激素和环境胁迫诱导的,表明该基因在根系可塑性中对各种信号作出响应的功能。此外,发现AGL21通过增强局部生长素的生物合成,从而积极调节侧根原基和侧根中生长素的积累,从而刺激侧根的起始和生长。我们建议AGL21可能参与各种环境和生理信号介导的侧根发育和生长。

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