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赤霉素通过调节 DELLA-SPL9 复合物活性抑制拟南芥侧芽形成。

Gibberellin repression of axillary bud formation in Arabidopsis by modulation of DELLA-SPL9 complex activity.

机构信息

Key Laboratory of Plant Development and Environmental Adaptation Biology, Ministry of Education, School of Life Sciences, Shandong University, Qingdao, 266237, China.

出版信息

J Integr Plant Biol. 2020 Apr;62(4):421-432. doi: 10.1111/jipb.12818. Epub 2019 May 27.

Abstract

The formation of lateral branches has an important and fundamental contribution to the remarkable developmental plasticity of plants, which allows plants to alter their architecture to adapt to the challenging environment conditions. The Gibberellin (GA) phytohormones have been known to regulate the outgrowth of axillary meristems (AMs), but the specific molecular mechanisms remain unclear. Here we show that DELLA proteins regulate axillary bud formation by interacting and regulating the DNA-binding ability of SQUAMOSA-PROMOTER BINDING PROTEIN LIKE 9 (SPL9), a microRNA156-targeted squamosa promoter binding protein-like transcription factor. SPL9 participates in the initial regulation of axillary buds by repressing the expression of LATERAL SUPPRESSOR (LAS), a key regulator in the initiation of AMs, and LAS contributes to the specific expression pattern of the GA deactivation enzyme GA2ox4, which is specifically expressed in the axils of leaves to form a low-GA cell niche in this anatomical region. Nevertheless, increasing GA levels in leaf axils by ectopically expressing the GA-biosynthesis enzyme GA20ox2 significantly impaired axillary meristem initiation. Our study demonstrates that DELLA-SPL9-LAS-GA2ox4 defines a core feedback regulatory module that spatially pattern GA content in the leaf axil and precisely control the axillary bud formation in different spatial and temporal.

摘要

侧枝的形成对植物显著的发育可塑性有重要和基础的贡献,这使植物能够改变其结构以适应具有挑战性的环境条件。植物激素赤霉素(GA)已被证明可以调节侧芽分生组织(AMs)的生长,但具体的分子机制尚不清楚。在这里,我们表明 DELLA 蛋白通过与 SQUAMOSA-PROMOTER BINDING PROTEIN LIKE 9(SPL9)相互作用并调节其 DNA 结合能力来调节侧芽的形成,SPL9 是 microRNA156 靶向的伞形蛋白结合蛋白样转录因子。SPL9 通过抑制 AM 起始的关键调节因子 LATERAL SUPPRESSOR(LAS)的表达参与侧芽的初始调节,LAS 有助于 GA 失活酶 GA2ox4 的特异性表达模式,GA2ox4 特异性表达在叶片的叶腋中,在该解剖区域形成低 GA 细胞生态位。然而,通过异位表达 GA 生物合成酶 GA20ox2 增加叶片叶腋中的 GA 水平,显著损害了侧芽分生组织的起始。我们的研究表明,DELLA-SPL9-LAS-GA2ox4 定义了一个核心反馈调节模块,该模块在叶片叶腋中空间模式 GA 含量,并精确控制不同时空的侧芽形成。

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