...
首页> 外文期刊>The Plant Cell >HOMEOBOX PROTEIN52 Mediates the Crosstalk between Ethylene and Auxin Signaling during Primary Root Elongation by Modulating Auxin Transport-Related Gene Expression
【24h】

HOMEOBOX PROTEIN52 Mediates the Crosstalk between Ethylene and Auxin Signaling during Primary Root Elongation by Modulating Auxin Transport-Related Gene Expression

机译:Homeobox Protem52通过调节唾液传输相关的基因表达,在原发根伸长期间介导乙烯和养蛋白信号之间的串扰。

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

The gaseous hormone ethylene participates in many physiological processes in plants. Ethylene-inhibited root elongation involves PIN-FORMED2 (PIN2)-mediated basipetal auxin transport, but the molecular mechanisms underlying the regulation of PIN2 function by ethylene (and therefore auxin distribution) are poorly understood. Here, we report that the plant-specific and ethylene-responsive HD-Zip gene HB52 is involved in ethylene-mediated inhibition of primary root elongation in Arabidopsis thaliana. Biochemical and genetic analyses demonstrated that HB52 is ethylene responsive and acts downstream of ETHYLENE-INSENSITIVE3 (EIN3). HB52 knockdown mutants displayed an ethylene-insensitive phenotype during primary root elongation, while its overexpression resulted in short roots, as observed in ethylene-treated plants. In addition, root auxin distribution and gravitropism were impaired in HB52 knockdown and overexpression lines. Consistent with these findings, in vitro and in vivo binding experiments showed that HB52 regulates the expression of auxin transport-related genes, including PIN2, WAVY ROOT GROWTH1 (WAG1), and WAG2 by physically binding to their promoter regions. These findings suggest that HB52 functions in the ethylene-mediated inhibition of root elongation by modulating the expression of auxin transport components downstream of EIN3, revealing a mechanism in which HB52 acts as an important node in the crosstalk between ethylene and auxin signaling during plant growth and development.
机译:气态激素乙烯参与植物中的许多生理过程。乙烯抑制的根伸长率涉及销形成2(PIN2)介导的胸蛋白植物素转运,但是通过乙烯(因此植物素分布)的PIN2函数调节的分子机制较差。在这里,我们报告植物特异性和乙烯响应性HD-ZIP基因HB52参与亚乙基介导的亚拟合拟南芥初始伸长率。生物化学和遗传分析证明HB52是乙烯响应性的,并作用在乙烯 - 不敏感3(EIN3)的下游。 HB52敲低突变体在原粒根伸长期间显示乙烯不敏感的表型,而其过表达导致短根,如乙烯处理的植物中所观察到的。此外,Hb52敲低和过度表达系中损害了根系毒素分布和重力。与这些发现一致,体外和体内结合实验表明,Hb52通过与其启动子区域物理结合来调节毒素传输相关基因的表达,包括Pin2,波浪根生长1(WAG1)和WAG2。这些发现表明HB52通过调节eIn3下游的生长素转运组分的表达,揭示Hb52在植物生长期间雌激素信号传导的串扰中的重要节点的机理通过调节乙烯 - 介导的根伸长率的根伸长率的抑制。发展。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号