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IBR5 a Dual-Specificity Phosphatase-Like Protein Modulating Auxin and Abscisic Acid Responsiveness in Arabidopsis

机译:IBR5双特异性磷酸酶样蛋白调节拟南芥中的生长素和脱落酸响应性

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摘要

Auxin is an important plant hormone that plays significant roles in plant growth and development. Although numerous auxin-response mutants have been identified, auxin signal transduction pathways remain to be fully elucidated. We isolated ibr5 as an Arabidopsis indole-3-butyric acid–response mutant, but it also is less responsive to indole-3-acetic acid, synthetic auxins, auxin transport inhibitors, and the phytohormone abscisic acid. Like certain other auxin-response mutants, ibr5 has a long root and a short hypocotyl when grown in the light. In addition, ibr5 displays aberrant vascular patterning, increased leaf serration, and reduced accumulation of an auxin-inducible reporter. We used positional information to determine that the gene defective in ibr5 encodes an apparent dual-specificity phosphatase. Using immunoblot and promoter-reporter gene analyses, we found that IBR5 is expressed throughout the plant. The identification of IBR5 relatives in other flowering plants suggests that IBR5 function is conserved throughout angiosperms. Our results suggest that IBR5 is a phosphatase that modulates phytohormone signal transduction and support a link between auxin and abscisic acid signaling pathways.
机译:生长素是一种重要的植物激素,在植物生长发育中起着重要作用。尽管已鉴定出许多生长素应答突变体,但生长素信号转导途径仍有待充分阐明。我们分离了ibr5作为拟南芥吲哚-3-丁酸反应突变体,但它对吲哚-3-乙酸,合成植物生长素,植物生长素运输抑制剂和植物激素脱落酸的反应也较弱。像某些其他生长素应答突变体一样,在光照条件下生长时,ibr5的根长而下胚轴短。此外,ibr5表现出异​​常的血管模式,增加了叶片锯齿,并减少了生长素诱导型报道分子的积累。我们使用位置信息来确定在ibr5中有缺陷的基因编码了明显的双特异性磷酸酶。使用免疫印迹和启动子报告基因分析,我们发现IBR5在整个植物中表达。对其他开花植物中IBR5亲属的鉴定表明,在整个被子植物中IBR5的功能均得到了保护。我们的结果表明IBR5是一种磷酸酶,可调节植物激素信号转导并支持生长素和脱落酸信号传导途径之间的联系。

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