首页> 外文OA文献 >Tomato BRASSINOSTEROID INSENSITIVE1 Is Required for Systemin-Induced Root Elongation in Solanum pimpinellifolium but Is Not Essential for Wound Signaling[W]
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Tomato BRASSINOSTEROID INSENSITIVE1 Is Required for Systemin-Induced Root Elongation in Solanum pimpinellifolium but Is Not Essential for Wound Signaling[W]

机译:番茄油菜素内酯类抗感药1是Pinpinellifolium中Systemin诱导的根伸长所必需的,但不是伤口信号传导所必需的[W]

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摘要

The tomato Leu-rich repeat receptor kinase BRASSINOSTEROID INSENSITIVE1 (BRI1) has been implicated in both peptide (systemin) and steroid (brassinosteroid [BR]) hormone perception. In an attempt to dissect these signaling pathways, we show that transgenic expression of BRI1 can restore the dwarf phenotype of the tomato curl3 (cu3) mutation. Confirmation that BRI1 is involved in BR signaling is highlighted by the lack of BR binding to microsomal fractions made from cu3 mutants and the restoration of BR responsiveness following transformation with BRI1. In addition, wound and systemin responses in the cu3 mutants are functional, as assayed by proteinase inhibitor gene induction and rapid alkalinization of culture medium. However, we observed BRI1-dependent root elongation in response to systemin in Solanum pimpinellifolium. In addition, ethylene perception is required for normal systemin responses in roots. These data taken together suggest that cu3 is not defective in systemin-induced wound signaling and that systemin perception can occur via a non-BRI1 mechanism.
机译:富含番茄亮氨酸的重复受体激酶BRASSINOSTEROID INSENSITIVE1(BRI1)与肽(systemin)和类固醇(brassinosteroid [BR])激素相关。在试图剖析这些信号传导途径中,我们表明BRI1的转基因表达可以恢复番茄curl3(cu3)突变的矮表型。缺乏BR与由cu3突变体制成的微粒体级分的结合以及在用BRI1转化后恢复BR的反应力,突显了BRI1参与BR信号的确认。此外,通过蛋白酶抑制剂基因诱导和培养基快速碱化分析,cu3突变体中的伤口反应和系统反应是有功能的。然而,我们观察到对Pinpinellifolium中的systemin响应的BRI1依赖性根伸长。另外,对于根的正常系统反应,乙烯感知是必需的。这些数据加在一起表明cu3在systemin诱导的伤口信号传导中没有缺陷,并且systemin感知可以通过非BRI1机制发生。

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