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首页> 外文期刊>The Plant Cell >Silver Ions Increase Auxin Efflux Independently of Effects on Ethylene Response.
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Silver Ions Increase Auxin Efflux Independently of Effects on Ethylene Response.

机译:银离子随着对乙烯反应的影响而增加养蛋白流速。

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摘要

Silver nitrate and aminoethoxyvinylglycine (AVG) are often used to inhibit perception and biosynthesis, respectively, of the phytohormone ethylene. In the course of exploring the genetic basis of the extensive interactions between ethylene and auxin, we compared the effects of silver nitrate (AgNO3) and AVG on auxin responsiveness. We found that although AgNO3 dramatically decreased root indole-3-acetic acid (IAA) responsiveness in inhibition of root elongation, promotion of DR5-beta-glucuronidase activity, and reduction of Aux/IAA protein levels, AVG had more mild effects. Moreover, we found that that silver ions, but not AVG, enhanced IAA efflux similarly in root tips of both the wild type and mutants with blocked ethylene responses, indicating that this enhancement was independent of ethylene signaling. Our results suggest that the promotion of IAA efflux by silver ions is independent of the effects of silver ions on ethylene perception. Although the molecular details of this enhancement remain unknown, our finding that silver ions can promote IAA efflux in addition to blocking ethylene signaling suggest that caution is warranted in interpreting studies using AgNO3 to block ethylene signaling in roots.
机译:硝酸银和氨基乙烯基甘氨酸(AVG)通常用于抑制植物激素乙烯的感知和生物合成。在探索乙烯和毒素之间广泛相互作用的遗传基础的过程中,我们比较了硝酸银(AgNO3)和AVG对促进症响应性的影响。我们发现虽然AgNO3显着降低了根吲哚-3-乙酸(IAA)反应性,但抑制根伸长率,促进DR5-β-葡糖醛酸酶活性,以及​​降低Aux / IAA蛋白水平,AVG效应更温和。此外,我们发现,类似于野生型和乙烯反应的野生型和突变体的根尖同样,银离子同样地增强IAA流出,表明这种增强与乙烯信号传导无关。我们的研究结果表明,银离子的促进IAA Efflux与银离子对乙烯感知的影响无关。虽然这种增强的分子细节仍然是未知的,但我们发现银离子可以促进IAA流出,除了阻断乙烯信号传导,表明在使用AgNO3中解释研究中的解释研究方案是在解释中的解释中的谨慎。

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