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Ethylene Sensitivity and Response Sensor Expression in Petioles of Rumex Species at Low O2 and High CO2 Concentrations.

机译:在低O2和高CO2浓度下Rumex物种的叶柄中的乙烯敏感性和响应传感器表达。

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摘要

Rumex palustris, a flooding-tolerant plant, elongates its petioles in response to complete submergence. This response can be partly mimicked by enhanced ethylene levels and low O2 concentrations. High levels of CO2 do not markedly affect petiole elongation in R. palustris. Experiments with ethylene synthesis and action inhibitors demonstrate that treatment with low O2 concentrations enhances petiole extension by shifting sensitivity to ethylene without changing the rate of ethylene production. The expression level of the R. palustris gene coding for the putative ethylene receptor (RP-ERS1) is up-regulated by 3% O2 and increases after 20 min of exposure to a low concentration of O2, thus preceding the first significant increase in elongation observable after 40 to 50 min. In the flooding-sensitive species Rumex acetosa, submergence results in a different response pattern: petiole growth of the submerged plants is the same as for control plants. Exposure of R. acetosa to enhanced ethylene levels strongly inhibits petiole growth. This inhibitory effect of ethylene on R. acetosa can be reduced by both low levels of O2 and/or high concentrations of CO2.
机译:Rumex palustris是一种耐洪植物,可完全浸没后延长其叶柄。乙烯含量提高和氧气浓度低可以部分模拟这种反应。高水平的二氧化碳不会显着影响palustris的叶柄伸长。乙烯合成和作用抑制剂的实验表明,低氧浓度的处理可通过改变对乙烯的敏感性来提高叶柄的延伸,而不会改变乙烯的生成速率。编码假定的乙烯受体(RP-ERS1)的palustris基因的表达水平被3%的氧气上调,并在暴露于低浓度的氧气20分钟后增加,因此在伸长率首次显着增加之前40至50分钟后即可观察到。在对水淹敏感的物种Rumex acetosa中,淹没导致了不同的响应方式:淹没植物的叶柄生长与对照植物相同。乙酰丙酮杆菌暴露于增强的乙烯水平会强烈抑制叶柄的生长。较低的O2含量和/或高浓度的CO2均可降低乙烯对乙酰丙酮酸杆菌的抑制作用。

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