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Ethylene is involved in high air humidity promoted stomatal opening of tomato (Lycopersicon esculentum) leaves

机译:乙烯与高空气湿度促进的番茄(Lycopersicon esculentum)叶片气孔开放有关

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High relative air humidity (RH) promotes stomatal opening in tomato leaves. This study examined the role of the plant hormones abscisic acid (ABA) and ethylene in high RH induced stomatal opening. Plants were grown in high (90%) and moderate (60%) RH or transferred from moderate to high RH. ABA levels were only slightly, but significantly decreased during darkness by increasing RH. However, a significantly higher ethylene evolution was found in high RH compared with moderate RH. Ethephon increased conductance and stomatal aperture in moderate RH. Treatment with amino-ethoxyvinylglycine (AVG) suppressed stomatal opening when plants were transferred from moderate to high RH. Similarly, blocking the ethylene receptor or using an ethylene-insensitive mutant (NR) reduced the response to high RH. These results demonstrate that both ethylene production and sensitivity play a role in high RH-induced stomatal opening in tomato leaves. The increased conductance found when plants were transferred to high RH could be counteracted by exogenous ABA spray. The ABA deficient mutant 'Flacca' produced high levels of ethylene irrespective of the RH and the difference in water loss and conductance between high and moderate grown 'Flacca' plants was attenuated compared with WT. The results indicate that both ABA and ethylene play a role in air humidity control of stomatal movement in tomato.
机译:较高的相对空气湿度(RH)会促进番茄叶片的气孔开放。这项研究检查了植物激素脱落酸(ABA)和乙烯在高RH诱导的气孔开放中的作用。使植物在高(90%)和中度(60%)RH下生长,或从中度到高RH转移。 ABA水平仅轻微升高,但在黑暗中会因RH升高而显着降低。但是,与中等RH相比,在高RH中发现了更高的乙烯释放。在中度相对湿度下,乙烯利可增加电导和气孔孔径。当植物从中等RH转移到高RH时,用氨基乙氧基乙烯基甘氨酸(AVG)处理抑制了气孔开放。同样,阻断乙烯受体或使用对乙烯不敏感的突变体(NR)会降低对高RH的响应。这些结果表明乙烯的产生和敏感性都在高RH诱导的番茄叶片气孔开口中起作用。当植物转移到高RH下时发现的电导增加可以通过外源ABA喷雾来抵消。与RH无关,ABA缺失突变体'Flacca'产生高水平的乙烯,与野生型相比,高和中度生长的'Flacca'植物之间的水分流失和电导率差异有所减弱。结果表明,ABA和乙烯均在控制番茄气孔运动的空气湿度中起作用。

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