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Misleading conclusions from exogenous ABA application: a cautionary tale about the evolution of stomatal responses to changes in leaf water status

机译:外源ABA的应用产生误导性结论:关于气孔对叶片水分状况变化的反应的警告性故事

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摘要

Stomatal responses to changes in leaf water status are critical for minimizing excessive water loss during soil drought. A major debate has surrounded the evolution of stomatal responses to water status and this debate has particularly focused on the evolution of the regulatory role of the drought hormone abscisic acid (ABA). Studies relying on the application of high levels of exogenous ABA have occasionally concluded that all stomata respond to ABA and that stomatal regulation in response to this hormone has not evolved over the past 450 million years. In contrast, studies which have investigated stomatal function in intact plants, as well as the role of endogenous ABA in regulating stomatal aperture, have found major evolutionary transitions in the functional regulation of stomata across land plant lineages. We show that endogenous ABA plays no role in closing the stomata of the fern during natural soil drought, in contrast to a recent finding using isolated epidermis and exceptionally high levels of exogenous ABA. We conclude that stomatal behavior in intact plants has evolved over time, and may have shaped the evolutionary and ecological success of successive land plant lineages.
机译:对叶片水分状况变化的气孔响应对于最大程度减少土壤干旱期间的过度水分流失至关重要。一场主要的辩论围绕着气孔对水状况的响应的演变,而这场争论尤其集中在干旱激素脱落酸(ABA)的调节作用的演变上。依靠高水平外源ABA的应用的研究偶尔得出结论,所有气孔对ABA都有反应,并且在过去的4.5亿年中,针对这种激素的气孔调节并未发生变化。相比之下,研究完整植物气孔功能以及内源ABA在调节气孔孔径中的作用的研究发现,陆地植物谱系中气孔的功能调节发生了重大的进化转变。我们显示内源性ABA在天然土壤干旱期间不影响蕨类植物气孔的封闭,与最近使用隔离的表皮和异常高水平的外源性ABA的发现相反。我们得出的结论是,完整植物中的气孔行为已经随着时间的流逝而发展,并且可能已经影响了陆生植物世系的进化和生态学成功。

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