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首页> 外文期刊>The New Phytologist >Differential responses of stomatal kinetics and steady-state conductance to abscisic acid in a fern: comparison with a gymnosperm and an angiosperm
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Differential responses of stomatal kinetics and steady-state conductance to abscisic acid in a fern: comparison with a gymnosperm and an angiosperm

机译:气孔动力学和稳态电导对蕨类植物脱落酸的差分反应:与裸子植物和高级植物的比较

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Origins of abscisic acid (ABA)-mediated metabolic control of stomatal conductance have been suggested to be recent, based on a gradualistic model of stomatal evolution. In ferns, steady-state stomatal conductance (g(s)) was unresponsive to ABA in some studies, supporting this model. Stomatal kinetic responses to ABA have not been considered. We used dynamic gas exchange methods to characterise half times of stomatal opening and closing in response to step changes in light, across a range of ABA exposures in three diverse taxa. All taxa had asymmetric kinetics, with closure slower than opening in fern and cedar, but faster than opening in soybean. Closing was fastest in soybean but opening was slowest. Stomatal kinetics, particularly for closure, responded to ABA in all three taxa. Steady-state g(s) did not respond significantly to ABA in fern or cedar but responded strongly in soybean. Stomatal kinetics were responsive to ABA in fern. This finding supports a contrasting, single origin model, with ABA-mediated regulation of stomata arising early, in conjunction with stomata themselves. Stomatal kinetics are underutilised. Differential responses of opening and closing rates to environmental and hormonal stimuli may provide insights into phylogeny and stomatal regulatory strategies with potential application to selection for crop improvement.
机译:已经基于气孔演化的渐进模型,提出了近距离脱落酸(ABA)介导的气孔传导的代谢控制。在蕨类植物中,稳态气孔电导(G(S))对某些研究中的ABA无响应,支持该模型。对ABA的气孔动力学应对尚未考虑。我们使用动态气体交换方法来表征气孔开口半次的半次,响应于光的步骤变化,在三个不同的三种分类群中的一系列ABA暴露。所有分类群都有不对称的动力学,封闭速度比蕨类植物和雪松在蕨类植物和雪松的开场慢,但比大豆在大豆上的开口速度速度速度速度较快。闭合在大豆中最快,但开场是最慢的。气孔动力学,特别是闭包,在所有三个分类群中回应ABA。稳态g(s)对蕨类植物或雪松的ABA没有显着响应,但在大豆中强烈反应。气孔动力学对蕨类植物的反应感应为ABA。这一发现支持对比度,单一的原点模型,随着气孔本身,ABA介导的气孔调节。气孔动力学未充分利用。对环境和荷尔蒙刺激的开放和关闭率的差分响应可以为系统发育和气孔监管策略提供潜在应用,以便选择作物改善。

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