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Mesophyll conductance decreases in the wild type but not in an ABA-deficient mutant (aba1) of Nicotiana plumbaginifolia under drought conditions

机译:在干旱条件下,野生型的叶肉电导降低,但缺乏ABA的烟草突变型烟叶的突变体(aba1)没有降低

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摘要

Under drought conditions, leaf photosynthesis is limited by the supply of CO2. Drought induces production of abscisic acid (ABA), and ABA decreases stomatal conductance (g(s)). Previous papers reported that the drought stress also causes the decrease in mesophyll conductance (g(m)). However, the relationships between ABA content and g(m) are unclear. We investigated the responses of g(m) to the leaf ABA content [(ABA)(L)] using an ABA-deficient mutant, aba1, and the wild type (WT) of Nicotiana plumbaginifolia. We also measured leaf water potential ((L)) because leaf hydraulics may be related to g(m). Under drought conditions, g(m) decreased with the increase in (ABA)(L) in WT, whereas both (ABA)(L) and g(m) were unchanged by the drought treatment in aba1. Exogenously applied ABA decreased g(m) in both WT and aba1 in a dose-dependent manner. (L) in WT was decreased by the drought treatment to -0.7MPa, whereas (L) in aba1 was around -0.8MPa even under the well-watered conditions and unchanged by the drought treatment. From these results, we conclude that the increase in (ABA)(L) is crucial for the decrease in g(m) under drought conditions. We discuss possible relationships between the decrease in g(m) and changes in the leaf hydraulics.
机译:在干旱条件下,叶片的光合作用受到二氧化碳供应的限制。干旱诱导产生脱落酸(ABA),ABA降低气孔导度(g(s))。先前的论文报道干旱胁迫也引起叶肉电导率(g(m))的降低。但是,ABA含量与g(m)之间的关系尚不清楚。我们调查了g(m)对叶ABA含量[(ABA)(L)]的响应,使用的是ABA缺陷型突变株aba1和烟草(Nicotiana plumbaginifolia)的野生型(WT)。我们还测量了叶片水势((L)),因为叶片水力可能与g(m)有关。在干旱条件下,WT中g(m)随(ABA)(L)的增加而降低,而aba1中干旱处理(ABA)(L)和g(m)均未改变。外源应用的ABA降低WT和aba1中的g(m)呈剂量依赖性。通过干旱处理,WT中的(L)降低至-0.7MPa,而即使在水分充足的条件下,aba1中的(L)也在-0.8MPa左右,而通过干旱处理则保持不变。根据这些结果,我们得出结论,干旱条件下(ABA)(L)的增加对于g(m)的减少至关重要。我们讨论了g(m)的减少与叶片水力变化之间的可能关系。

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