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Mesophyll Cells Are the Main Site of Abscisic Acid Biosynthesis in Water-Stressed Leaves

机译:叶肉细胞是缺水叶片中脱落酸生物合成的主要部位

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摘要

The hormone abscisic acid (ABA) plays a critical role in enhancing plant survival during water deficit. Recent molecular evidence suggests that ABA is synthesized in the phloem companion cells and guard cells. However, the nature of cell turgor and water status in these two cell types cannot easily account for the rapid, water status-triggered ABA biosynthesis observed in leaves. Here, we utilize the unique foliar anatomies of an angiosperm (Hakea lissosperma) and four conifer species (Saxegothaea conspicua, Podocarpus latifolius, Cephalotaxus harringtonii, and Amentotaxus formosana) in which the mesophyll can be isolated from the vascular tissue to identify the main site of ABA biosynthesis in water-stressed leaves. In all five species tested, considerable ABA biosynthesis occurred in mesophyll tissue that had been separated from vascular tissue. In addition, the removal of the epidermis from the mesophyll in two conifer species had no impact on the observed increase in ABA levels under water deficit. Our results suggest that mesophyll cells are the predominant location of water deficit-triggered ABA biosynthesis in the leaf.
机译:脱落酸激素(ABA)在提高水分缺乏期间的植物存活中起关键作用。最近的分子证据表明,ABA是在韧皮部伴侣细胞和保卫细胞中合成的。但是,这两种细胞类型中的细胞膨胀特性和水分状态无法轻易解释叶片中观察到的快速,水分状态触发的ABA生物合成。在这里,我们利用被子植物(Hakea lissosperma)和四个针叶树种(Saxegothaea conspicua,Podocarpus latifolius,Cephalotaxus harringtonii和Amentotaxus formosana)的独特叶面解剖结构,从叶脉的主要部位分离出叶肉水分胁迫叶片中的ABA生物合成。在测试的所有五个物种中,已经从血管组织中分离出来的叶肉组织中发生了大量的ABA生物合成。此外,在两个针叶树种中,从叶肉中去除表皮对观察到的缺水条件下ABA含量的增加没有影响。我们的结果表明,叶肉细胞是水分不足触发的ABA生物合成在叶中的主要位置。

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