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Enhanced Stomatal Conductance by a Spontaneous Arabidopsis Tetraploid, Me-0, Results from Increased Stomatal Size and Greater Stomatal Aperture

机译:自发拟南芥四倍体,Me-0,增强气孔导度,其原因是气孔大小增加和气孔孔径增大

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The rate of gas exchange in plants is regulated mainly by stomatal size and density. Generally, higher densities of smaller stomata are advantageous for gas exchange; however, it is unclear what the effect of an extraordinary change in stomatal size might have on a plant's gas-exchange capacity. We investigated the stomatal responses to CO2 concentration changes among 374 Arabidopsis (Arabidopsis thaliana) ecotypes and discovered that Mechtshausen (Me-0), a natural tetraploid ecotype, has significantly larger stomata and can achieve a high stomatal conductance. We surmised that the cause of the increased stomatal conductance is tetraploidization; however, the stomatal conductance of another tetraploid accession, tetraploid Columbia (Col), was not as high as that in Me-0. One difference between these two accessions was the size of their stomatal apertures. Analyses of abscisic acid sensitivity, ion balance, and gene expression profiles suggested that physiological or genetic factors restrict the stomatal opening in tetraploid Col but not in Me-0. Our results show that Me-0 overcomes the handicap of stomatal opening that is typical for tetraploids and achieves higher stomatal conductance compared with the closely related tetraploid Col on account of larger stomatal apertures. This study provides evidence for whether larger stomatal size in tetraploids of higher plants can improve stomatal conductance.
机译:植物中气体交换的速率主要受气孔大小和密度调节。通常,较高的较小气孔密度有利于气体交换。但是,目前尚不清楚气孔大小发生巨大变化会对工厂的气体交换能力产生什么影响。我们调查了374种拟南芥(Arabidopsis thaliana)生态型中气孔对CO2浓度变化的响应,并发现自然四倍体生态型Mechtshausen(Me-0)具有明显更大的气孔并可以实现较高的气孔导度。我们推测气孔导度增加的原因是四倍体化。然而,另一种四倍体种,哥伦比亚的四倍体,其气孔导度不如Me-0。这两个种之间的一个区别是它们的气孔孔径的大小。对脱落酸敏感性,离子平衡和基因表达谱的分析表明,生理或遗传因素限制了四倍体Col中的气孔开放,而在Me-0中则没有。我们的结果表明,Me-0克服了四倍体典型的气孔开放障碍,并且由于紧密的气孔孔径较大,与紧密相关的四倍体Col相比,气孔导度更高。该研究为高等植物四倍体中较大的气孔大小是否可以改善气孔导度提供了证据。

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