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The effect of NaCl on stomatal opening in Arabidopsis wild type and agb1 heterotrimeric G-protein mutant plants

机译:NaCl对拟南芥野生型和agb1异三聚体G蛋白突变体植物气孔开放的影响

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摘要

Salinity is a major agricultural problem that affects crop yield. Na+ is transported to the shoot through the transpiration stream. The mutant of the sole Arabidopsis heterotrimeric G protein β subunit, agb1, is hypersensitive to salinity in part due to a higher transpiration rate. Here, we investigated the direct effect of Na+ on stomatal opening using detached epidermal peels of wild type and agb1 plants. In both genotypes, NaCl is equally as effective as KCl in mediating stomatal opening at the concentrations tested. In both genotypes, ABA is less effective in inhibiting Na+ mediated stomatal opening than K+ mediated stomatal opening. The agb1 mutant is hyposensitive to ABA inhibition of K+-mediated but not Na+-mediated stomatal opening. These results suggest that the greater transpiration observed in agb1 plants grown in saline conditions is likely not mediated by differential genotypic direct effects of Na+ on stomatal apertures.
机译:盐分是影响农作物产量的主要农业问题。 Na + 通过蒸腾流传输到枝条。唯一的拟南芥异三聚体G蛋白β亚基agb1的突变体对盐分高度敏感,部分原因是蒸腾速率较高。在这里,我们使用野生型和agb1植物分离的表皮皮研究了Na + 对气孔开放的直接作用。在两种基因型中,在测试浓度下,NaCl在介导气孔开口方面都与KCl一样有效。在两种基因型中,ABA抑制Na + 介导的气孔开放的效果均不如K + 介导的气孔开放。 agb1突变体对ABA抑制K + 介导但对Na + 介导的气孔开放不敏感。这些结果表明,在盐条件下生长的agb1植物中观察到的更大的蒸腾作用可能不是Na + 对气孔孔径​​的不同基因型直接作用所介导的。

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