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The impact of the absence of aliphatic glucosinolates on water transport under salt stress in Arabidopsis thaliana

机译:盐胁迫下拟南芥中脂肪族芥子油苷的缺失对水分迁移的影响

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摘要

Members of the Brassicaceae are known for their contents of nutrients and health-promoting phytochemicals, including glucosinolates. Exposure to salinity increases the levels of several of these compounds, but their role in abiotic stress response is unclear. The effect of aliphatic glucosinolates on plant water balance and growth under salt stress, involving aquaporins, was investigated by means of Arabidopsis thaliana mutants impaired in aliphatic glucosinolate biosynthesis, which is controlled by two transcription factors: Myb28 and Myb29. The double mutant myb28myb29, completely lacking aliphatic glucosinolates, was compared to wild type Col-0 (WT) and the single mutant myb28. A greater reduction in the hydraulic conductivity of myb28myb29 was observed under salt stress, when compared to the WT and myb28; this correlated with the abundance of both PIP1 and PIP2 aquaporin subfamilies. Also, changes in root architecture in response to salinity were genotype dependent. Treatment with NaCl altered glucosinolates biosynthesis in a similar way in WT and the single mutant and differently in the double mutant. The results indicate that short-chain aliphatic glucosinolates may contribute to water saving under salt stress.
机译:十字花科的成员以其营养成分和促进健康的植物化学物质(包括芥子油苷)的含量而闻名。盐度暴露会增加其中一些化合物的水平,但尚不清楚它们在非生物胁迫反应中的作用。通过在脂族芥子油苷生物合成中受损的拟南芥突变体,通过两个转录因子:Myb28和Myb29控制脂族芥子油苷对盐胁迫(包括水通道蛋白)对植物水分平衡和生长的影响。将完全缺乏脂肪族芥子油苷的双突变体myb28myb29与野生型Col-0(WT)和单突变体myb28进行了比较。与WT和myb28相比,在盐胁迫下观察到的myb28myb29的水力传导率有更大的降低。这与PIP1和PIP2水通道蛋白亚家族的丰度相关。而且,根系结构响应盐度的变化是基因型依赖性的。用NaCl处理改变了芥子油苷的生物合成,在野生型和单突变体中相似,而在双突变体中则不同。结果表明,短链脂肪族芥子油苷可能在盐胁迫下有助于节水。

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