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Phospholipase D3 Is Involved in the Hyperosmotic Response in Arabidopsis

机译:拟南芥中磷脂酶D3参与高渗反应

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摘要

Rapid activation of phospholipase D (PLD), which hydrolyzes membrane lipids to generate phosphatidic acid (PA), occurs under various hyperosmotic conditions, including salinity and water deficiency. The Arabidopsis thaliana PLD family has 12 members, and the function of PLD activation in hyperosmotic stress responses has remained elusive. Here, we show that knockout (KO) and overexpression (OE) of previously uncharacterized PLD3 alter plant response to salinity and water deficit. PLD3 uses multiple phospholipids as substrates with distinguishable preferences, and alterations of PLD3 result in changes in PA level and membrane lipid composition. PLD3-KO plants display increased sensitivities to salinity and water deficiency and also tend to induce abscisic acid–responsive genes more readily than wild-type plants, whereas PLD3-OE plants have decreased sensitivities. In addition, PLD3-KO plants flower later than wild-type plants in slightly dry conditions, whereas PLD3-OE plants flower earlier. These data suggest that PLD3 positively mediates plant responses to hyperosmotic stresses and that increased PLD3 expression and associated lipid changes promote root growth, flowering, and stress avoidance.
机译:磷脂酶D(PLD)的快速活化会水解膜脂质以产生磷脂酸(PA),在多种盐分渗透条件下都会发生,包括盐度和水分缺乏。拟南芥PLD家族有12个成员,而PLD激活在高渗应激反应中的功能仍然难以捉摸。在这里,我们显示了以前未鉴定的PLD3的敲除(KO)和过表达(OE)改变了植物对盐分和水分亏缺的反应。 PLD3使用多种磷脂作为具有可区分偏好的底物,PLD3的改变会导致PA水平和膜脂质组成的变化。 PLD3-KO植物显示出对盐度和缺水的敏感性增加,并且比野生型植物更容易诱导脱落酸应答基因,而PLD3-OE植物的敏感性降低。此外,在略干的条件下,PLD3-KO植物的开花时间比野生型植物晚,而PLD3-OE植物的开花时间早。这些数据表明PLD3积极介导植物对高渗胁迫的反应,而增加的PLD3表达和相关的脂质变化促进了根的生长,开花和避免胁迫。

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