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Non-specific phospholipase C5 and diacylglycerol promote lateral root development under mild salt stress in Arabidopsis

机译:非特异性磷脂酶C5和二酰基甘油促进拟南芥在轻度盐胁迫下侧根的发育

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摘要

Developing a robust root system is crucial to plant survival and competition for soil resources. Here we report that the non-specific phospholipase C5 (NPC5) and its derived lipid mediator diacylglycerol (DAG) mediate lateral root (LR) development during salt stress in Arabidopsis thaliana. T-DNA knockout mutant npc5-1 produced few to no LR under mild NaCl stress, whereas overexpression of NPC5 increased LR number. Roots of npc5-1 contained a lower level of DAG than wild type, whereas NPC5 overexpressor exhibited an increase in DAG level. Application of DAG, but not phosphatidic acid, fully restored LR growth of npc5-1 to that of wild type under NaCl stress. NPC5 expression was significantly induced in Arabidopsis seedlings treated with NaCl. Npc5-1 was less responsive to auxin-mediated root growth than the wild type. These results indicate that NPC5 mediates LR development in response to salt stress and suggest that DAG functions as a lipid mediator in the stress signalling. growth and pattern formation under stress
机译:建立牢固的根系对于植物生存和争夺土壤资源至关重要。在这里我们报告说,非特异性磷脂酶C5(NPC5)及其衍生的脂质介体二酰基甘油(DAG)介导拟南芥盐胁迫期间侧根(LR)的发育。 T-DNA敲除突变体npc5-1在温和的NaCl胁迫下几乎不产生LR,而NPC5的过表达增加了LR数。 npc5-1的根中DAG的含量低于野生型,而NPC5的过表达者DAG的含量却增加。在NaCl胁迫下,使用DAG而不是磷脂酸可将npc5-1的LR生长完全恢复为野生型。在用NaCl处理的拟南芥幼苗中NPC5表达被明显诱导。 Npc5-1对植物生长素介导的根生长的反应要比野生型低。这些结果表明,NPC5响应盐胁迫而介导LR的发育,并暗示DAG在应力信号中起脂质介体的作用。压力下的生长和模式形成

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