首页> 外文期刊>Molecular Plant >Plant phosphatidylcholine-hydrolyzing phospholipases C NPC3 and NPC4 with roles in root development and brassinolide signaling in Arabidopsis thaliana.
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Plant phosphatidylcholine-hydrolyzing phospholipases C NPC3 and NPC4 with roles in root development and brassinolide signaling in Arabidopsis thaliana.

机译:植物磷脂酰胆碱水解磷脂酶C NPC3和NPC4在拟南芥(Arabidopsis thaliana)的根发育和油菜素内酯信号传导中起作用。

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摘要

Phosphatidylcholine-hydrolyzing phospholipase C (PC-PLC) catalyzes the hydrolysis of phosphatidylcholine (PC) to generate phosphocholine and diacylglycerol (DAG). PC-PLC has a long tradition in animal signal transduction to generate DAG as a second messenger besides the classical phosphatidylinositol splitting phospholipase C (PI-PLC). Based on amino acid sequence similarity to bacterial PC-PLC, six putative PC-PLC genes (NPC1 to NPC6) were identified in the Arabidopsis genome. RT-PCR analysis revealed overlapping expression pattern of NPC genes in root, stem, leaf, flower, and silique. In auxin-treated PNPC3:GUS and PNPC4:GUS seedlings, strong increase of GUS activity was visible in roots, leaves, and shoots and, to a weaker extent, in brassinolide-treated (BL) seedlings. PNPC4:GUS seedlings also responded to cytokinin with increased GUS activity in young leaves. Compared to wild-type, T-DNA insertional knockouts npc3 and npc4 showed shorter primary roots and lower lateral root density at low BL concentrations but increased lateral root densities in response to exogenous 0.05-1.0 micro M BL. BL-induced expression of TCH4 and LRX2, which are involved in cell expansion, was impaired but not impaired in repression of CPD, a BL biosynthesis gene, in BL-treated npc3 and npc4. These observations suggest NPC3 and NPC4 are important in BL-mediated signaling in root growth. When treated with 0.1 micro M BL, DAG accumulation was observed in tobacco BY-2 cell cultures labeled with fluorescent PC as early as 15 min after application. We hypothesize that at least one PC-PLC is a plant signaling enzyme in BL signal transduction and, as shown earlier, in elicitor signal transduction.
机译:磷脂酰胆碱水解磷脂酶C(PC-PLC)催化磷脂酰胆碱(PC)水解,生成磷脂酰胆碱和二酰基甘油(DAG)。 PC-PLC在动物信号转导方面有着悠久的传统,除了经典的磷脂酰肌醇分裂磷脂酶C(PI-PLC)以外,它还可以作为第二信使产生DAG。根据与细菌PC-PLC的氨基酸序列相似性,在中鉴定出六个推定的 PC-PLC 基因( NPC1 至 NPC6 )。 >拟南芥基因组。 RT-PCR分析显示 NPC 基因在根,茎,叶,花和长角果中有重叠的表达模式。在生长素处理的 P NPC3 :GUS 和 P NPC4 :GUS 幼苗中,可见明显的GUS活性增强在根,叶和芽中,以及在油菜素内酯处理的(BL)幼苗中含量较低。 P NPC4 :GUS 幼苗对细胞分裂素也有反应,年轻叶片中的GUS活性增加。与野生型相比,在低BL浓度下,T-DNA插入敲除 npc3 和 npc4 表现出较短的初生根和较低的侧根密度,但响应外源时侧根密度增加0.05-1.0微米M BL。 BL诱导的 TCH4 和 LRX2 的表达与细胞扩增有关,但对BL生物合成 CPD 的阻遏作用没有受到损害,但没有受到损害。基因在BL处理的 npc3 和 npc4 中。这些观察结果表明, NPC3 和 NPC4 在BL介导的根生长信号中很重要。当用0.1 micro M BL处理时,最早在施用后15分钟,在用荧光PC标记的烟草BY-2细胞培养物中观察到DAG积累。我们假设至少一个PC-PLC在BL信号转导中和在激发子信号转导中是植物信号转导酶。

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