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Serine Palmitoyltransferase a Key Enzyme for de Novo Synthesis of Sphingolipids Is Essential for Male Gametophyte Development in Arabidopsis

机译:丝氨酸棕榈酰转移酶是鞘氨醇从头合成的关键酶对于拟南芥中雄配子体发育至关重要。

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摘要

Sphingolipids are important signaling molecules involved in various cellular activities. De novo sphingolipid synthesis is initiated by a rate-limiting enzyme, serine palmitoyltransferase (SPT), a heterodimer consisting of LONG-CHAIN BASE1 (LCB1) and LCB2 subunits. A mutation in the Arabidopsis thaliana LCB1 gene, lcb1-1, was found to cause embryo lethality. However, the underpinning molecular and cellular mechanisms remain largely unclear. Here, we report the identification of the fumonisin B1 resistant11-2 (fbr11-2) mutant, an allele of lcb1-1. The fbr11-2 mutation, most likely an allele stronger than lcb1-1, was transmitted only through female gametophytes and caused the formation of abortive microspores. During the second pollen mitosis, fbr11-2 initiated apoptotic cell death in binucleated microspores characteristic of nuclear DNA fragmentation, followed by cytoplasm shrinkage and organelle degeneration at the trinucleated stage. In addition, a double mutant with T-DNA insertions in two homologous LCB2 genes showed a phenotype similar to fbr11-2. Consistent with these observations, the FBR11/LCB1 expression was confined in microspores during microgametogenesis. These results suggest that SPT-modulated programmed cell death plays an important role in the regulation of male gametophyte development.
机译:鞘脂是参与各种细胞活动的重要信号分子。从头鞘糖脂的合成是由限速酶丝氨酸棕榈酰转移酶(SPT)启动的,该酶是由长链BASE1(LCB1)和LCB2亚基组成的异二聚体。发现拟南芥LCB1基因lcb1-1中的一个突变会导致胚胎致死。但是,基本的分子和细胞机制仍不清楚。在这里,我们报告的伏马菌素B1抗性11-2(fbr11-2)突变体,lcb1-1的等位基因的鉴定。 fbr11-2突变(很可能是比lcb1-1更强的等位基因)仅通过雌配子体传播,并导致流产的小孢子形成。在第二个花粉有丝分裂期间,fbr11-2在具有核DNA断裂特征的双核小孢子中引发凋亡性细胞死亡,随后在三核阶段使细胞质收缩和细胞器变性。另外,在两个同源LCB2基因中具有T-DNA插入的双突变体表现出类似于fbr11-2的表型。与这些观察结果一致,在微配子发生过程中,FBR11 / LCB1表达被限制在小孢子中。这些结果表明,SPT调节的程序性细胞死亡在雄配子体发育的调节中起着重要作用。

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