Westphalian Wilhelms-University of Münster, Institute of Plant Biology and Biotechnology, Schlossplatz 8, D-48143 Münster, Germany.
Plant Cell Physiol. 2013 Apr;54(4):448-64. doi: 10.1093/pcp/pcs182. Epub 2013 Jan 9.
Natural rubber is a high-molecular-mass biopolymer found in the latex of >2,500 plant species, including Hevea brasiliensis, Parthenium argentatum and Taraxacum spp. The active sites of rubber biosynthesis are rubber particles, which comprise a hydrophobic rubber core surrounded by a phospholipid monolayer membrane containing species-dependent lipids and associated proteins. Small rubber particle proteins are the most abundant rubber particle-associated proteins in Taraxacum brevicorniculatum (TbSRPPs) and may promote rubber biosynthesis by stabilizing the rubber particle architecture. We investigated the transcriptional regulation of genes encoding SRPPs and identified a bZIP transcription factor (TbbZIP.1) similar to the Arabidopsis thaliana ABI5-ABF-AREB subfamily, which is thought to include downstream targets of ABA and/or abiotic stress-inducible protein kinases. The TbbZIP.1 gene was predominantly expressed in laticifers and regulates the expression of TbSRPP genes in an ABA-dependent manner. The individual TbSRPP genes showed distinct induction profiles, suggesting diverse roles in rubber biosynthesis and stress adaptation. The potential involvement of TbSRPPs in the adaptation of T. brevicorniculatum plants to environmental stress is discussed based on our current knowledge of the stress-response roles of SRPPs and their homologs, and the protective function of latex and rubber against pathogens. Our data suggest that TbSRPPs contribute to stress tolerance in T. brevicorniculatum and that their effects are mediated by TbbZIP.1.
天然橡胶是一种高分子量的生物聚合物,存在于包括巴西橡胶树、银胶菊和蒲公英属在内的 2500 多种植物的乳胶中。橡胶生物合成的活性部位是橡胶粒子,它由一个疏水性的橡胶核心组成,周围是一个含有物种依赖性脂质和相关蛋白质的磷脂单层膜。小橡胶粒子蛋白是蒲公英属(TbSRPPs)中最丰富的橡胶粒子相关蛋白,可能通过稳定橡胶粒子结构来促进橡胶生物合成。我们研究了编码 SRPPs 的基因的转录调控,并鉴定了一个 bZIP 转录因子(TbbZIP.1),类似于拟南芥的 ABI5-ABF-AREB 亚家族,该亚家族被认为包括 ABA 和/或非生物胁迫诱导蛋白激酶的下游靶标。TbbZIP.1 基因主要在乳管中表达,并以 ABA 依赖的方式调节 TbSRPP 基因的表达。个别 TbSRPP 基因表现出不同的诱导谱,表明它们在橡胶生物合成和应激适应中具有不同的作用。基于我们目前对 SRPPs 及其同源物在应激反应中的作用以及乳胶和橡胶对病原体的保护功能的了解,讨论了 TbSRPPs 参与蒲公英属植物适应环境胁迫的潜在作用。我们的数据表明,TbSRPPs 有助于蒲公英属植物的应激耐受,并且它们的作用是由 TbbZIP.1 介导的。