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A Novel Pathway for Sesquiterpene Biosynthesis from Z,Z-Farnesyl Pyrophosphate in the Wild Tomato Solanum habrochaites

机译:Z,Z-焦磷酸焦磷酸酯在野生番茄茄子中生物合成倍半萜烯的新途径

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In the wild tomato Solanum habrochaites, the Sst2 locus on chromosome 8 is responsible for the biosynthesis of several class II sesquiterpene olefins by glandular trichomes. Analysis of a trichome-specific EST collection from S. habrochaites revealed two candidate genes for the synthesis of Sst2-associated sesquiterpenes. zFPS encodes a protein with homology to Z-isoprenyl pyrophosphate synthases and SBS ( for Santalene and Bergamotene Synthase) encodes a terpene synthase with homology to kaurene synthases. Both genes were found to cosegregate with the Sst2 locus. Recombinant zFPS protein catalyzed the synthesis of Z,Z-FPP from isopentenylpyrophosphate (IPP) and dimethylallylpyrophosphate ( DMAPP), while coincubation of zFPS and SBS with the same substrates yielded a mixture of olefins identical to the Sst2-associated sesquiterpenes, including (+)-alpha-santalene, (+)-endo-beta-bergamotene, and (2)-endo-alpha-bergamotene. In addition, headspace analysis of tobacco ( Nicotiana sylvestris) plants expressing zFPS and SBS in glandular trichomes afforded the same mix of sesquiterpenes. Each of these proteins contains a putative plastid targeting sequence that mediates transport of a fused green fluorescent protein to the chloroplasts, suggesting that the biosynthesis of these sesquiterpenes uses IPP and DMAPP from the plastidic DXP pathway. These results provide novel insights into sesquiterpene biosynthesis and have general implications concerning sesquiterpene engineering in plants.
机译:在野生番茄茄属茄属中,第8号染色体上的Sst2位点负责腺毛体生物合成几种II类倍半萜烯烯烃。分析从S. habrochaites的毛状体特定的EST集合揭示了两个候选基因与Sst2相关的倍半萜的合成。 zFPS编码与Z-异戊二烯基焦磷酸合酶具有同源性的蛋白质,而SBS(对于Santalene和香柠檬烯合酶)则编码与Kaurene合酶具有同源性的萜烯合酶。发现这两个基因与Sst2基因座共分离。重组的zFPS蛋白催化由异戊烯基焦磷酸酯(IPP)和二甲基烯丙基焦磷酸酯(DMAPP)合成Z,Z-FPP,同时将zFPS和SBS与相同的底物共同孵育会产生与Sst2相关的倍半萜烯相同的烯烃混合物,包括(+) -α-檀香烯,(+)-内-β-佛手柑和(2)-内-α-佛手柑。另外,对在腺毛上表达zFPS和SBS的烟草(Nicotiana sylvestris)植物进行顶空分析,得到了倍半萜的相同混合物。这些蛋白质中的每一个都包含一个假定的质体靶向序列,该序列介导融合的绿色荧光蛋白向叶绿体的转运,表明这些倍半萜的生物合成使用来自质体DXP途径的IPP和DMAPP。这些结果为倍半萜生物合成提供了新颖的见解,并且对植物中倍半萜的工程化具有一般意义。

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