Temasek Life Sciences Laboratory, National University of Singapore, 1 Research Link, 117604, NUS, Singapore.
Laboratory of Plant Molecular Biology, Rockefeller University, 1230 York Avenue, New York, NY, 10021, USA.
Sci Rep. 2017 Mar 27;7(1):439. doi: 10.1038/s41598-017-00438-8.
Oil palm is the most productive oil crop in the world and composes 36% of the world production. However, the molecular mechanisms of hybrids vigor (or heterosis) between Dura, Pisifera and their hybrid progeny Tenera has not yet been well understood. Here we compared the temporal and spatial compositions of lipids and transcriptomes for two oil yielding organs mesocarp and endosperm from Dura, Pisifera and Tenera. Multiple lipid biosynthesis pathways are highly enriched in all non-additive expression pattern in endosperm, while cytokinine biosynthesis and cell cycle pathways are highly enriched both in endosperm and mesocarp. Compared with parental palms, the high oil content in Tenera was associated with much higher transcript levels of EgWRI1, homolog of Arabidopsis thaliana WRINKLED1. Among 338 identified genes in lipid synthesis, 207 (61%) has been identified to contain the WRI1 specific binding AW motif. We further functionally identified EgWRI1-1, one of three EgWRI1 orthologs, by genetic complementation of the Arabidopsis wri1 mutant. Ectopic expression of EgWRI1-1 in plant produced dramatically increased seed mass and oil content, with oil profile changed. Our findings provide an explanation for EgWRI1 as an important gene contributing hybrid vigor in lipid biosynthesis in oil palm.
油棕是世界上产油量最高的油料作物,占世界总产量的 36%。然而,杜拉、皮西弗拉及其杂种后代滕纳拉之间杂种优势(或杂种优势)的分子机制尚未得到很好的理解。在这里,我们比较了两个产油器官中果皮和胚乳的脂质和转录组在时间和空间上的组成,来自杜拉、皮西弗拉和滕纳拉。在内胚乳中,所有非加性表达模式中都高度富集了多种脂质生物合成途径,而细胞分裂素生物合成和细胞周期途径在内胚乳和中果皮中都高度富集。与亲本棕榈相比,滕纳拉的高含油量与 EgWRI1(拟南芥 WRINKLED1 的同源物)的转录水平显著升高有关。在鉴定出的 338 个脂质合成基因中,有 207 个(61%)被鉴定为含有 WRI1 特异性结合的 AW 基序。我们通过对拟南芥 wri1 突变体的遗传互补,进一步对三个 EgWRI1 同源物之一的 EgWRI1-1 进行了功能鉴定。在植物中外源表达 EgWRI1-1 会导致种子质量和油含量显著增加,同时油的成分也发生了变化。我们的研究结果为 EgWRI1 作为一个在油棕脂质生物合成中对杂种优势有重要贡献的基因提供了一个解释。