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Oil palm genome sequence reveals divergence of interfertile species in old and new worlds

机译:油棕基因组序列揭示了新旧世界中干扰性物种的差异

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摘要

Oil palm is the most productive oil-bearing crop. Planted on only 5% of the total vegetable oil acreage, palm oil accounts for 33% of vegetable oil, and 45% of edible oil worldwide, but increased cultivation competes with dwindling rainforest reserves. We report the 1.8 gigabase (Gb) genome sequence of the African oil palm Elaeis guineensis, the predominant source of worldwide oil production. 1.535 Gb of assembled sequence and transcriptome data from 30 tissue types were used to predict at least 34,802 genes, including oil biosynthesis genes and homologues of WRINKLED1 (WRI1), and other transcriptional regulators, which are highly expressed in the kernel. We also report the draft sequence of the S. American oil palm Elaeis oleifera, which has the same number of chromosomes (2n=32) and produces fertile interspecific hybrids with E. guineensis, but appears to have diverged in the new world. Segmental duplications of chromosome arms define the palaeotetraploid origin of palm trees. The oil palm sequence enables the discovery of genes for important traits as well as somaclonal epigenetic alterations which restrict the use of clones in commercial plantings, and thus helps achieve sustainability for biofuels and edible oils, reducing the rainforest footprint of this tropical plantation crop.
机译:油棕是生产力最高的含油作物。棕榈油仅占植物油总面积的5%种植,占全世界植物油的33%,占食用油的45%,但增加的耕种与日益减少的雨林储备竞争。我们报告了非洲油棕Elaeis guineensis(全球石油生产的主要来源)的1.8 gigabase(Gb)基因组序列。来自30种组织类型的1.535 Gb组装序列和转录组数据用于预测至少34,802个基因,包括石油生物合成基因和WRINKLED1(WRI1)的同源物,以及其他转录调节子,它们在内核。我们还报告了美国油棕Elaeis oleifera的草稿序列,该草具有相同的染色体数(2n = 32),并与guineensis 产生了可育的种间杂种,但似乎有所不同在新世界中。染色体臂的节段重复定义了棕榈树的古四倍体起源。油棕序列能够发现重要性状的基因以及体细胞克隆的表观遗传学改变,这些改变限制了克隆在商业种植中的使用 ,从而有助于实现生物燃料和食用油的可持续性,减少雨林的足迹这种热带种植作物。

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