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The rubber tree genome shows expansion of gene family associated with rubber biosynthesis

机译:橡胶树基因组显示与橡胶生物合成相关的基因家族的扩展

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摘要

Hevea brasiliensis Muell. Arg, a member of the family Euphorbiaceae, is the sole natural resource exploited for commercial production of high-quality natural rubber. The properties of natural rubber latex are almost irreplaceable by synthetic counterparts for many industrial applications. A paucity of knowledge on the molecular mechanisms of rubber biosynthesis in high yield traits still persists. Here we report the comprehensive genome-wide analysis of the widely planted H. brasiliensis clone, RRIM 600. The genome was assembled based on ~155-fold combined coverage with Illumina and PacBio sequence data and has a total length of 1.55 Gb with 72.5% comprising repetitive DNA sequences. A total of 84,440 high-confidence protein-coding genes were predicted. Comparative genomic analysis revealed strong synteny between H. brasiliensis and other Euphorbiaceae genomes. Our data suggest that H. brasiliensis’s capacity to produce high levels of latex can be attributed to the expansion of rubber biosynthesis-related genes in its genome and the high expression of these genes in latex. Using cap analysis gene expression data, we illustrate the tissue-specific transcription profiles of rubber biosynthesis-related genes, revealing alternative means of transcriptional regulation. Our study adds to the understanding of H. brasiliensis biology and provides valuable genomic resources for future agronomic-related improvement of the rubber tree.
机译:巴西橡胶树Arg是大戟科的一员,是用于商业化生产优质天然橡胶的唯一自然资源。在许多工业应用中,天然橡胶胶乳的性能几乎是合成对等物无法替代的。关于高产量性状中橡胶生物合成的分子机制的知识仍然很少。在这里,我们报告了广泛种植的巴西布鲁氏菌克隆RRIM 600的全基因组范围内的全面分析。该基因组是根据Illumina和PacBio序列数据的约155倍组合覆盖率组装而成的,总长度为1.55 Gb,长度为72.5%。包含重复的DNA序列。总共预测了84,440个高可信度蛋白质编码基因。比较基因组分析表明,巴西布鲁氏菌和其他大戟科基因组之间具有很强的协同作用。我们的数据表明,巴西布鲁氏菌生产高水平乳胶的能力可以归因于其基因组中橡胶生物合成相关基因的扩展以及这些基因在乳胶中的高表达。使用帽分析基因表达数据,我们说明了橡胶生物合成相关基因的组织特异性转录谱,揭示了转录调控的替代手段。我们的研究增加了对巴西布鲁氏菌生物学的理解,并为橡胶树的未来农学相关改良提供了宝贵的基因组资源。

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