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狭叶萝芙木的核基因组与夹竹桃科一个医学相关分支中生物碱多样性的演化

The nuclear genome of Rhazya stricta and the evolution of alkaloid diversity in a medically relevant clade of Apocynaceae.

作者信息

Sabir Jamal S M, Jansen Robert K, Arasappan Dhivya, Calderon Virginie, Noutahi Emmanuel, Zheng Chunfang, Park Seongjun, Sabir Meshaal J, Baeshen Mohammed N, Hajrah Nahid H, Khiyami Mohammad A, Baeshen Nabih A, Obaid Abdullah Y, Al-Malki Abdulrahman L, Sankoff David, El-Mabrouk Nadia, Ruhlman Tracey A

机构信息

Biotechnology Research Group, Department of Biological Sciences, Faculty of Science, King Abdulaziz University, Jeddah 21589, Saudi Arabia.

Department of Integrative Biology, University of Texas at Austin, Austin, 78712 Texas, USA.

出版信息

Sci Rep. 2016 Sep 22;6:33782. doi: 10.1038/srep33782.

Abstract

Alkaloid accumulation in plants is activated in response to stress, is limited in distribution and specific alkaloid repertoires are variable across taxa. Rauvolfioideae (Apocynaceae, Gentianales) represents a major center of structural expansion in the monoterpenoid indole alkaloids (MIAs) yielding thousands of unique molecules including highly valuable chemotherapeutics. The paucity of genome-level data for Apocynaceae precludes a deeper understanding of MIA pathway evolution hindering the elucidation of remaining pathway enzymes and the improvement of MIA availability in planta or in vitro. We sequenced the nuclear genome of Rhazya stricta (Apocynaceae, Rauvolfioideae) and present this high quality assembly in comparison with that of coffee (Rubiaceae, Coffea canephora, Gentianales) and others to investigate the evolution of genome-scale features. The annotated Rhazya genome was used to develop the community resource, RhaCyc, a metabolic pathway database. Gene family trees were constructed to identify homologs of MIA pathway genes and to examine their evolutionary history. We found that, unlike Coffea, the Rhazya lineage has experienced many structural rearrangements. Gene tree analyses suggest recent, lineage-specific expansion and diversification among homologs encoding MIA pathway genes in Gentianales and provide candidate sequences with the potential to close gaps in characterized pathways and support prospecting for new MIA production avenues.

摘要

植物中的生物碱积累是对胁迫的响应而被激活的,其分布有限,且特定的生物碱种类在不同分类群中存在差异。萝芙木亚科(夹竹桃科,龙胆目)是单萜吲哚生物碱(MIAs)结构扩展的主要中心,产生了数千种独特的分子,包括高价值的化疗药物。夹竹桃科基因组水平数据的匮乏阻碍了对MIAs途径进化的深入理解,妨碍了对其余途径酶的阐明以及提高植物体内或体外MIAs的产量。我们对狭叶萝芙木(夹竹桃科,萝芙木亚科)的核基因组进行了测序,并将这个高质量的组装结果与咖啡(茜草科,卡内弗拉咖啡,龙胆目)及其他物种的基因组进行比较,以研究基因组规模特征的进化。注释后的狭叶萝芙木基因组被用于开发社区资源RhaCyc,一个代谢途径数据库。构建了基因家族树以识别MIAs途径基因的同源物,并研究它们的进化历史。我们发现,与咖啡不同,狭叶萝芙木谱系经历了许多结构重排。基因树分析表明,龙胆目中编码MIAs途径基因的同源物最近经历了谱系特异性的扩展和多样化,并提供了可能填补已表征途径中的空白并支持寻找新的MIAs生产途径的候选序列。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/66fc/5031960/54a534739adc/srep33782-f1.jpg

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