The genome of the Paleogene relic tree Bretschneidera sinensis: insights into trade-offs in gene family evolution, demographic history, and adaptive SNPs.

Hai-Lin Liu, A J Harris, Zheng-Feng Wang, Hong-Feng Chen, Zhi-An Li, Xiao Wei
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引用次数: 2

Abstract

Among relic species, genomic information may provide the key to inferring their long-term survival. Therefore, in this study, we investigated the genome of the Paleogene relic tree species, Bretschneidera sinensis, which is a rare endemic species within southeastern Asia. Specifically, we assembled a high-quality genome for B. sinensis using PacBio high-fidelity and high-throughput chromosome conformation capture reads and annotated it with long and short RNA sequencing reads. Using the genome, we then detected a trade-off between active and passive disease defences among the gene families. Gene families involved in salicylic acid and MAPK signalling pathways expanded as active defence mechanisms against disease, but families involved in terpene synthase activity as passive defences contracted. When inferring the long evolutionary history of B. sinensis, we detected population declines corresponding to historical climate change around the Eocene-Oligocene transition and to climatic fluctuations in the Quaternary. Additionally, based on this genome, we identified 388 single nucleotide polymorphisms (SNPs) that were likely under selection, and showed diverse functions in growth and stress responses. Among them, we further found 41 climate-associated SNPs. The genome of B. sinensis and the SNP dataset will be important resources for understanding extinction/diversification processes using comparative genomics in different lineages.

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古近系遗迹树Bretschneidera sinensis的基因组:基因家族进化、人口统计学历史和适应性snp权衡的见解。
在遗迹物种中,基因组信息可能提供推断其长期生存的关键。因此,本研究对东南亚地区罕见的特有古近系遗迹树种Bretschneidera sinensis的基因组进行了研究。具体来说,我们使用PacBio高保真度和高通量的染色体构象捕获reads组装了一个高质量的sinensis基因组,并用长和短RNA测序reads对其进行了注释。利用基因组,我们在基因家族中检测到主动和被动疾病防御之间的权衡。参与水杨酸和MAPK信号通路的基因家族作为疾病的主动防御机制扩大,但参与萜烯合成酶活性的基因家族作为被动防御机制收缩。在推断中华白鲟漫长的进化史时,我们发现其种群数量的下降与始新世-渐新世过渡前后的历史气候变化和第四纪的气候波动相对应。此外,基于该基因组,我们确定了388个单核苷酸多态性(snp),这些多态性可能是在选择下产生的,并在生长和应激反应中表现出不同的功能。其中,我们进一步发现了41个与气候相关的snp。中华白鱀豚基因组和SNP数据集将成为利用比较基因组学了解不同谱系中灭绝/多样化过程的重要资源。
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