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Genomic Analyses Provide Insights Into the Evolutionary History and Genetic Diversity of Auricularia Species

机译:基因组分析为黑木耳物种的进化历史和遗传多样性提供了见识

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摘要

Species in the genus Auricularia play important roles for people’s food and nutrition especially Auricularia cornea and A. heimuer. To understand their evolutionary history, genome structure, and population-level genetic variation, we performed a high-quality genome sequencing of Auricularia cornea and the corresponding comparative genomic analysis. The genome size of A. cornea was similar to Auricularia subglabra, but 1.5 times larger than that of A. heimuer. Several factors were responsible for genome size variation including gene numbers, repetitive elements, and gene lengths. Phylogenomic analysis revealed that the estimated divergence time between A. heimuer and other Auricularia is ∼79.1 million years ago (Mya), while the divergence between A. cornea and A. subglabra occurred in ∼54.8 Mya. Population genomic analysis also provided insight into the demographic history of A. cornea and A. heimuer, indicating that their populations fluctuated over time with global climate change during Marine Isotope Stage 5-2. Moreover, despite the highly similar external morphologies of A. cornea and A. heimuer, their genomic properties were remarkably different. The A. cornea genome only shared 14% homologous syntenic blocks with A. heimuer and possessed more genes encoding carbohydrate-active enzymes and secondary metabolite biosynthesis proteins. The cross-taxa transferability rates of simple sequence repeat (SSR) and insertion or deletion (InDel) markers within the genus Auricularia were also lower than that previously observed for species within the same genus. Taken together, these results indicate a high level of genetic differentiation between these two Auricularia species. Consequently, our study provides new insights into the genomic evolution and genetic differentiation of Auricularia species that will facilitate future genetic breeding.
机译:Auricularia属的物种在人们的食物和营养中起着重要作用,尤其是角膜Auricularia和海藻A. heimuer。为了了解它们的进化历史,基因组结构和种群水平的遗传变异,我们进行了角质木耳的高质量基因组测序和相应的比较基因组分析。角膜曲霉的基因组大小与近耳木耳相似,但比黑海曲霉大1.5倍。导致基因组大小变化的几个因素包括基因数量,重复元件和基因长度。系统进化分析表明,估计的海默氏菌和其他耳廓之间的发散时间大约为7910万年前(Mya),而角膜曲霉和近下硬膜外耳之间的发散时间大约为54.8 Mya。种群基因组分析还提供了对角膜曲霉和黑海曲霉的人口历史的了解,表明在海洋同位素阶段5-2期间,其种群随全球气候变化而波动。此外,尽管角膜曲霉和黑海曲霉的外部形态高度相似,但它们的基因组性质却截然不同。角膜曲霉基因组与 A仅共享14%的同源突触块。 heimuer ,并拥有更多编码碳水化合物活性酶和次生代谢产物生物合成蛋白的基因。耳轮虫属中的简单序列重复(SSR)和插入或缺失(InDel)标记物的跨类群转移率也低于以前在同一属中的物种。综上所述,这些结果表明这两个 Auricularia 物种之间的遗传分化水平很高。因此,我们的研究为 Auricularia 物种的基因组进化和遗传分化提供了新的见解,这将有助于未来的遗传育种。

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