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Genome sequencing and population genomics modeling provide insights into the local adaptation of weeping forsythia

机译:基因组测序和群体基因组学建模提供了淋图淋图局部适应的见解

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Understanding the genetic basis underlying the local adaptation of nonmodel species is a fundamental goal in evolutionary biology. In this study, we explored the genetic mechanisms of the local adaptation of Forsythia suspensa using genome sequence and population genomics data obtained from specific-locus amplified fragment sequencing. We assembled a high-quality reference genome of weeping forsythia (Scaffold N50?=?7.3?Mb) using ultralong Nanopore reads. Then, genome-wide comparative analysis was performed for 15 natural populations of weeping forsythia across its current distribution range. Our results revealed that candidate genes associated with local adaptation are functionally correlated with solar radiation, temperature and water variables across heterogeneous environmental scenarios. In particular, solar radiation during the period of fruit development and seed drying after ripening, cold, and drought significantly contributed to the adaptive differentiation of F. suspensa. Natural selection exerted by environmental factors contributed substantially to the population genetic structure of F. suspensa. Our results supported the hypothesis that adaptive differentiation should be highly pronounced in the genes involved in signal crosstalk between different environmental variables. Our population genomics study of F. suspensa provides insights into the fundamental genetic mechanisms of the local adaptation of plant species to climatic gradients.
机译:了解遗传基础局部对非典范物种的局部适应是进化生物学的基本目标。在这项研究中,我们使用从特定基因座扩增的片段测序获得的基因组序列和群体基因组学数据探讨了连翘沉膜症局部适应的遗传机制。使用超越纳米孔读数,我们组装了哭泣的连翘(脚手架N50?=Δ7.3?MB)的高质量参考基因组。然后,在其目前分布范围内进行全基因组比较分析对15个垂直的连翘的天然群体进行。我们的研究结果表明,与局部适应相关的候选基因与在异构环境场景上的太阳辐射,温度和水变量相关。特别是,在成熟,冷和干旱后果发育和种子干燥期间的太阳辐射显着导致F.Speavensa的适应性分化显着促进。环境因素施加的自然选择基本上促进了F.Speavensa的群体遗传结构。我们的结果支持假设,即适应性分化应该在不同环境变量之间涉及信号串扰的基因中非常明显。我们对F. Pustensa的群体基因组学研究提供了植物物种对气候梯度局部适应的基本遗传机制的见解。

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