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首页> 外文期刊>The American Naturalist: Devoted to the Conceptual Unification of the Biological Sciences >Modeling the Influence of Genetic and Environmental Variation on the Expression of Plant Life Cycles across Landscapes
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Modeling the Influence of Genetic and Environmental Variation on the Expression of Plant Life Cycles across Landscapes

机译:建模遗传和环境变异对跨景观植物生命周期表达的影响

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Organisms develop through multiple life stages that differ in environmental tolerances. The seasonal timing, or phenology, of life-stage transitions determines the environmental conditions to which each life stage is exposed and the length of time required to complete a generation. Both environmental and genetic factors contribute to phenological variation, yet predicting their combined effect on life cycles across a geographic range remains a challenge. We linked submodels of the plasticity of individual life stages to create an integrated model that predicts life-cycle phenology in complex environments. We parameterized the model for Arabidopsis thaliana and simulated life cycles in four locations. We compared multiple genotypes by varying two parameters associated with natural genetic variation in phenology: seed dormancy and floral repression. The model predicted variation in life cycles across locations that qualitatively matches observed natural phenology. Seed dormancy had larger effects on life-cycle length than floral repression, and results suggest that a genetic cline in dormancy maintains a life-cycle length of 1 year across the geographic range of this species. By integrating across life stages, this approach demonstrates how genetic variation in one transition can influence subsequent transitions and the geographic distribution of life cycles more generally.
机译:有机体在不同的环境承受力的多个生命阶段中发展。生命阶段过渡的季节时机(即物候)决定了每个生命阶段所处的环境条件以及完成一代所需的时间长度。环境因素和遗传因素均会导致物候变化,但要预测它们对整个地理范围内生命周期的综合影响仍然是一个挑战。我们将各个生命阶段的可塑性子模型链接在一起,以创建一个预测复杂环境中生命周期物候的集成模型。我们参数化了拟南芥的模型,并模拟了四个位置的生命周期。我们通过改变与物候方面的自然遗传变异相关的两个参数来比较多种基因型:种子休眠和花抑制。该模型预测了定性匹配观察到的自然物候的不同位置生命周期的变化。种子休眠对生命周期长度的影响要大于对花卉的抑制,结果表明,休眠的遗传系在该物种的地理范围内保持1年的生命周期长度。通过跨生命阶段的整合,该方法证明了一个过渡中的遗传变异如何更广泛地影响后续过渡和生命周期的地理分布。

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