Exon-Enriched Set of Single-Nucleotide Polymorphisms Shows Associations with Climate in European Beech (Fagus sylvatica L.)

Forests Pub Date : 2024-07-15 DOI:10.3390/f15071229
D. Krajmerová, Matúš Hrivnák, Dušan Gömöry
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Abstract

European beech is an ecologically and commercially important species, which is expected to decline in several regions because of heat and drought stress associated with climate change. Knowledge of the genetic basis of the adaptation to climate is needed to guide assisted migration. Genetic variation at 1704 single-nucleotide polymorphisms (SNPs) resulting from ddRAD sequencing, primarily located in gene exons, was studied in 181 specimens representing 123 populations distributed over most of the whole range. Bayesian analysis of population structure yielded two clusters exhibiting a clear longitudinal cline and correlated with indicators of low temperatures and temperature fluctuation. Five SNPs were significantly associated with climatic variables related primarily to heat and temperature ranges. Two alternative explanations are offered for the observed response patterns: (i) differential sensitivity to heat and (ii) response mediated by vegetative phenology.
单核苷酸多态性外显子丰富集显示欧洲山毛榉(Fagus sylvatica L.)与气候的关系
欧洲山毛榉是一种具有重要生态和商业价值的树种,由于气候变化带来的高温和干旱胁迫,预计该树种在一些地区将会减少。需要了解适应气候的遗传基础,以指导辅助迁移。对分布在整个分布区大部分地区的 123 个种群的 181 个标本进行了研究,通过 ddRAD 测序获得了 1704 个单核苷酸多态性(SNPs),这些单核苷酸多态性主要位于基因外显子。对种群结构进行贝叶斯分析后发现,有两个集群表现出明显的纵向脉络,并与低温和温度波动指标相关。五个 SNP 与主要与热量和温度范围相关的气候变量有明显关联。对观察到的反应模式提出了两种替代解释:(i) 对高温的不同敏感性;(ii) 由植被物候介导的反应。
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