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油松的种群结构、多样化选择和局部适应。

Population structure, diversifying selection, and local adaptation in Pinus patula.

机构信息

Departamento de Botánica, Instituto de Biología, Universidad Nacional Autónoma de México, Ciudad de México, 04510, México.

Posgrado en Ciencias Biológicas, Instituto de Biología, Universidad Nacional Autónoma de México, Ciudad de México, 04510, México.

出版信息

Am J Bot. 2020 Nov;107(11):1555-1566. doi: 10.1002/ajb2.1566. Epub 2020 Nov 17.

Abstract

PREMISE

Climate change is predicted to affect natural and plantation forests. The responses of conifers to overcome changing environments will depend on their adaptation to local conditions; however, intraspecific adaptive genetic variation is unknown for most gymnosperms. Studying genetic diversity associated with phenotypic variability along environmental gradients will enhance our understanding of adaptation and may reveal genetic pools important for conservation and management.

METHODS

We used target enrichment and genome skimming to obtain single nucleotide polymorphisms (SNPs) from 61 individuals of Pinus patula, a pine tree native to Mexico widely used in plantation forestry. We investigated the adaptive genetic variation of two varieties with morphological and distributional differences potentially related to genetic and adaptive divergence.

RESULTS

Population structure and haplotype network analyses revealed that genetic diversity between P. patula var. patula and P. patula var. longipedunculata was structured, even within populations of P. patula var. longipedunculata. We observed high genetic diversity, low inbreeding rate, and rapid linkage disequilibrium (LD) decay in the varieties. Based on outlier tests, loci showing signatures of natural selection were detected in geographically distant P. patula var. longipedunculata populations. For both varieties, we found significant correlations between climate-related environmental variation and SNP diversity at loci involved in abiotic stress, cell transport, defense, and cell wall biogenesis, pointing to local adaptation.

CONCLUSIONS

Overall, significant intraspecific adaptive genetic variation in P. patula was detected, highlighting the presence of different genetic pools and signs of local adaptation that should be considered in forestry and conservation.

摘要

前提

气候变化预计将影响自然林和人工林。针叶树克服变化环境的反应将取决于它们对当地条件的适应;然而,大多数裸子植物的种内适应性遗传变异尚不清楚。研究与环境梯度相关的表型变异性相关的遗传多样性将增强我们对适应的理解,并可能揭示对保护和管理重要的遗传库。

方法

我们使用目标富集和基因组掠过技术从墨西哥原产的松树 Pinus patula 的 61 个个体中获得单核苷酸多态性 (SNP)。我们研究了两种具有形态和分布差异的品种的适应性遗传变异,这些差异可能与遗传和适应性分化有关。

结果

种群结构和单倍型网络分析表明,P. patula var. patula 和 P. patula var. longipedunculata 之间的遗传多样性是有结构的,即使在 P. patula var. longipedunculata 的种群内也是如此。我们观察到品种具有高遗传多样性、低近交率和快速连锁不平衡 (LD) 衰减。基于外显子测试,在地理上遥远的 P. patula var. longipedunculata 种群中检测到具有自然选择特征的位点。对于这两种品种,我们发现与气候相关的环境变化与涉及非生物胁迫、细胞运输、防御和细胞壁生物发生的 SNP 多样性之间存在显著相关性,表明存在局部适应。

结论

总体而言,在 P. patula 中检测到了显著的种内适应性遗传变异,突出了不同遗传库的存在和局部适应的迹象,这在林业和保护中应予以考虑。

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