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比较 Tabebuia 联盟的群体基因组学显示新热带树种适应的证据。

Comparative population genomics in Tabebuia alliance shows evidence of adaptation in Neotropical tree species.

机构信息

Laboratório de Genética & Biodiversidade, Instituto de Ciências Biológicas, Universidade Federal de Goiás, Goiânia, GO, 74001-970, Brazil.

EMBRAPA Recursos Genéticos e Biotecnologia, EPqB, Brasília, DF, 70770-910, Brazil.

出版信息

Heredity (Edinb). 2022 Mar;128(3):141-153. doi: 10.1038/s41437-021-00491-0. Epub 2022 Feb 7.

Abstract

The role of natural selection in shaping spatial patterns of genetic diversity in the Neotropics is still poorly understood. Here, we perform a genome scan with 24,751 probes targeting 11,026 loci in two Neotropical Bignoniaceae tree species: Handroanthus serratifolius from the seasonally dry tropical forest (SDTF) and Tabebuia aurea from savannas, and compared with the population genomics of H. impetiginosus from SDTF. OutFLANK detected 29 loci in 20 genes with selection signal in H. serratifolius and no loci in T. aurea. Using BayPass, we found evidence of selection in 335 loci in 312 genes in H. serratifolius, 101 loci in 92 genes in T. aurea, and 448 loci in 416 genes in H. impetiginosus. All approaches evidenced several genes affecting plant response to environmental stress and primary metabolic processes. The three species shared no SNPs with selection signal, but we found SNPs affecting the same gene in pair of species. Handroanthus serratifolius showed differences in allele frequencies at SNPs with selection signal among ecosystems, mainly between Caatinga/Cerrado and Atlantic Forest, while H. impetiginosus had one allele fixed across all populations, and T. aurea had similar allele frequency distribution among ecosystems and polymorphism across populations. Taken together, our results indicate that natural selection related to environmental stress shaped the spatial pattern of genetic diversity in the three species. However, the three species have different geographical distribution and niches, which may affect tolerances and adaption, and natural selection may lead to different signatures due to the differences in adaptive landscapes in different niches.

摘要

自然选择在塑造新热带地区遗传多样性空间格局中的作用仍知之甚少。在这里,我们在两种新热带紫葳科树木物种中进行了 24751 个探针针对 11026 个基因座的基因组扫描:来自季节性干旱热带森林(SDTF)的 Handroanthus serratifolius 和来自热带稀树草原的 Tabebuia aurea,并与来自 SDTF 的 H. impetiginosus 的群体基因组学进行了比较。OutFLANK 在 H. serratifolius 中检测到 20 个基因中的 29 个具有选择信号的基因座,而在 T. aurea 中没有基因座。使用 BayPass,我们在 H. serratifolius 中发现了 312 个基因中的 335 个具有选择信号的基因座,T. aurea 中 92 个基因中的 101 个基因座,H. impetiginosus 中 416 个基因中的 448 个基因座。所有方法都证明了几个基因对植物对环境胁迫和初级代谢过程的反应有影响。三个物种没有共享具有选择信号的 SNP,但我们发现 SNP 影响了两个物种的相同基因。H. serratifolius 在不同生态系统中具有选择信号的 SNP 的等位基因频率存在差异,主要是在卡廷加/塞拉多和大西洋森林之间,而 H. impetiginosus 在所有种群中都有一个等位基因固定,而 T. aurea 在不同生态系统中具有相似的等位基因频率分布和种群间的多态性。总的来说,我们的研究结果表明,与环境胁迫有关的自然选择塑造了三个物种的遗传多样性空间格局。然而,三个物种的地理分布和生态位不同,这可能会影响其耐受性和适应性,而自然选择可能会导致由于不同生态位的适应景观不同而导致不同的特征。

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本文引用的文献

2
A practical introduction to sequentially Markovian coalescent methods for estimating demographic history from genomic data.
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4
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6
Landscape Genomic Conservation Assessment of a Narrow-Endemic and a Widespread Morning Glory From Amazonian Savannas.
Front Plant Sci. 2018 May 7;9:532. doi: 10.3389/fpls.2018.00532. eCollection 2018.
8
StructureSelector: A web-based software to select and visualize the optimal number of clusters using multiple methods.
Mol Ecol Resour. 2018 Jan;18(1):176-177. doi: 10.1111/1755-0998.12719. Epub 2017 Oct 9.
10
UpSetR: an R package for the visualization of intersecting sets and their properties.
Bioinformatics. 2017 Sep 15;33(18):2938-2940. doi: 10.1093/bioinformatics/btx364.

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