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Size, distribution and biomass of genets in populations of Suillus bovinus (L.: Fr.) Roussel revealed by somatic incompatibility.通过体细胞不亲和性揭示的牛肝菌(L.:Fr.)罗塞尔种群中无性系分株的大小、分布和生物量。
New Phytol. 1994 Oct;128(2):225-234. doi: 10.1111/j.1469-8137.1994.tb04006.x.
2
Widespread selective sweeps throughout the genome of model plant pathogenic fungi and identification of effector candidates.模式植物病原真菌全基因组广泛的选择性清除及效应子候选基因的鉴定
Mol Ecol. 2017 Apr;26(7):2041-2062. doi: 10.1111/mec.13976. Epub 2017 Jan 27.
3
Phylogenetic assessment of global Suillus ITS sequences supports morphologically defined species and reveals synonymous and undescribed taxa.对全球乳牛肝菌ITS序列的系统发育评估支持形态学定义的物种,并揭示了同义分类群和未描述的分类单元。
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Ectomycorrhizal ecology is imprinted in the genome of the dominant symbiotic fungus Cenococcum geophilum.外生菌根生态学在优势共生真菌地生鳞球茎菌的基因组中留下了印记。
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Genomic sequencing reveals historical, demographic and selective factors associated with the diversification of the fire-associated fungus Neurospora discreta.基因组测序揭示了与火相关真菌离散脉孢菌多样化相关的历史、人口统计学和选择因素。
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Adaptive Horizontal Gene Transfers between Multiple Cheese-Associated Fungi.多种奶酪相关真菌之间的适应性水平基因转移
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The population genomics of rapid adaptation: disentangling signatures of selection and demography in white sands lizards.快速适应的群体基因组学:解析白沙蜥蜴的选择特征与种群统计学特征
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Genetic subdivision and candidate genes under selection in North American grey wolves.北美灰狼的遗传细分及选择中的候选基因。
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Genetic isolation between two recently diverged populations of a symbiotic fungus.一种共生真菌两个最近分化的种群之间的遗传隔离。
Mol Ecol. 2015 Jun;24(11):2747-58. doi: 10.1111/mec.13132. Epub 2015 Apr 2.
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Genetic structure and local adaptation of European wheat yellow rust populations: the role of temperature-specific adaptation.欧洲小麦条锈菌群体的遗传结构与局部适应性:温度特异性适应的作用。
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短柄乳牛肝菌的大陆级种群分化与环境适应性

Continental-level population differentiation and environmental adaptation in the mushroom Suillus brevipes.

作者信息

Branco Sara, Bi Ke, Liao Hui-Ling, Gladieux Pierre, Badouin Hélène, Ellison Christopher E, Nguyen Nhu H, Vilgalys Rytas, Peay Kabir G, Taylor John W, Bruns Thomas D

机构信息

Ecologie Systématique Evolution, Univ. Paris-Sud, CNRS, AgroParisTech, Université Paris-Saclay, 91400, Orsay, France.

Computational Genomics Resource Laboratory (CGRL), California Institute for Quantitative Biosciences (QB3), University of California, Berkeley, Berkeley, CA, 94720, USA.

出版信息

Mol Ecol. 2017 Apr;26(7):2063-2076. doi: 10.1111/mec.13892. Epub 2016 Nov 4.

DOI:10.1111/mec.13892
PMID:27761941
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5392165/
Abstract

Recent advancements in sequencing technology allowed researchers to better address the patterns and mechanisms involved in microbial environmental adaptation at large spatial scales. Here we investigated the genomic basis of adaptation to climate at the continental scale in Suillus brevipes, an ectomycorrhizal fungus symbiotically associated with the roots of pine trees. We used genomic data from 55 individuals in seven locations across North America to perform genome scans to detect signatures of positive selection and assess whether temperature and precipitation were associated with genetic differentiation. We found that S. brevipes exhibited overall strong population differentiation, with potential admixture in Canadian populations. This species also displayed genomic signatures of positive selection as well as genomic sites significantly associated with distinct climatic regimes and abiotic environmental parameters. These genomic regions included genes involved in transmembrane transport of substances and helicase activity potentially involved in cold stress response. Our study sheds light on large-scale environmental adaptation in fungi by identifying putative adaptive genes and providing a framework to further investigate the genetic basis of fungal adaptation.

摘要

测序技术的最新进展使研究人员能够更好地研究微生物在大空间尺度上环境适应所涉及的模式和机制。在这里,我们研究了短柄牛肝菌在大陆尺度上适应气候的基因组基础,短柄牛肝菌是一种与松树根系共生的外生菌根真菌。我们使用了来自北美七个地点的55个个体的基因组数据进行基因组扫描,以检测正选择的特征,并评估温度和降水是否与遗传分化相关。我们发现短柄牛肝菌总体上表现出强烈的种群分化,加拿大种群中存在潜在的混合现象。该物种还表现出正选择的基因组特征以及与不同气候条件和非生物环境参数显著相关的基因组位点。这些基因组区域包括参与物质跨膜运输的基因以及可能参与冷应激反应的解旋酶活性基因。我们的研究通过鉴定推定的适应性基因并提供一个框架来进一步研究真菌适应的遗传基础,揭示了真菌的大规模环境适应情况。